Friday, October 09, 2026

Continental America by Night | International Space Station

Continental United States by Night | International Space Station

European Space Agency astronaut Sophie Adenot and former Expedition 75 flight engineer: "Can you spot Florida and the Keys in this timelapse over the American continent?"

The Florida Keys are a coral cay archipelago off the southern coast of Florida, forming the southernmost part of the continental United States. They begin at the southeastern coast of the Florida peninsula, about 15 miles (24 km) south of Miami and extend in an arc south-southwest and then westward to Key West, the westernmost of the inhabited islands, and on to the uninhabited Dry Tortugas. The islands lie along the Florida Straits, dividing the Atlantic Ocean to the east from the Gulf of Mexico to the northwest, and defining one edge of Florida Bay. 

The continental United States is the area of the United States that is located in the continent of North America. It includes 49 of the 50 U.S. states (48 are located south of Canada and north of Mexico, known as the "lower 48 states," the other being Alaska) and the District of Columbia, which contains the federal capital, Washington, D.C. The only state that is excluded is Hawaii. It is a state consisting of islands in the Pacific Ocean that are not part of North America but rather, Oceania.


Expedition 75 Crew
Station Commander: Pyotr Dubrov 
Roscosmos (Russia) Flight Engineers:
Anna Kikina,
Sergey Teteryatnikov
Canadian Space Agency (CSA) Flight Engineer: Joshua Kutryk
NASA Flight Engineers: Anil Menon, Jessica Watkins, Luke Delaney 

An international partnership of space agencies provides and operates the elements of the International Space Station (ISS). The principals are the space agencies of the United States, Russia, Europe, Japan, and Canada.


Video Credit: European Space Agency astronaut Sophie Adenot
Duration: 1 minute
Date: Oct. 6, 2026

#NASA #Space #Science #ISS #Planets #Earth #Florida #FloridaKeys #AtlanticOcean #Astronauts #SophieAdenot #AstronautVideography #Europe #ESA #Cosmonauts #Russia #Россия #Roscosmos #Роскосмос #Europe #ESA #HumanSpaceflight #Expedition75 #InternationalCooperation #UnitedStates #STEM #Education #HD #Video

United Nations Space Chief Calls for Closer Space Governance Partnerships

United Nations Space Chief Calls for Closer Space Governance Partnerships

Aarti Holla-Maini, director of the United Nations Office for Outer Space Affairs (UNOOSA), has highlighted the importance of international cooperation on space exploration and called for closer space governance communications to protect spacecraft from collisions.

Speaking in an interview with China Global Television Network (CGTN) on the sidelines of the 77th International Astronautical Congress, running in Antalya, Türkiye between Oct. 5 and 9, Holla-Maini spoke highly of China's role in promoting space cooperation, describing the country as an indispensable partner of the UNOOSA.

"We are really intensifying our collaboration with different Chinese entities. During the recent Nepal tragedy, we shifted more than 100 Chinese datasets within a few days, not weeks, days, to support the disaster. So, China is an extremely important partner for us. We believe not only in having access to Chinese imagery, but also doing a lot more capacity building," she said.

The Nepal disaster refers to the deadly cross-border mudslides triggered by a glacier collapse in northern Nepal on Aug. 26, 2026, that left thousands of people dead and even more missing in both Nepal and China.

The UN space chief mentioned China's recent donation of a lunar sample collected by the Chang'e-6 mission to UNOOSA as a milestone in multilateral space cooperation, saying the move shows China's open attitude and willingness to share its space development achievements with the international community.

"It's not natural to see generosity and international collaboration in such a divisive climate. But just two weeks ago, we received a sample from the far side of the Moon from the Chang'e mission—gifted to the UNOOSA in the Vienna International Center in Austria. We know how rare this sample is. It is very precious. It could be used for scientific research, to further our understanding, but China is doing that, and they are also giving a sample to us. It reminds people of the power of collaboration, the power of the United Nations, and also the importance and the power of one country to bring others together. And we really appreciate this, and we welcome this, and we don't take it for granted," Holla-Maini said.

Regarding China's plan to send a Pakistani astronaut to its Tiangong Space Station, Holla-Maini said this bilateral space cooperation program set a valuable precedent for developing nations.

"I'm delighted to see that China is taking an astronaut from Pakistan with them. We are all about 'access to space for all.' This is the principle, the fundamental principle of space law. It's what the United Nations stands for, and we're proud to see that member states are creating these opportunities. So, I wish that mission all the best of luck, and I hope it's the first of many foreign astronauts that get the opportunity to travel into space. And when other developing countries see examples like this, see precedents like this, it gives them hope. It gives them inspiration to aspire for being better, for being more, to really go for STEM education and to dream," she said.

Holla-Maini also underscored space traffic coordination as one of the top priorities for updating international space governance frameworks.

"So, I think the major priorities right now, with so many satellites being launched into space, is first of all space traffic coordination. We must prevent the creation of new debris, and that means we must minimize collision risks. Therefore, we must make sure that we maximize the communication and coordination of objects—active satellites in particular—that are orbiting the Earth," she said.


Video Credits: CCTV, CGTN
Duration: 3 minutes
Release Date: Oct. 9, 2026


#NASA #Space #Astronomy #Science #Earth #History #Satellites #SpaceTraffic #SpaceDebris #HumanSpaceflight #SpaceExploration #SpaceGovernance #CommercialSpace #InternationalCooperation #UnitedNations #UN #UNOOSA #AartiHollaMaini #Türkiye #IAC #IAC2026 #China 中国 #STEM #Education #HD #Video

NASA's SpaceX Crew-12 Dragon Spacecraft Landing | International Space Station

NASA's SpaceX Crew-12 Dragon Spacecraft Landing | International Space Station

Support teams work around the SpaceX Dragon Freedom spacecraft shortly after it landed with NASA astronauts Jessica Meir, Jack Hathaway, European Space Agency astronaut Sophie Adenot, and Roscosmos cosmonaut Andrey Fedyaev of Russia aboard in the Pacific Ocean off the coast of Los Angeles, California, Thursday, Oct. 8, 2026.

The SpaceX Crew Dragon Freedom spacecraft is seen as it lands with NASA astronauts Jessica Meir, Jack Hathaway, European Space Agency astronaut Sophie Adenot, and Roscosmos cosmonaut Andrey Fedyaev of Russia aboard in the Pacific Ocean off the coast of Los Angeles, California, Thursday, Oct. 8, 2026.

Crew-12 emblem

At 11:34 a.m. Eastern Daylight Time (EDT) (8:34 a.m. Pacific Daylight Time) on October 8, 2026, the SpaceX Dragon spacecraft successfully splashed down off the coast of Los Angeles, California.

This completed 237 days at the International Space Station for the four-person crew. Meir has logged 440 total days in space, placing her in NASA’s Top 10 for cumulative days in space. The Crew-12 mission was the first time Hathaway and Adenot had been to space, while it was the second time for Fedyaev. The crew also conducted four spacewalks during their nearly eight-month mission.


Expedition 75 Crew
Station Commander: Pyotr Dubrov 
Roscosmos (Russia) Flight Engineers:
Anna Kikina,
Sergey Teteryatnikov
Canadian Space Agency (CSA) Flight Engineer: Joshua Kutryk
NASA Flight Engineers: Anil Menon, Jessica Watkins, Luke Delaney 

An international partnership of space agencies provides and operates the elements of the International Space Station (ISS). The principals are the space agencies of the United States, Russia, Europe, Japan, and Canada.


Image Credit: NASA/Keegan Barber
Date: Oct. 8, 2026

#NASA #Space #Science #ISS #Planets #Earth #SpaceXCrewDragonSpacecraft #Crew12 #Astronauts #JessicaMeir #JackHathaway #SophieAdenot #Europe #ESA #Cosmonauts #AndreyFedyaev #Russia #Россия #Roscosmos #Роскосмос #Europe #ESA #HumanSpaceflight #Expedition75 #InternationalCooperation #UnitedStates #STEM #Education

Spacewalkers Install High-Speed Antenna | International Space Station

Spacewalkers Install High-Speed Antenna | International Space Station

In this image, NASA astronaut Anil Menon is attached to the Canadarm2 robotic arm as it guides him toward the worksite where he and European Space Agency astronaut Sophie Adenot (out of frame) installed a space-to-ground antenna. Menon and Adenot concluded their spacewalk outside the International Space Station at 2:57 p.m. EDT on August 25, 2026.
NASA astronaut Anil Menon: "In front of Dragon is the antenna we installed together." At 8:05 a.m. Eastern Daylight Time (EDT) on October 7, 2026, NASA astronauts Jessica Meir and Jack Hathaway, European Space Agency astronaut Sophie Adenot, and Roscosmos cosmonaut Andrey Fedyaev of Russia undocked from the space-facing port of the International Space Station’s Harmony module aboard their SpaceX Dragon spacecraft.

Expedition 75 Mission Highlights: In the first image, NASA astronaut Anil Menon is attached to the Canadarm2 robotic arm as it guides him toward the worksite where he and European Space Agency astronaut Sophie Adenot (out of frame) installed a space-to-ground antenna. Menon and Adenot concluded their spacewalk outside the International Space Station at 2:57 p.m. Eastern Daylight Time (EDT) on August 25, 2026.

During the 6‑hour, 30‑minute spacewalk, Menon and Adenot successfully installed and connected the spare Space‑to‑Ground antenna, a critical link that enables high‑speed data transmission between NASA’s Mission Control Center in Houston and the orbital complex. Afterward, they secured the failed unit that was removed and temporarily stowed during the duo’s spacewalk on Aug. 18, to a spare‑parts platform on the station’s truss structure.

Initial checkouts of the newly installed antenna showed good power and data transmission. Flight controllers on the ground will continue testing the antenna overnight to ensure full functionality. 

U.S. spacewalk 98 was Menon’s third career spacewalk and the second for Adenot. It also was the 283rd spacewalk in support of space station assembly, maintenance, and upgrades.


Expedition 75 Crew
Station Commander: Pyotr Dubrov 
Roscosmos (Russia) Flight Engineers:
Anna Kikina,
Sergey Teteryatnikov
Canadian Space Agency (CSA) Flight Engineer: Joshua Kutryk
NASA Flight Engineers: Anil Menon, Jessica Watkins, Luke Delaney 

An international partnership of space agencies provides and operates the elements of the International Space Station (ISS). The principals are the space agencies of the United States, Russia, Europe, Japan, and Canada.


Image Credit: NASA's Johnson Space Center, NASA astronaut Anil Menon
Image Dates: Aug. 25, 2026 & Oct. 7, 2026

#NASA #Space #Science #ISS #Planets #Earth #SpaceXCrewDragonSpacecraft #Crew12 #Astronauts #JessicaMeir #JackHathaway #SophieAdenot #Europe #ESA #Cosmonauts #AndreyFedyaev #Russia #Россия #Roscosmos #Роскосмос #Europe #ESA #HumanSpaceflight #Expedition75 #InternationalCooperation #UnitedStates #STEM #Education

NASA's SpaceX Crew-12 Dragon Spacecraft Departure | International Space Station

NASA's SpaceX Crew-12 Dragon Spacecraft Departure | International Space Station

At 8:05 a.m. Eastern Daylight Time (EDT) on October 7, 2026, NASA astronauts Jessica Meir and Jack Hathaway, European Space Agency astronaut Sophie Adenot, and Roscosmos cosmonaut Andrey Fedyaev of Russia undocked from the space-facing port of the International Space Station’s Harmony module aboard their SpaceX Dragon spacecraft.

At 11:34 a.m. EDT (8:34 a.m. Pacific Daylight Time) on October 8, 2026, the SpaceX Dragon spacecraft successfully splashed down off the coast of Los Angeles, California.

This completed 237 days at the International Space Station for the four-person crew. Meir has logged 440 total days in space, placing her in NASA’s Top 10 for cumulative days in space. The Crew-12 mission was the first time Hathaway and Adenot had been to space, while it was the second time for Fedyaev. The crew also conducted four spacewalks during their nearly eight-month mission.


Expedition 75 Crew
Station Commander: Pyotr Dubrov 
Roscosmos (Russia) Flight Engineers:
Anna Kikina,
Sergey Teteryatnikov
Canadian Space Agency (CSA) Flight Engineer: Joshua Kutryk
NASA Flight Engineers: Anil Menon, Jessica Watkins, Luke Delaney 

An international partnership of space agencies provides and operates the elements of the International Space Station (ISS). The principals are the space agencies of the United States, Russia, Europe, Japan, and Canada.


Video Credit: NASA's Johnson Space Center, NASA astronaut Anil Menon
Duration: 9 seconds
Date: Oct. 7, 2026

#NASA #Space #Science #ISS #Planets #Earth #SpaceXCrewDragonSpacecraft #Crew12 #Astronauts #JessicaMeir #JackHathaway #SophieAdenot #Europe #ESA #Cosmonauts #AndreyFedyaev #Russia #Россия #Roscosmos #Роскосмос #Europe #ESA #HumanSpaceflight #Expedition75 #InternationalCooperation #UnitedStates #STEM #Education #HD #Video

Pink Aurora Borealis over Finland

Pink Aurora Borealis over Finland

Astrophotographer Karsten Berger: "The night began relatively quiet and I was about to call it when the sky suddenly exploded in bright pink colors."

Known as the northern lights (aurora borealis) or southern lights (aurora australis), auroras are colorful, dynamic, and often visually delicate displays of an intricate dance of particles and magnetism between the Sun and Earth called space weather. When energetic particles from space collide with atoms and molecules in the atmosphere, they can cause the colorful glow that we call auroras.

Learn more about auroras: 
https://science.nasa.gov/sun/auroras/

Finland is a Nordic country in Northern Europe. It borders Sweden to the northwest, Norway to the north, and Russia to the east, with the Gulf of Bothnia to the west and the Gulf of Finland to the south, opposite Estonia.

Image Credit: Karsten Berger
Location: Levi, Finland
Date: Oct. 6, 2026

#NASA #Space #Astronomy #Science #Planets #Earth #Aurora #AuroraBorealis #NorthernLights #SolarSystem #Sun #Astrophotography #KarstenBerger #Astrophotographer #Levi #Finland #Suomi #STEM #Education

Thursday, October 08, 2026

NASA's SpaceX Crew-12 Recovery Operations | International Space Station

NASA's SpaceX Crew-12 Recovery Operations | International Space Station

Support teams work around the SpaceX Dragon Freedom spacecraft shortly after it landed
Support teams onboard the SpaceX recovery ship Shannon work around the SpaceX Dragon Freedom spacecraft shortly after it landed
The NASA “Worm” logotype is seen as support teams onboard the SpaceX recovery ship Shannon work around the SpaceX Dragon Freedom spacecraft shortly after it landed



The NASA “Worm” logotype is seen as support teams onboard the SpaceX recovery ship SHANNON work around the SpaceX Dragon Freedom spacecraft shortly after it landed
NASA astronaut Jessica Meir is helped out of the SpaceX Dragon Freedom spacecraft onboard the SpaceX recovery ship Shannon

At 11:34 a.m. Eastern Daylight Time (EDT) (8:34 a.m. Pacific Daylight Time) on October 8, 2026, the SpaceX Dragon spacecraft, carrying NASA astronauts Jessica Meir and Jack Hathaway, European Space Agency astronaut Sophie Adenot, and Roscosmos cosmonaut Andrey Fedyaev of Russia, splashed down off the coast of Los Angeles, California.

Teams aboard the recovery ship, including two fast boats, secured the SpaceX Dragon and ensured the spacecraft was safe for the recovery effort. As the fast boat teams completed their work, the recovery ship moved into position to hoist Dragon onto the main deck with the astronauts inside. Once on the main deck, the crew exited the spacecraft.  

This completes 237 days at the International Space Station for the four-person crew. Meir has logged 440 total days in space, placing her in NASA’s Top 10 for cumulative days in space. The Crew-12 mission was the first time Hathaway and Adenot had been to space, while it was the second time for Fedyaev. The crew also conducted four spacewalks during their nearly eight-month mission.


Expedition 75 Crew
Station Commander: Pyotr Dubrov 
Roscosmos (Russia) Flight Engineers:
Anna Kikina,
Sergey Teteryatnikov
Canadian Space Agency (CSA) Flight Engineer: Joshua Kutryk
NASA Flight Engineers: Anil Menon, Jessica Watkins, Luke Delaney 

An international partnership of space agencies provides and operates the elements of the International Space Station (ISS). The principals are the space agencies of the United States, Russia, Europe, Japan, and Canada.


Image Credit: NASA/Keegan Barber
Date: Oct. 8, 2026

#NASA #Space #Science #ISS #Planets #Earth #SpaceXCrewDragonSpacecraft #Crew12 #Astronauts #JessicaMeir #JackHathaway #SophieAdenot #Europe #ESA #Cosmonauts #AndreyFedyaev #Russia #Россия #Roscosmos #Роскосмос #Europe #ESA #HumanSpaceflight #Expedition75 #InternationalCooperation #UnitedStates #STEM #Education

China Aims to Launch Planet Mars Sample-Return Mission around 2028

China Aims to Launch Planet Mars Sample-Return Mission around 2028

China plans to carry out the Tianwen-3 Mission around 2028 to bring back samples from Mars, as Chinese space scientists eye new frontier in deep space exploration.

This year marks the 70th anniversary of the founding of China's space industry. Over the past seven decades, the country has achieved a series of major breakthroughs in deep space exploration, reaching the Moon and Mars, and beyond.

China formally established its lunar exploration "Project Chang'e" in 2004. Sun Zezhou, an expert on deep space exploration of China Academy of Space Technology, started his deep space career since then.

On Oct. 24, 2007, China launched Chang'e-1, its first lunar probe, making China the fifth country to develop and launch a lunar probe on its own.

"Our first mission of stepping out of Earth and heading to the Moon has gone pretty well. I think it gives us vital confidence for being able to go even farther into the future," said Sun in an interview with the China Media Group (CMG).

In 2008, the Chang'e-3 mission entered the engineering development phase. As a key step in the lunar exploration program's three-stage strategy of "orbiting, landing, and returning," more than 80 percent of the Chang'e-3 mission consisted of new products and new technologies.

"At the beginning, we were also quite anxious when we encountered problems. We always had issues on various experiments. When the phone rang, we would feel nervous, thinking it was probably another experiment that didn't turn out as expected. We progressed and kept on testing key technologies on the ground. The more problems we encountered, the fewer errors we would face in the future. That is the rule," said Sun.

On Dec. 14, 2013, Chang'e-3 landed on the Moon, marking the first time that China had sent a spacecraft to soft land on the surface of an extraterrestrial body.

Since then, the Chang'e-4 probe, launched on Dec. 8, 2018, made the first-ever soft landing on the far side of the Moon. The Chang'e-5 probe and Chang'e-6 probe took samples from the lunar surface.

Alongside lunar efforts, Chinese scientists have also turned their attention to Mars.

China's Tianwen-1 mission, consisting of an orbiter, a lander and a rover, was launched in July 2020. The probe entered Mars' orbit in February 2021, and the Mars rover Zhurong landed on Mars in May 2021. It has fulfilled three scientific objectives—orbiting Mars for comprehensive observation, landing on Martian soil and sending a rover to roam the landing site—in one mission.

China will launch the Tianwen-3 Mars sample-return mission around 2028 with the primary scientific goal of searching for signs of life.

The retrieval of samples from Mars will represent another milestone in China's deep space exploration, as no such retrieval has ever been accomplished.

"Among all eight planets in the solar system, Mars is the most similar celestial body to Earth. If we compare Earth as a young adult in its prime, Mars is more like an elder in its twilight years. As for the exploration of Mars, to put it most simply and directly, we want to understand the evolutionary process of our close neighbor and what insights it can offer us," Sun said.

 

Video Credit: CCTV
Duration: 2 minutes
Release Date: Oct. 8, 2026

#NASA #Space #Astronomy #Science #Planets #Mars #RedPlanet #Geology #Astrobiology #SampleReturnMission #Tianwen3 #天问三号 #Tianwen1 #天问一号 #Tianwen1Orbiter #Tianwen1Spacecraft #CNSA #China #中国 #SolarSystem #MarsExploration #DeepSpace #SpaceExploration #STEM #Education #History #HD #Video

Galactic Source of Fast Radio Burst 20240304B in Virgo | Webb Telescope

Galactic Source of Fast Radio Burst 20240304B in Virgo | Webb Telescope

This video shows the field where the James Webb Space Telescope was able to detect the host galaxy of the fast radio burst called FRB 20240304B.

First discovered in 2007, fast radio bursts (FRBs) are enigmatic, millisecond-long flashes of radio emission from the distant Universe. Their origin remains uncertain, particularly since most are seen once and never again. Astronomers using the NASA/European Space Agency/Canadian Space Agency James Webb Space Telescope have pinpointed the host galaxy of the most distant fast radio burst (FRB) seen to date. Their finding has implications for what kind of energetic event creates these bursts.

What mysterious phenomenon is capable of creating a millisecond-long blast of radio waves so powerful that we can detect it from billions of light-years away? 

The origin of such events, known as fast radio bursts (FRBs), remains uncertain.

A recently discovered FRB contains a clue. The most distant one found to date, its host galaxy proved surprisingly small and young. This suggests that there is little delay between when galaxies form stars and when they become capable of generating FRBs. This indicates FRBs likely are caused by young neutron stars known as magnetars. Only the James Webb Space Telescope was able to detect and characterize the host galaxy, determining both its distance and its size.

“What makes fast radio bursts interesting is that we don't know what generates them. We have theories for what objects produce them, but we don't have conclusive proof,” said Manisha Caleb of the University of Sydney, Australia, lead author on the study published today in the journal Science.

The MeerTRAP team used the MeerKAT telescope to detect the burst on March 4, 2024, leading to its designation as FRB 20240304B. The radio data from this burst suggested that it was extremely distant, possibly the most distant one seen to date. To confirm that distance, though, astronomers would need to study its host galaxy. Although they knew the location of the FRB very precisely, the world’s largest ground-based telescopes could not see any galaxy at that spot in the sky. As a result, the team turned to the Webb telescope.

Webb’s Near-Infrared Camera (NIRCam) instrument detected a galaxy in the right location, and its Near-Infrared Spectrograph (NIRSpec) instrument provided a precise measurement of the galaxy’s redshift: 2.148, corresponding to a time just 3 billion years after the Big Bang. The vast majority of FRBs detected to date occurred billions of years later in cosmic history.

“We thought it would be a big, nicely formed galaxy with lots of stars, and instead it was a little dwarf galaxy, although it was actively forming stars,” said Caleb. 

“The host sticks out in the whole galaxy sample that we have. And it definitely was not what we were expecting,” said Ben Stappers of the University of Manchester, United Kingdom, a co-author on the paper. “This combination of using the MeerTRAP project on the MeerKAT telescope to discover and localize these distant bursts and Webb to study their hosts is very exciting.”

The galaxy existed at the height of “cosmic noon”—a period in the history of the Universe when star formation was at its peak. The galaxy’s rate of star formation suggested that the majority of its stars may have formed within just 30 million years.

This has important implications for the origin of fast radio bursts. One theory suggests that FRBs may originate from the merger of two neutron stars. However, the process of orbiting neutron stars gradually approaching closer and closer until they collide is expected to take billions of years. As a result, FRBs would be expected to be associated with older galaxies containing more evolved stellar populations.

A second theory proposes that an FRB can originate from a single, young, highly magnetic neutron star known as a magnetar through a mechanism like starquakes. In that case, once a massive star explodes as a supernova and leaves behind a magnetar, an FRB might occur relatively quickly with no large time delay. As a result, FRBs would also be expected to be found in younger galaxies like the host of FRB 20240304B.

“Our work suggests that it’s very unlikely that this FRB was produced by a merger,” said Caleb.

"Our results further show the amazing capability of Webb where we can push boundaries beyond what was previously possible," said co-author Themiya Nanayakkara of the University of Sydney, Australia.

In addition to being a record-holder, the new FRB enabled the team to learn more about the billions of light-years of apparently empty space between the burst and Earth.

“A fast radio burst is almost like a cosmic flashlight. It lights up everything along the path. It carries an imprint of everything that it travels through, so you can use it to trace the ‘cosmic web’ —the otherwise invisible matter and structures that it encounters along the way,” said co-author J. Xavier Prochaska of the University of California, Santa Cruz, USA.

The team found the imprint of two cosmic structures on the FRB’s signal—one previously unknown galaxy cluster at a redshift of 0.3 (about 3.5 billion light-years from Earth), and the nearby Virgo Cluster, which is located about 54 million light-years from Earth.

In the future, the team is excited about the potential to discover more distant FRBs. They estimate that the MeerKAT telescope may be able to detect and localize several FRBs per year at a redshift greater than 1.0, meaning they existed more than halfway back to the start of the Universe. As other new radio telescope facilities and instruments come online, that discovery pace may grow. The Webb telescope will be essential for characterizing those distant host galaxies.


Video Credit: NASA, ESA, CSA, STScI, M. Caleb (SIfA)
Image Processing: J. DePasquale (STScI)
Duration: 30 seconds
Release Date: Oct. 8, 2026

#NASA #ESA #Astronomy #Space #Science #Stars #NeutronStars #Magnetars #Galaxies #FastRadioBursts #FRBs #VirgoConstellation #Cosmos #Universe #JWST #NIRCam #InfraredAstronomy #SpaceTelescopes #Europe #NASAGoddard #STScI #UnitedStates #CSA #Canada #STEM #Education #HD #Video

Fast Radio Burst 20240304B in Virgo | James Webb Space Telescope

Fast Radio Burst 20240304B in Virgo | James Webb Space Telescope

This image of the host galaxy of fast radio burst FRB 20240304B, captured by the James Webb Space Telescope’s Near Infrared Camera (NIRCam), shows compass arrows, scale bar, and color key for reference.

The north and east compass arrows show the orientation of the image on the sky. Note that the relationship between north and east on the sky (as seen from below) is flipped relative to direction arrows on a map of the ground (as seen from above).

This image shows invisible near-infrared wavelengths of light that have been translated into visible-light colors. The color key shows which NIRCam filters were used when collecting the light. The color of each filter name is the visible light color used to represent the infrared light that passes through that filter.

Image Description: Image titled “James Webb Space Telescope, FRB 20240304B”. A field full of small galaxies of all shapes against the blackness of space. A few bright white stars show 8 prominent diffraction spikes. A small galaxy at lower right is highlighted with a white box. A shaded triangle extends upward to the corners of a larger box showing a zoom in of the region. Two fuzzy, light blue blobs are at center, with a larger and brighter one at top. Just above the top blob is a white crosshair showing the location where a fast radio burst was detected. At bottom right, a compass arrow shows north pointing to one o’clock and east pointing to 10 o’clock. A label at bottom says “JWST NIRCam filters” with F200W in blue and F322W in orange.


Astronomers using the James Webb Space Telescope were able to study the host galaxy of the most distant known fast radio burst (FRB). By detecting light emitted from oxygen and nitrogen, they were able to determine the galaxy’s cosmological redshift, thereby confirming the FRB occurred just 3 billion years after the Big Bang.

Image Description: A graphic titled “Fast Radio Burst Host Galaxy; Most Distant Fast Radio Burst; NIRSpec Integral Field Spectroscopy.” A graph plots brightness of light versus wavelength. The y axis is labeled brightness with an up arrow labeled brighter and a down arrow labeled dimmer. The x axis is labeled “Wavelength of Light, microns” and goes from 1.0 to 5.0 with tickmarks every 0.5 microns. A jagged white line slopes downward from left to right between 1.0 and 2.5 microns, and is mostly flat beyond that. A prominent peak at 1.6 microns is labeled Oxygen with a transparent blue vertical band. Another peak at 2.1 microns is labeled Hydrogen with a transparent red vertical band. At upper right, a box contains text reading “Redshift = 2.148”.

First discovered in 2007, fast radio bursts (FRBs) are enigmatic, millisecond-long flashes of radio emission from the distant Universe. Their origin remains uncertain, particularly since most are seen once and never again. Astronomers using the NASA/European Space Agency/Canadian Space Agency James Webb Space Telescope have pinpointed the host galaxy of the most distant fast radio burst (FRB) seen to date. Their finding has implications for what kind of energetic event creates these bursts.

What mysterious phenomenon is capable of creating a millisecond-long blast of radio waves so powerful that we can detect it from billions of light-years away? 

The origin of such events, known as fast radio bursts (FRBs), remains uncertain.

A recently discovered FRB contains a clue. The most distant one found to date, its host galaxy proved surprisingly small and young. This suggests that there is little delay between when galaxies form stars and when they become capable of generating FRBs. This indicates FRBs likely are caused by young neutron stars known as magnetars. Only the James Webb Space Telescope was able to detect and characterize the host galaxy, determining both its distance and its size.

“What makes fast radio bursts interesting is that we don't know what generates them. We have theories for what objects produce them, but we don't have conclusive proof,” said Manisha Caleb of the University of Sydney, Australia, lead author on the study published today in the journal Science.

The MeerTRAP team used the MeerKAT telescope to detect the burst on March 4, 2024, leading to its designation as FRB 20240304B. The radio data from this burst suggested that it was extremely distant, possibly the most distant one seen to date. To confirm that distance, though, astronomers would need to study its host galaxy. Although they knew the location of the FRB very precisely, the world’s largest ground-based telescopes could not see any galaxy at that spot in the sky. As a result, the team turned to the Webb telescope.

Webb’s Near-Infrared Camera (NIRCam) instrument detected a galaxy in the right location, and its Near-Infrared Spectrograph (NIRSpec) instrument provided a precise measurement of the galaxy’s redshift: 2.148, corresponding to a time just 3 billion years after the Big Bang. The vast majority of FRBs detected to date occurred billions of years later in cosmic history.

        

“We thought it would be a big, nicely formed galaxy with lots of stars, and instead it was a little dwarf galaxy, although it was actively forming stars,” said Caleb. 

“The host sticks out in the whole galaxy sample that we have. And it definitely was not what we were expecting,” said Ben Stappers of the University of Manchester, United Kingdom, a co-author on the paper. “This combination of using the MeerTRAP project on the MeerKAT telescope to discover and localize these distant bursts and Webb to study their hosts is very exciting.”

The galaxy existed at the height of “cosmic noon”—a period in the history of the Universe when star formation was at its peak. The galaxy’s rate of star formation suggested that the majority of its stars may have formed within just 30 million years.

This has important implications for the origin of fast radio bursts. One theory suggests that FRBs may originate from the merger of two neutron stars. However, the process of orbiting neutron stars gradually approaching closer and closer until they collide is expected to take billions of years. As a result, FRBs would be expected to be associated with older galaxies containing more evolved stellar populations.

A second theory proposes that an FRB can originate from a single, young, highly magnetic neutron star known as a magnetar through a mechanism like starquakes. In that case, once a massive star explodes as a supernova and leaves behind a magnetar, an FRB might occur relatively quickly with no large time delay. As a result, FRBs would also be expected to be found in younger galaxies like the host of FRB 20240304B.

“Our work suggests that it’s very unlikely that this FRB was produced by a merger,” said Caleb.

"Our results further show the amazing capability of Webb where we can push boundaries beyond what was previously possible," said co-author Themiya Nanayakkara of the University of Sydney, Australia.

In addition to being a record-holder, the new FRB enabled the team to learn more about the billions of light-years of apparently empty space between the burst and Earth.

“A fast radio burst is almost like a cosmic flashlight. It lights up everything along the path. It carries an imprint of everything that it travels through, so you can use it to trace the ‘cosmic web’ —the otherwise invisible matter and structures that it encounters along the way,” said co-author J. Xavier Prochaska of the University of California, Santa Cruz, USA.

The team found the imprint of two cosmic structures on the FRB’s signal—one previously unknown galaxy cluster at a redshift of 0.3 (about 3.5 billion light-years from Earth), and the nearby Virgo Cluster, which is located about 54 million light-years from Earth.

In the future, the team is excited about the potential to discover more distant FRBs. They estimate that the MeerKAT telescope may be able to detect and localize several FRBs per year at a redshift greater than 1.0, meaning they existed more than halfway back to the start of the Universe. As other new radio telescope facilities and instruments come online, that discovery pace may grow. The Webb telescope will be essential for characterizing those distant host galaxies.


Credit: NASA, ESA, CSA, STScI, M. Caleb (SIfA)
Image Processing: J. DePasquale (STScI)
Release Date: Oct. 8, 2026

#NASA #ESA #Astronomy #Space #Science #Stars #NeutronStars #Magnetars #Galaxies #FastRadioBursts #FRBs #VirgoConstellation #Cosmos #Universe #JWST #NIRCam #InfraredAstronomy #SpaceTelescopes #Europe #NASAGoddard #STScI #UnitedStates #CSA #Canada #STEM #Education

NASA's SpaceX Crew-12 Arrival after Splashdown | International Space Station

NASA's SpaceX Crew-12 Arrival after Splashdown | International Space Station

NASA astronaut Jessica Meir is helped out of the SpaceX Dragon Freedom spacecraft onboard the SpaceX recovery ship Shannon
NASA astronaut Jack Hathaway is helped out of the SpaceX Dragon Freedom spacecraft onboard the SpaceX recovery ship Shannon
NASA astronaut Jack Hathaway is helped out of the SpaceX Dragon Freedom spacecraft onboard the SpaceX recovery ship Shannon
European Space Agency astronaut Sophie Adenot is helped out of the SpaceX Dragon Freedom spacecraft onboard the SpaceX recovery ship Shannon
European Space Agency astronaut Sophie Adenot is helped out of the SpaceX Dragon Freedom spacecraft onboard the SpaceX recovery ship Shannon
Roscosmos cosmonaut Andrey Fedyaev of Russia is helped out of the SpaceX Dragon Freedom spacecraft onboard the SpaceX recovery ship Shannon
Roscosmos cosmonaut Andrey Fedyaev of Russia is helped out of the SpaceX Dragon Freedom spacecraft onboard the SpaceX recovery ship Shannon
Roscosmos cosmonaut Andrey Fedyaev of Russia is helped out of the SpaceX Dragon Freedom spacecraft onboard the SpaceX recovery ship Shannon

At 11:34 a.m. Eastern Daylight Time (EDT) (8:34 a.m. Pacific Daylight Time) on October 8, 2026, the SpaceX Dragon spacecraft, carrying NASA astronauts Jessica Meir and Jack Hathaway, European Space Agency astronaut Sophie Adenot, and Roscosmos cosmonaut Andrey Fedyaev of Russia, splashed down off the coast of Los Angeles, California.

Teams aboard the recovery ship, including two fast boats, secured the SpaceX Dragon and ensured the spacecraft was safe for the recovery effort. As the fast boat teams completed their work, the recovery ship moved into position to hoist Dragon onto the main deck with the astronauts inside. Once on the main deck, the crew exited the spacecraft.  

This completes 237 days at the International Space Station for the four-person crew. Meir has logged 440 total days in space, placing her in NASA’s Top 10 for cumulative days in space. The Crew-12 mission was the first time Hathaway and Adenot had been to space, while it was the second time for Fedyaev. The crew also conducted four spacewalks during their nearly eight-month mission.


Expedition 75 Crew
Station Commander: Pyotr Dubrov 
Roscosmos (Russia) Flight Engineers:
Anna Kikina,
Sergey Teteryatnikov
Canadian Space Agency (CSA) Flight Engineer: Joshua Kutryk
NASA Flight Engineers: Anil Menon, Jessica Watkins, Luke Delaney 

An international partnership of space agencies provides and operates the elements of the International Space Station (ISS). The principals are the space agencies of the United States, Russia, Europe, Japan, and Canada.


Image Credit: NASA/Keegan Barber
Date: Oct. 8, 2026

#NASA #Space #Science #ISS #Planets #Earth #SpaceXCrewDragonSpacecraft #Crew12 #Astronauts #JessicaMeir #JackHathaway #SophieAdenot #Europe #ESA #Cosmonauts #AndreyFedyaev #Russia #Россия #Roscosmos #Роскосмос #Europe #ESA #HumanSpaceflight #Expedition75 #InternationalCooperation #UnitedStates #STEM #Education

NASA's SpaceX Crew-12 Dragon Spacecraft Splashdown | International Space Station

NASA's SpaceX Crew-12 Dragon Spacecraft Splashdown | International Space Station

Roscosmos cosmonaut Andrey Fedyaev of Russia, left, NASA astronauts Jack Hathaway and Jessica Meir, and European Space Agency astronaut Sophie Adenot are seen inside the SpaceX Dragon Freedom spacecraft onboard the SpaceX recovery ship Shannon shortly after having landed in the Pacific Ocean off the coast of Los Angeles, Calif., Thursday, Oct. 8, 2026. 

The SpaceX Crew Dragon Freedom spacecraft is seen as it lands off the coast of Los Angeles, Calif., Thursday, Oct. 8, 2026.

At 11:34 a.m. Eastern Daylight Time (EDT) (8:34 a.m. Pacific Daylight Time) on October 8, 2026, the SpaceX Dragon spacecraft, carrying NASA astronauts Jessica Meir and Jack Hathaway, European Space Agency astronaut Sophie Adenot, and Roscosmos cosmonaut Andrey Fedyaev of Russia, splashed down off the coast of Los Angeles, California.

Teams aboard the recovery ship, including two fast boats, are securing the SpaceX Dragon and ensuring the spacecraft is safe for the recovery effort. As the fast boat teams complete their work, the recovery ship will move into position to hoist Dragon onto the main deck with the astronauts inside. Once on the main deck, the crew will exit the spacecraft.  

This completes 237 days at the International Space Station for the four-person crew. Meir has logged 440 total days in space, placing her in NASA’s Top 10 for cumulative days in space. The Crew-12 mission was the first time Hathaway and Adenot had been to space, while it was the second time for Fedyaev. The crew also conducted four spacewalks during their nearly eight-month mission.


Expedition 75 Crew
Station Commander: Pyotr Dubrov 
Roscosmos (Russia) Flight Engineers:
Anna Kikina,
Sergey Teteryatnikov
Canadian Space Agency (CSA) Flight Engineer: Joshua Kutryk
NASA Flight Engineers: Anil Menon, Jessica Watkins, Luke Delaney 

An international partnership of space agencies provides and operates the elements of the International Space Station (ISS). The principals are the space agencies of the United States, Russia, Europe, Japan, and Canada.


Image Credit: NASA/Keegan Barber
Date: Oct. 8, 2026

#NASA #Space #Science #ISS #Planets #Earth #SpaceXCrewDragonSpacecraft #Crew12 #Astronauts #JessicaMeir #JackHathaway #SophieAdenot #Europe #ESA #Cosmonauts #AndreyFedyaev #Russia #Россия #Roscosmos #Роскосмос #Europe #ESA #HumanSpaceflight #Expedition75 #InternationalCooperation #UnitedStates #STEM #Education

NASA's SpaceX Crew-12 Dragon Spacecraft Splashdown | International Space Station

NASA's SpaceX Crew-12 Dragon Spacecraft Splashdown | International Space Station

At 11:34 a.m. Eastern Daylight Time (EDT) (8:34 a.m. Pacific Daylight Time) on October 8, 2026, the SpaceX Dragon spacecraft, carrying NASA astronauts Jessica Meir and Jack Hathaway, European Space Agency astronaut Sophie Adenot, and Roscosmos cosmonaut Andrey Fedyaev of Russia, splashed down off the coast of Los Angeles, California.

Teams aboard the recovery ship, including two fast boats, are securing the SpaceX Dragon and ensuring the spacecraft is safe for the recovery effort. As the fast boat teams complete their work, the recovery ship will move into position to hoist Dragon onto the main deck with the astronauts inside. Once on the main deck, the crew will exit the spacecraft.  

This completes 237 days at the International Space Station for the four-person crew. Meir has logged 440 total days in space, placing her in NASA’s Top 10 for cumulative days in space. The Crew-12 mission was the first time Hathaway and Adenot had been to space, while it was the second time for Fedyaev. The crew also conducted four spacewalks during their nearly eight-month mission.


Expedition 75 Crew
Station Commander: Pyotr Dubrov 
Roscosmos (Russia) Flight Engineers:
Anna Kikina,
Sergey Teteryatnikov
Canadian Space Agency (CSA) Flight Engineer: Joshua Kutryk
NASA Flight Engineers: Anil Menon, Jessica Watkins, Luke Delaney 

An international partnership of space agencies provides and operates the elements of the International Space Station (ISS). The principals are the space agencies of the United States, Russia, Europe, Japan, and Canada.


Video Credit: SpaceX
Duration: 21 seconds
Date: Oct. 8, 2026

#NASA #Space #Science #ISS #Planets #Earth #SpaceXCrewDragonSpacecraft #Crew12 #Astronauts #JessicaMeir #JackHathaway #SophieAdenot #Europe #ESA #Cosmonauts #AndreyFedyaev #Russia #Россия #Roscosmos #Роскосмос #Europe #ESA #HumanSpaceflight #Expedition75 #InternationalCooperation #UnitedStates #STEM #Education #HD #Video

U.S. Astronaut & Geoscientist Sian Proctor | International Astronautical Congress 2026

U.S. Astronaut & Geoscientist Sian Proctor | International Astronautical Congress

The theme of this year’s International Astronautical Congress in Antalya, Türkiye, is “The World Needs More Space.” For American astronaut and geoscientist Sian Proctor that means making space more inclusive.

Proctor made history aboard Inspiration4 in 2021— the world’s first all-civilian orbital mission—becoming the first female commercial astronaut spaceship pilot.

She spoke to CGTN Europe correspondent Li Jianhua about her journey to space . . . and why a phenomenon she calls “Earthlight” has given her a new sense of purpose.

Dr. Sian Proctor shares her experience as a SpaceX astronaut for the orbital Inspiration 4 Mission during September 16-18, 2021. Dr. Proctor was the first black female astronaut to pilot a spacecraft.

Thousands of scientists, policymakers and companies have descended on Antalya, Türkiye, for the 77th International Astronautical Congress, a gathering of space researchers and industry representatives.

Learn more about this International Astronautical Federation (IAF) event being held from October 5-9, 2026: https://www.iafastro.org


Video Credit: CGTN Europe
Duration: 10 minutes
Release Date: Oct. 7, 2026 


#NASA #Space #Astronomy #Science #Planets #Earth #SpaceX #Inspiration4 #SianProctor #Pilot #Astronauts #Scientists #Educators #Artists #AfricanAmericans #Moon #Mars #HumanSpaceflight #SpaceExploration #SpacePolicy #CommercialSpace #IAF #IAC #IAC77 #Antalya #Turkiye #InternationalCooperation #STEM #Education #HD #Video

Wednesday, October 07, 2026

NASA Artemis II Crew Saw Impact Flashes on Moon's Far Side

NASA Artemis II Crew Saw Impact Flashes on Moon's Far Side

Hear from the Artemis II crew about impact flashes—bursts of light caused by pieces of space debris hitting the ground—that they saw while they were on the other side of the Moon, during a planned loss of comms. Here is what it was like at two key points in the story: when the crew witnessed the flashes, and when the Lunar Science Team received the news back at Mission Control.

What else did the Artemis II crew see around the Moon? 

Their photographs, observations, drawings, and annotations created a unique scientific record that is now available for you to explore: https://go.nasa.gov/Artemis2LunarScience

The Artemis II Mission involved a ten-day test flight that carried NASA’s Reid Wiseman, Victor Glover, Christina Koch, and Canadian Space Agency (CSA) astronaut Jeremy Hansen 252,756 miles from Earth before splashing down off the coast of San Diego. This mission tested Orion’s life-support, navigation, and deep-space systems and set the stage for future U.S.-crewed lunar landings and, eventually, the first missions to Mars.

Learn more at: https://www.nasa.gov/artemis-ii


Video Credit: NASA Science
Duration: 2 minutes
Release Date: Oct. 7, 2026

#NASA #Space #Science #Earth #Moon #ImpactFlashes #CrewObservations #ArtemisProgram #ArtemisII #OrionSpacecraft #Astronauts #ReidWiseman #VictorGlover #ChristinaKoch #JeremyHansen #HumanSpaceflight #SolarSystem #SpaceExploration #CSA #Canada #NASAJohnson #JSC #UnitedStates #STEM #Education #HD #Video

NASA Artemis SLS RS‑25 Moon Rocket Engine Install Day | Stennis Space Center

NASA Artemis SLS RS‑25 Moon Rocket Engine Install Day | Stennis Space Center


On Sept. 29, 2026, teams at NASA's Stennis Space Center near Bay St. Louis, Mississippi, successfully lifted and installed developmental RS‑25 engine No. 10001 onto the Fred Haise Test Stand for an upcoming hot fire test.

In this video, Josh Greiner, test director for the stand, walks you through what a developmental engine is, and how testing supports NASA's Artemis missions.

Did you know?

• For each Artemis mission, four RS-25 engines, along with a pair of solid rocket boosters, power NASA’s Space Launch System (SLS) rocket to produce more than 8.8 million pounds of total combined thrust at liftoff. 

• All RS-25 engines are built by L3Harris Technologies for Artemis missions. The engines are tested and proven flightworthy at NASA Stennis prior to use. 

• Hot fires at NASA Stennis provide critical performance data to ensure safety and success.

All RS-25 engines are tested and proven flightworthy at NASA Stennis. The test was conducted by a team of operators from NASA, L3Harris, and Syncom Space Services, prime contractor for site facilities and operations.

RS-25 engines are evolved space shuttle main engines, upgraded with new components to produce the additional power needed to help launch NASA’s SLS rocket. The first four Artemis missions are using modified space shuttle main engines also tested at NASA Stennis. For each Artemis mission, four RS-25 engines, along with a pair of solid rocket boosters, power the SLS rocket, producing more than 8.8 million pounds of total combined thrust at liftoff.

Learn about the Artemis program and America's return to the Moon: https://www.nasa.gov/humans-in-space/artemis/


Video Credit: NASA's John C. Stennis Space Center
Duration: 3 minutes, 19 seconds
Release Date: Oct. 7, 2026

#NASA #Space #Artemis #ArtemisProgram #Moon #Rocket #SpaceLaunchSystem #SLS #RS25Engines #RS25 #AerojetRocketdyne #MoonToMars #DeepSpace #SpacePropulsion #SpaceEngineering #SpaceTechnology #NASAStennis #Mississippi #MSFC #UnitedStates #SolarSystem #SpaceExploration #STEM #Education #HD #Video