Wednesday, October 07, 2026

Journey to Supernova Remnant Pa 30 in Cassiopeia | Gemini North Telescope

Journey to Supernova Remnant Pa 30 in Cassiopeia | Gemini North Telescope


Final image: No, this is not a firework display. This is Pa 30—the likely remnant of the historic supernova witnessed in the year 1181, now captured here in unprecedented detail by the Gemini North telescope, one half of the International Gemini Observatory, partly funded by the U.S. National Science Foundation (NSF) and operated by NSF NOIRLab. A supernova is the biggest explosion that humans have ever seen. Each blast is the extremely bright, super-powerful explosion of a star.

Pa 30 is likely the remnant of an old supernova explosion: separate historical records by Chinese, Japanese and Arabic astronomers tell of a "guest star" that appeared in the sky for 185 days in the year 1181. It is believed that this bright new point of light came from the supernova that caused the fireworks in Pa 30. Astronomers do not know exactly what happened in this unusual explosion, classified as a Type Iax supernova, but it is thought to be caused by the merger of two white dwarfs. The mysterious central star in the image is extremely hot and produces a strong wind, possibly forming the radial filaments. Look closely at them: those pearl-like knots stringing the filaments are 4 light-days in diameter. Understanding how a supernova created this amazing nebula continues an 845-year old mystery (and counting).

The final image was captured with the Gemini Multi-Object Spectrograph (GMOS), and it shows that the remnant’s unmistakable firework-shaped ejecta take on a cascading knot-like structure.

Learn about the Gemini North Telescope:
https://noirlab.edu/public/programs/gemini-observatory/gemini-north/


Credit: International Gemini Observatory/NOIRLab/NSF/AURA/E. Slawik/J. Pinto
Acknowledgment: PI: T. Cunningham (Center for Astrophysics — Harvard & Smithsonian)
Image Processing: J. Miller & M. Rodriguez (International Gemini Observatory/NSF NOIRLab), T.A. Rector (University of Alaska Anchorage/NSF NOIRLab), D. de Martin & M. Zamani (NSF NOIRLab)
Duration: 36 seconds
Release Date: Oct. 6, 2026

#NASA #Astronomy #Space #Science #Stars #Nebulae #SupernovaeRemnants #SupernovaRemnants #IRAS005006713 #CassiopeiaConstellation #Cosmos #Universe #InternationalGeminiObservatory #GeminiNorthTelescope #GeminiNorthGMOS #Maunakea #Hawaii #NOIRLab #NSF #AURA #UnitedStates #STEM #Education #HD #Video

Close-up: Supernova Remnant Pa 30 in Cassiopeia | Gemini North Telescope

Close-up: Supernova Remnant Pa 30 in Cassiopeia | Gemini North Telescope

No, this is not a firework display. This is Pa 30—the likely remnant of the historic supernova witnessed in the year 1181, now captured here in unprecedented detail by the Gemini North telescope, one half of the International Gemini Observatory, partly funded by the U.S. National Science Foundation (NSF) and operated by NSF NOIRLab. A supernova is the biggest explosion that humans have ever seen. Each blast is the extremely bright, super-powerful explosion of a star.

Pa 30 is likely the remnant of an old supernova explosion: separate historical records by Chinese, Japanese and Arabic astronomers tell of a "guest star" that appeared in the sky for 185 days in the year 1181. It is believed that this bright new point of light came from the supernova that caused the fireworks in Pa 30. Astronomers do not know exactly what happened in this unusual explosion, classified as a Type Iax supernova, but it is thought to be caused by the merger of two white dwarfs. The mysterious central star in the image is extremely hot and produces a strong wind, possibly forming the radial filaments. Look closely at them: those pearl-like knots stringing the filaments are 4 light-days in diameter. Understanding how a supernova created this amazing nebula continues an 845-year old mystery (and counting).

This image was captured with the Gemini Multi-Object Spectrograph (GMOS), and it shows that the remnant’s unmistakable firework-shaped ejecta take on a cascading knot-like structure.

Learn about the Gemini North Telescope:
https://noirlab.edu/public/programs/gemini-observatory/gemini-north/


Credit: International Gemini Observatory/NOIRLab/NSF/AURA
Acknowledgment: PI: T. Cunningham (Center for Astrophysics — Harvard & Smithsonian)
Image Processing: J. Miller & M. Rodriguez (International Gemini Observatory/NSF NOIRLab), T.A. Rector (University of Alaska Anchorage/NSF NOIRLab), D. de Martin & M. Zamani (NSF NOIRLab)
Duration: 35 seconds
Release Date: Oct. 6, 2026

#NASA #Astronomy #Space #Science #Stars #Nebulae #SupernovaeRemnants #SupernovaRemnants #IRAS005006713 #CassiopeiaConstellation #Cosmos #Universe #InternationalGeminiObservatory #GeminiNorthTelescope #GeminiNorthGMOS #Maunakea #Hawaii #NOIRLab #NSF #AURA #UnitedStates #STEM #Education #HD #Video

Supernova Remnant Pa 30 in Cassiopeia | Gemini North Telescope

Supernova Remnant Pa 30 in Cassiopeia | Gemini North Telescope


No, this is not a firework display. This is Pa 30—the likely remnant of the historic supernova witnessed in the year 1181, now captured here in unprecedented detail by the Gemini North telescope, one half of the International Gemini Observatory, partly funded by the U.S. National Science Foundation (NSF) and operated by NSF NOIRLab. A supernova is the biggest explosion that humans have ever seen. Each blast is the extremely bright, super-powerful explosion of a star.

Pa 30 is likely the remnant of an old supernova explosion: separate historical records by Chinese, Japanese and Arabic astronomers tell of a "guest star" that appeared in the sky for 185 days in the year 1181. It is believed that this bright new point of light came from the supernova that caused the fireworks in Pa 30. Astronomers do not know exactly what happened in this unusual explosion, classified as a Type Iax supernova, but it is thought to be caused by the merger of two white dwarfs. The mysterious central star in the image is extremely hot and produces a strong wind, possibly forming the radial filaments. Look closely at them: those pearl-like knots stringing the filaments are 4 light-days in diameter. Understanding how a supernova created this amazing nebula continues an 845-year old mystery (and counting).

This image was captured with the Gemini Multi-Object Spectrograph (GMOS), and it shows that the remnant’s unmistakable firework-shaped ejecta take on a cascading knot-like structure.

Learn about the Gemini North Telescope:
https://noirlab.edu/public/programs/gemini-observatory/gemini-north/


Credit: International Gemini Observatory/NOIRLab/NSF/AURA
Acknowledgment: PI: T. Cunningham (Center for Astrophysics — Harvard & Smithsonian)
Image Processing: J. Miller & M. Rodriguez (International Gemini Observatory/NSF NOIRLab), T.A. Rector (University of Alaska Anchorage/NSF NOIRLab), D. de Martin & M. Zamani (NSF NOIRLab)
Release Date: Oct. 6, 2026

#NASA #Astronomy #Space #Science #Stars #Nebulae #SupernovaeRemnants #SupernovaRemnants #IRAS005006713 #CassiopeiaConstellation #Cosmos #Universe #InternationalGeminiObservatory #GeminiNorthTelescope #GeminiNorthGMOS #Maunakea #Hawaii #NOIRLab #NSF #AURA #UnitedStates #STEM #Education

Elongated Clouds of Martian Volcano Arsia Mons | Europe's Mars Express

Elongated Clouds of Martian Volcano Arsia Mons | Europe's Mars Express

This image from the European Space Agency’s Mars Express shows the Arsia Mons Elongated Cloud: the most visually striking cloud on the Red Planet. The image is based on data from Mars Express’s High Resolution Stereo Camera (HRSC), and shows the cloud stretching out for around 1500 km.

Researchers using Mars Express now think that exotic physics might be behind this cloud’s formation—physics related to how water vapor turns into icy cloud particles.

This image was processed by Flickr user J Cowart. It uses data from Mars Express orbit 18627 on September 21, 2018.

Image Description: Tan-colored horizontal rectangle showing part of the surface of Mars imaged by an orbiting satellite. Above the curved horizon is space. To the lower right of the image is a volcano. Stretching to the left of the volcano is a long wisp of white cloud,  seeming to emanate from the volcano. We also see the shadow of the cloud just below the cloud itself.

The image was taken by Mars Express’s High Resolution Stereo Camera (HRSC) on June 24, 2024; it shows a region of Mars just under 1250 km across (an area of 780 000 square km) with the cloud stretching out for around 980 km.
This white wisp of water ice emerges downwind of the 20-km-tall Arsia Mons volcano. It forms, grows, and fades on a daily basis, stretching out for up to 1800 km—nearly twice the length of the United Kingdom—before quickly evaporating. This cycle repeats every morning for several months.

Since September 13, 2018, the Visual Monitoring Camera (VMC) on board the European Space Agency’s Mars Express has been observing the evolution of a curious cloud formation that appears regularly in the vicinity of the 20 km-high Arsia Mons volcano, close to the planet’s equator. The cloud can be seen in this VMC image taken October 10, 2018, as the white, elongated feature extending 1500 km westward of the volcano.

Mars’s oddest cloud may be even odder than we thought . . . Scientists using the European Space Agency's Mars Express, in combination with the latest meteorological model of the Red Planet, have found that there may be very exotic physics behind Mars’s most curious cloud. Each spring and summer in Mars’s southern hemisphere, during the Martian dusty season, we see a spectacular cloud emerge: the Arsia Mons Elongated Cloud (AMEC), the most visually striking cloud on the Red Planet.

This white wisp of water ice emerges downwind of the 20-km-tall Arsia Mons volcano. It forms, grows, and fades on a daily basis, stretching out for up to 1800 km—nearly twice the length of the UK—before quickly evaporating. This cycle repeats every morning for several months.

Mars Express first revealed the AMEC in 2018, and has viewed the recurrent cloud repeatedly since. Researchers have explored its evolution, vivid dynamics and intriguing behavior, determining it to be an orographic cloud: a type of cloud also seen on Earth that forms as wind flows past the craggy topography of a volcano or mountain.

However, when trying to model exactly how the cloud springs to life, our simulations simply did not reproduce what we see in the images—until now.

“To create the AMEC in our modeling, we found that we needed to include some exotic physics… physics that, while included in textbooks, is treated as theoretical and usually thought not to happen in nature. It certainly hasn’t been seen in action before,” says Jorge Hernández-Bernal of LMD/CNRS/Sorbonne Université in Paris, France, lead author of the new study. “Once we included this physics in our simulations, the AMEC emerged just as we hoped.”

“Wholly unexpected”: a rare process in action

On Earth and elsewhere, clouds typically form when moist air cools and water vapor condenses into liquid droplets or icy crystals. This usually happens via a process known as heterogeneous nucleation, which requires specks of other ‘stuff’ to be present in the atmosphere for vapor to cling and condense onto—salt, pollen, soot, or dust, for instance. On Mars, it is thought to be dust.

“For the AMEC, it seems that cloud formation takes place without needing any of this ‘stuff’,” adds Jorge. “Water vapor turns directly into icy cloud particles without any middle step. It’s akin to droplets of condensation appearing in the middle of a room, rather than on a window. We call this homogeneous nucleation, and we’ve never seen it before in a planetary atmosphere. It’s wholly unexpected.”

Scientists had suggested that this process might take place in the upper atmospheres of Earth and Venus, but it has not been spotted. Its rarity is due to it requiring exceptional circumstances, with extreme relative humidity levels of over 100,000 times those usually experienced in our daily life on Earth. “We’ve not seen these conditions on Mars before, but our finding now strongly suggests that the planet’s humidity can indeed reach these extreme levels,” says Jorge.

Jorge and colleagues found that the AMEC sits in a unique position where Mars’s thin atmosphere and the towering height of the nearby Arsia Mons volcano come together to create the conditions needed to see this rare process in action.

As winds flow past Arsia Mons, the volcano’s bulk triggers a powerful wave that lifts moist parcels of air several kilometers up into the air in just a few minutes. This cools the atmosphere rapidly, causing temperatures to drop by 30 degrees in just 10 minutes and relative humidity levels to spike. Water vapor then spontaneously freezes directly into cloud particles, forming the AMEC.

While some aspects of the modelled cloud do not exactly match the observations, “the result is remarkable,” says Jorge. “We don’t have nearly as much information about Mars’s atmosphere as we do about Earth's, so reproducing the AMEC to this degree is a big success for the model.”

The researchers based their modelling on data from the three cameras aboard Mars Express: the Visual Monitoring Camera, High Resolution Stereo Camera, and OMEGA. Mars Express can image large swathes of the Martian surface at high resolution, and it is one of the few Mars-orbiting spacecraft—alongside ESA’s ExoMars Trace Gas Orbiter—able to observe during morning hours, when the AMEC is present.

“Mars Express can also track how the cloud is changing on timescales of mere hours, which gives us an unrivalled view of short-lived phenomena on the planet,” says ESA Mars Express Project Scientist Colin Wilson. “Overall, this finding is a true accomplishment for the mission and its scientists: Mars Express discovered the AMEC, has followed up and monitored it for years, and is now helping reveal the secrets of its formation.”

Beyond furthering our understanding of atmospheric processes on Mars and elsewhere, the result highlights that we should not discount unlikely processes when exploring the planets of the Universe (including exoplanets). Colin adds: “While clouds on Earth and Mars seem to be governed by the same ‘rules’, understanding this exotic Martian cloud required exotic physics—and this may be true elsewhere in the cosmos.”

The European Space Agency's Mars Express Mission (2003-2026) was launched on June 2, 2003, from Baikonur, Kazakhstan, aboard a Russian Soyuz rocket with a Fregat upper stage. In addition to being Europe’s first mission to Mars, Mars Express is the first fully European mission to any planet. The orbiter has been successfully performing scientific measurements since early 2004, namely, high-resolution imaging and mineralogical mapping of the surface, radar sounding of the subsurface structure down to the permafrost, precise determination of the atmospheric circulation and composition, and study of the interaction of the atmosphere with the interplanetary medium. Due to the valuable science return and the highly flexible mission profile, Mars Express has been granted several mission extensions.


Credits: ESA/DLR/FU Berlin; CC BY-SA 3.0 IGO
Acknowledgements: J. Cowart
Release Date: Oct. 7, 2026

#NASA #ESA #Space #Astronomy #Science #Planets #Mars #Atmospheres #Geology #Volcanoes #ArsiaMons #OrographicClouds #ElongatedClouds #AMEC #MarsExpress #MarsExpressSpacecraft #MarsOrbiters #HRSC #Europe #DLR #FUBerlin #Berlin #Germany #Deutschland #CitizenScience #JCowart #CitizenScientists #STEM #Education

Crew-12's Handmade Earth Gravity Indicator | International Space Station

Crew-12's Handmade Earth Gravity Indicator | International Space Station

NASA astronaut Jessica Meir, commander of NASA’s SpaceX Crew-12 mission to the International Space Station: "Our microgravity indicator consists of four satellites orbiting a crocheted Earth, all hand-made elements by Jack’s daughter and my childhood best friend. Each crew member selected a personal symbol or 'satellite.' A tether links each satellite to the Earth, representing our connection to our families, friends, and our one shared home. We’ll see this indicator drop as we re-enter Earth’s gravity tomorrow."

"I chose a panda holding a mushroom, two adorable symbols of environmental importance and cultural fascination. Pandas are modern icons of species preservation and international diplomacy, and a pivotal character in my childhood. Mushrooms, or fungi, are the great decomposers, with all life on earth depending on them to keep our soils healthy and food webs functioning."

"Jack chose a moon that his daughter hand-crocheted. Each color woven into the design represents a member of their family or a cherished shared activity. By bringing this piece with him, he keeps their bond close, allowing Jack to re-live happy memories while looking forward to the ones they’ll create when he returns."

"Sophie chose a banana. Bananas are the world’s most common fruit, ordinary fruit shared by billions of people across every continent. Yet on orbit fresh fruit is rare. She wanted with us a playful reminder of kitchens and home—a familiar piece of Earth drifting weightless with us."

"Andrey chose this thing, because it reminds me of an old space soviet movie. He would invite everyone to try to guess what this is."

"And we present to you, Planet Gaia and her moons, floating here in Crew-12’s Dragon!"

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 Crew Dragon spacecraft. Splashdown is expected at approximately 11:34 a.m. on Thursday, Oct. 8, off the California coast, followed by crew recovery operations.


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 Jessica Meir
Date: Oct. 7, 2026

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

Crew-12 Dragon Spacecraft Hatch Closure | International Space Station

Crew-12 Dragon Spacecraft Hatch Closure | International Space Station

At 6:05 a.m. Eastern Daylight Time (EDT) on October 7, 2026, the hatch closed between the SpaceX Dragon spacecraft and the International Space Station, marking the start of NASA’s SpaceX Crew-12 return operations. At 8:05 a.m. EDT, 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. Splashdown is expected at approximately 11:34 a.m. on Thursday, Oct. 8, off the California coast, followed by crew recovery operations.


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: 47 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

Turkiye hosts its first International Astronautical Congress

Turkiye hosts its first International Astronautical Congress

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. It kicked off Monday, October 5, 2026. This year's theme is: "Why we need more space." 

CGTN's Li Jinhua spoke to a few of the more than 6,000 attendees about what could be on the horizon for the space sector. 

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

Turkey, officially the Republic of Türkiye, is a country mainly located in Anatolia in West Asia with a smaller part called East Thrace in Southeast Europe. It borders the Black Sea to the north; Georgia, Armenia, Azerbaijan, and Iran to the east; Iraq, Syria, and the Mediterranean Sea to the south; and the Aegean Sea, Greece, and Bulgaria to the west. Antalya is one of the largest cities in Turkey and the capital of Antalya Province, the fifth-most populous province. Recognized as the "capital of tourism" in Turkey and a pivotal part of the Turkish Riviera, Antalya sits on Anatolia's southwest coast, flanked by the Taurus Mountains.


Video Credit: CGTN
Duration: 2 minutes, 33 seconds
Release Date: Oct. 5, 2026

#NASA #Space #Astronomy #Science #Planets #Earth #Moon #Mars #HumanSpaceflight #SpaceExploration #SpacePolicy #CommercialSpace #IAF #IAC #IAC77 #Antalya #Turkiye #InternationalCooperation #STEM #Education #HD #Video

Tuesday, October 06, 2026

NASA's SpaceX Crew-12 Prepares for Earth Return | International Space Station

NASA's SpaceX Crew-12 Prepares for Earth Return | International Space Station

NASA's SpaceX Crew-12 members gather for a portrait in the pressure suits they will wear when they depart the International Space Station inside the SpaceX Dragon spacecraft. From left, Roscosmos cosmonaut and mission specialist Andrey Fedyaev of Russia, NASA astronauts Jack Hathaway and Jessica Meir, Crew-12 pilot and commander respectively, and European Space Agency (ESA) astronaut and mission specialist Sophie Adenot.
European Space Agency (ESA) astronaut and NASA's SpaceX Crew-12 mission specialist Sophie Adenot poses for a portrait while wearing the pressure suit she will wear when she departs the International Space Station inside the SpaceX Dragon spacecraft. 

European Space Agency astronaut and NASA's SpaceX Crew-12 mission specialist Sophie Adenot poses for a portrait while wearing the pressure suit she will wear when she departs the International Space Station inside the SpaceX Dragon spacecraft.
Roscosmos cosmonaut and NASA's SpaceX Crew-12 mission specialist Andrey Fedyaev of Russia poses for a portrait while wearing the pressure suit he will wear when he departs the International Space Station inside the SpaceX Dragon spacecraft.
NASA astronaut and NASA's SpaceX Crew-12 pilot Jack Hathaway poses for a portrait while wearing the pressure suit he will wear when he departs the International Space Station inside the SpaceX Dragon spacecraft.
European Space Agency astronaut and Expedition 75 flight engineer Sophie Adenot of France looks at the Earth below from the cupola, the International Space Station's "window to the world." Just outisde the cupola is the Russian Soyuz MS-29 spacecraft from Roscosmos docked to the Prichal module. 

NASA's SpaceX Crew-12 emblem

NASA astronauts Jessica Meir and Jack Hathaway will respectively command and pilot Dragon when it undocks from the Harmony module’s space-facing port at 8:05 a.m. EDT on Wednesday, October 7, 2026. Mission specialists Sophie Adenot of the European Space Agency (ESA) and Andrey Fedyaev of Roscosmos will ride back to Earth with the NASA duo for a parachute-assisted splashdown in the Pacific Ocean at 11:34 a.m. on Thursday where NASA and SpaceX support personnel will retrieve Dragon and greet the crew. Their return to Earth will represent the completion of NASA’s SpaceX Crew-12 mission after 237 days in space.

The homebound quartet has finalized packing Dragon with personal items, cargo, and scientific samples that began a couple of weeks ago. The returning crew also prepared drink bags combined with salt tablets that they will consume before reentering Earth’s atmosphere. Fluid loading is a part of every crew’s return to Earth and helps the body adjust to gravity after a long duration spaceflight.


Expedition 75 Crew
Station Commander: Pyotr Dubrov 
Roscosmos (Russia) Flight Engineers:
Andrey Fedyaev,
Anna Kikina, 
Sergey Teteryatnikov
European Space Agency Flight Engineer: Sophie Adenot
Canadian Space Agency (CSA) Flight Engineer: Joshua Kutryk
NASA Flight Engineers: Jessica Meir, Jack Hathaway, 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 Credits: NASA's Johnson Space Center, NASA astronaut Anil Menon, European Space Agency (ESA)
Image Dates: Sept. 21-22, 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 Curiosity Rover Catches Stunning Martian Dawn | Jet Propulsion Laboratory

NASA’s Curiosity Rover Catches Stunning Martian Dawn | Jet Propulsion Laboratory

The captivating shapes of wind-carved crags called yardangs are revealed in this zoomed-in crop of a broader panorama captured by NASA’s Curiosity Mars rover on Aug. 11, 2026. Scientists are eager to learn more about how the yardang layer formed. 

Image Description: A stark, grayish-tan Martian landscape features jagged rock formations and rolling mountain ridges beneath a pale, hazy sky.

A broad, panoramic view of a stark, grayish-tan Martian landscape features jagged rock formations and rolling mountain ridges beneath a hazy sky. Features in the front are darker while distant rock formations are washed in pale light.


NASA’s Curiosity Mars rover captured this view looking back at the floor of Gale Crater on Sept. 5, 2026. Just nine days prior, the rover had marked 1 kilometer of elevation gain above the crater floor since beginning its ascent of Mount Sharp in 2014.
Image Description: A wide panoramic view of a rocky, reddish-brown Martian valley framed by rugged hills under a hazy sky, with a portion of NASA’s Curiosity Mars visible on the far right.

This artist’s concept shows Mount Sharp, the 3-mile-tall (5-kilometer-tall) mountain that NASA’s Curiosity has been ascending since 2014. The location of the yardang layer, which the rover recently captured from a distance, is indicated by an ellipse annotation on the mountain’s northwestern shoulder. 
Image Description: A 3D topographical map shows a large Martian crater with a prominent central mountain peak, encircled by a black oval highlighting a specific region near the base of the mound.

A newly released panorama captured by NASA’s Curiosity rover offers the most detailed view yet of distant, wind-carved Martian cliffs, highlighting features the mission’s scientists have long been waiting to see up close. The scene was snapped at 8:30 a.m. local Mars time, showing striking blue hues in the foreground as bright morning light illuminates crags known as yardangs on the horizon.

This panorama was captured by Curiosity’s Mastcam on Aug. 11, 2026, the 4,982nd Martian day, or sol, of the mission, and comprises six individual images that were stitched together after being sent to Earth. Unlike most of Curiosity’s Mastcam images, this one was processed without white balancing, preserving the early morning appearance.

The yardang layer extends roughly 10 miles (16 kilometers) across the northwestern reaches of Mount Sharp, a 3-mile-tall (5-kilometer-tall) mountain that Curiosity has been ascending since 2014. In fact, the rover recently passed another milestone in its ascent, reaching 0.6 miles (1 kilometer) of elevation—the most ever climbed on Mars. As it draws ever-closer to the yardangs, mission scientists expect to get even more amazing imagery—and, they hope, answers to how these cliffs were created.

Mount Sharp is made up of layers, each recording a distinct period of Mars’ history. By studying them, scientists have been able to learn more about lakes and streams that covered this part of the Red Planet billions of years ago. Eventually, the water dried up and left salty minerals behind. After new material stopped settling on the mountain, part of it may have been stripped away by wind, giving rise to the yardangs.

“The yardang layer looks out of place. It’s the wrong color, the layers tilt at an odd angle, and it almost appears plastered on,” said Ashwin Vasavada, Curiosity project scientist of NASA’s Jet Propulsion Laboratory in Southern California. “But that’s what makes it exciting to reach. No one is sure exactly what created this layer, but one idea is it may be ash deposited by ancient volcanic eruptions.”

Curiosity is in the second year of its fifth extended mission. It started with an exploration of the spiderweb-like boxwork ridges. The rover will spend most of the next year or so driving through layers enriched with sulfates and carbonates, both signs of ancient drying on the surface. During 2027, scientists hope to reach the base of the yardangs, where Curiosity will be able to use its robotic arm to collect one-of-a-kind data on these mysterious features.

Curiosity was built by NASA's Jet Propulsion Laboratory (JPL), managed by Caltech in Pasadena, California. NASA JPL leads the mission on behalf of the agency’s Science Mission Directorate in Washington as part of its Mars Exploration Program portfolio. Malin Space Science Systems in San Diego built and operates Mastcam.

Celebrating 14+ Years on Mars (2012-2026)
Mission Name: Mars Science Laboratory (MSL)
Rover Name: Curiosity
Main Job: To determine if Mars was ever habitable to microbial life. 
Launch: Nov. 6, 2011
Landing Date: Aug. 5, 2012, Gale Crater, Mars

To learn more about Curiosity, visit: https://science.nasa.gov/mission/msl-curiosity/

For more information on NASA's Mars missions, visit: mars.nasa.gov


Image Credit: NASA/JPL-Caltech/MSSS/ESA/DLR/FU Berlin
Image Dates: Aug. 11 & Sept. 5, 2026
Release Date: Oct. 6, 2026

#NASA #Space #Astronomy #Science #Planets #Mars #Astrobiology #Geology #Yardangs #CuriosityRover #Sol4982 #MSL #MountSharp #GaleCrater #Robotics #SpaceTechnology #SpaceEngineering #MSSS #JPL #Caltech #UnitedStates #MarsExploration #SolarSystem #STEM #Education

Astronaut Pikachu gets a private tour | International Space Station

Astronaut Pikachu gets a private tour | International Space Station

Earlier this year, our astronaut Sophie Adenot gave astronaut Pikachu a special tour of the International Space Station as part of the Pokémon × European Space Agency (ESA) partnership. Now, as World Space Week 2026 begins, space fans can continue the adventure through Pokémon-themed exhibitions at science museums across Europe.

Learn more about World Space Week 2026: https://www.worldspaceweek.org

ESA and Pokémon are teaming up to inspire the next generation of explorers. Whether through science or imagination, discovery begins with curiosity.

Learn more about the ESA-Pokémon partnership here: https://bit.ly/4rO47Rv

Pokémon is a Japanese media franchise consisting of video games, animated series and films, a trading card game, and other related media. The franchise takes place in a shared universe where humans co-exist with special creatures, a large variety of species endowed with special powers.

Follow Sophie’s mission on the εpsilon page: https://www.esa.int/Science_Exploration/Human_and_Robotic_Exploration/epsilon 


Expedition 75 Crew
Station Commander: Jessica Meir
Roscosmos (Russia) Flight Engineers:
Andrey Fedyaev,
Anna Kikina, Pyotr Dubrov, 
Sergey Teteryatnikov
European Space Agency Flight Engineer: Sophie Adenot
Canadian Space Agency (CSA) Flight Engineer: Joshua Kutryk
NASA Flight Engineers: Jack Hathaway, 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 (ESA)
Duration: 2 minutes
Release Date: Oct. 6, 2026  

#NASA #Space #Science #Astronomy #ISS #Earth #Cupola #PokemonxESA #WorldSpaceWeek2026 #Pikachu #ピカチュウ #Pokemon #ポケモン #Japan #日本 #Children #Toys #Astronauts #SophieAdenot #France #CNES #Cosmonauts #Russia #Россия #Roscosmos #Роскосмос #HumanSpaceflight #Expedition75 #InternationalCooperation #UnitedStates #STEM #Education #HD #Video

The Milky Way: View from Utah

The Milky Way: View from Utah



Astrophotographer Cary Bahora: "I'm 60 and never seen so many stars as I did in the extremely remote Henry Mountains of Utah at 10,500 ft. It was amazing walking around seeing clearly only by starlight. Two pics looking south. Other looking north. And is that a galaxy in the lower right on the northward looking pic?"

Generally speaking, the best time to see the Milky Way galaxy is during the Milky Way season from February to October, usually between 00:00 and 5:00, and on nights with a New Moon. This, however, will vary depending on the hemisphere, your latitude, and other factors like the moon phase.

The Henry Mountains is a mountain range located in the southeastern portion of the U.S. state of Utah that runs in a generally north-south direction, extending over a distance of about 30 miles (48 km). 

Utah is a landlocked state in the Mountain West subregion of the Western United States. It is one of the Four Corners states, sharing a border with Arizona, Colorado, and New Mexico. It also borders Wyoming to the northeast, Idaho to the north, and Nevada to the west.


Image Credit: Cary Bahora
Location: Henry Mountains, Utah, United States
Date: Oct. 1, 2026

#NASA #Astronomy #Space #Science #SolarSystem #Stars #SagittariusConstellation  #MilkyWayGalaxy #Cosmos #Universe #Astrophotography #CaryBahora #Astrophotographers #HenryMountains #Utah #UnitedStates #STEM #Education

The Northern Lights over Reykjavik, Iceland

The Northern Lights over Reykjavik, Iceland

Astrophotographer Wioleta Gorecka: "This time, I wanted to capture the aurora borealis in the center of Reykjavík. It is not an easy task due to light pollution; the aurora needs to be strong enough to be visible and allow for a proper exposure. I managed to capture the shot just as the famous Hallgrímskirkja church was illuminated in pink—a symbol of the fight against breast cancer. The colors harmonized beautifully."

Also 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/

Iceland is a Nordic island country between the Arctic Ocean and the North Atlantic Ocean, located on the Mid-Atlantic Ridge between Europe and North America. Reykjavík is the capital and largest city of Iceland. It is located on the southern shore of the Faxaflói bay in southwest Iceland and has a latitude of 64°08′ N, making it the world's northernmost capital of a sovereign state.

Image Credit: Wioleta Gorecka
Location: Reykjavik, Hallgrimskirkja
Wioleta's website: https://instagram.com/wiola.gorecka?igshid=ff0xckzefdlb
Release Date: Oct. 5, 2026

#NASA #Astronomy #Space #Science #Sun #SolarSystem #SolarWind #Planet #Earth #Magnetosphere #GeomagneticStorms #Aurora #AuroraBorealis #NorthernLights #Astrophotography #WioletaGorecka #Astrophotographers #Reykjavík #Iceland #Ísland #STEM #Education

Journey to The Flower Bud Nebula—NGC 7129 in Cepheus | Webb Telescope

Journey to The Flower Bud Nebula—NGC 7129 in Cepheus | Webb Telescope

This video takes the viewer on a journey through space to a technicolor dreamscape. It reveals a new image from the NASA/European Space Agency/Canadian Space Agency James Webb Space Telescope. It portrays a stellar nursery known as NGC 7129, a nebula that holds numerous protostars and stars within its fields of gas and dust. Webb captured infrared light that pierces through the dense matter that scatters or absorbs other types of light. This region, rife with stellar objects at various stages of their lives, offers an opportunity to explore how stars shape their surrounding environment.

Also known as the Flower Bud Nebula or Small Cluster Nebula, NGC 7129 is a reflection nebula located about 3,300 light years away in the constellation Cepheus. A young open cluster is responsible for illuminating the surrounding nebula. The region to the left of the central star is filled with hot, atomic hydrogen gas. This creates a golden glow, while the region to the right is packed with cooler, molecular hydrogen. Embedded protostars in the rightmost region eject outflows that shock and heat the region, giving certain areas a red hue and a clumpy texture. Many of these red outflows, ejected as protostars accumulate mass, are visible throughout the image.

The central star and the stars embedded within the golden region are at a more mature stage in their life cycle than the protostars growing to the right of the central star. Their heat breaks down the molecular hydrogen into atoms, driving variations in temperature and color. The coldest, densest gas, where protostars have yet to form, is shown in grey.


Credit: ESA/Webb, NASA, CSA, WIYN and NOIRLab, NSF, AURA, DSS2, A. Pagan (STScI), N. Bartmann (ESA/Webb),  E. Slawik, N. Risinger, T. A. Rector, H. Schweiker, M. Zamani (ESA/Webb)
Duration: 1 minute, 30 seconds
Release Date: Oct. 6, 2026

#NASA #ESA #Astronomy #Space #Science #Stars #Protostars #Nebulae #StellarNurseries #NGC7129 #FlowerBudNebula #SmallClusterNebula #CepheusConstellation #Universe #JWST #NIRCam #InfraredAstronomy #SpaceTelescopes #Europe #NASAGoddard #STScI #UnitedStates #CSA #Canada #STEM #Education #HD #Video

Close-up: The Flower Bud Nebula—NGC 7129 in Cepheus | Webb Telescope

Close-up: The Flower Bud Nebula—NGC 7129 in Cepheus | Webb Telescope

A technicolor dreamscape is revealed in this new image from the NASA/European Space Agency/Canadian Space Agency James Webb Space Telescope. It portrays a stellar nursery known as NGC 7129, a nebula that holds numerous protostars and stars within its fields of gas and dust. Webb captured infrared light that pierces through the dense matter that scatters or absorbs other types of light. This region, rife with stellar objects at various stages of their lives, offers an opportunity to explore how stars shape their surrounding environment.

Also known as the Flower Bud Nebula or Small Cluster Nebula, NGC 7129 is a reflection nebula located about 3,300 light years away in the constellation Cepheus. A young open cluster is responsible for illuminating the surrounding nebula. The region to the left of the central star is filled with hot, atomic hydrogen gas. This creates a golden glow, while the region to the right is packed with cooler, molecular hydrogen. Embedded protostars in the rightmost region eject outflows that shock and heat the region, giving certain areas a red hue and a clumpy texture. Many of these red outflows, ejected as protostars accumulate mass, are visible throughout the image.

The central star and the stars embedded within the golden region are at a more mature stage in their life cycle than the protostars growing to the right of the central star. Their heat breaks down the molecular hydrogen into atoms, driving variations in temperature and color. The coldest, densest gas, where protostars have yet to form, is shown in grey.


Credit: NASA, ESA, CSA, STScI, N. Bartmann (ESA/Webb)
Image Processing: A. Pagan (STScI)
Duration: 30 seconds
Release Date: Oct. 6, 2026

#NASA #ESA #Astronomy #Space #Science #Stars #Protostars #Nebulae #StellarNurseries #NGC7129 #FlowerBudNebula #SmallClusterNebula #CepheusConstellation #Universe #JWST #NIRCam #InfraredAstronomy #SpaceTelescopes #Europe #NASAGoddard #STScI #UnitedStates #CSA #Canada #STEM #Education #HD #Video

The Flower Bud Nebula: NGC 7129 in Cepheus | James Webb Space Telescope

The Flower Bud Nebula: NGC 7129 in Cepheus | James Webb Space Telescope

The NASA/European Space Agency/Canadian Space Agency James Webb Space Telescope’s Near-InfraRed Camera (NIRCam) has revealed many protostars and stars within the glowing gases of NGC 7129. Also known as the Flower Bud Nebula or Small Cluster Nebula, NGC 7129 is a reflection nebula located about 3,300 light years away in the constellation Cepheus. A young open cluster is responsible for illuminating the surrounding nebula. The region to the left of the central star is filled with hot, atomic hydrogen gas. This creates a golden glow, while the region to the right is packed with cooler, molecular hydrogen. Embedded protostars in the rightmost region eject outflows that shock and heat the region, giving certain areas a red hue and a clumpy texture. Many of these red outflows, ejected as protostars accumulate mass, are visible throughout the image.

The central star and the stars embedded within the golden region are at a more mature stage in their life cycle than the protostars growing to the right of the central star. Their heat breaks down the molecular hydrogen into atoms, driving variations in temperature and color. The coldest, densest gas, where protostars have yet to form, is shown in grey.

Image Description: A young star cluster filled with many stars that display Webb’s unique eight-pronged diffraction pattern. At its center is a yellow star which sports the largest diffraction pattern. To the left of the star, there is a region filled with yellow dust and gas that extends from the star to the left border of the image. This yellow region extends from the bottom, covering about two-thirds of the image. The yellow region has several blue stars of different sizes embedded within. The top third lies outside of the yellow region. It holds a few bright protostars within dense gray gas. Those stars illuminate the gas, making it appear blue. A few red outflows from other protostars are visible above this grayish-blue region. To the right of the central star, there is a clumpy, flame-like plume of red dust and gas with protostars that emit a soft white light within. The plume is surrounded by more dense gray gas and dust. There are several background galaxies strewn throughout the image.


Credit: NASA, ESA, CSA, STScI
Image Processing: A. Pagan (STScI)
Release Date: Oct. 6, 2026

#NASA #ESA #Astronomy #Space #Science #Stars #Protostars #Nebulae #StellarNurseries #NGC7129 #FlowerBudNebula #SmallClusterNebula #CepheusConstellation #Cosmos #Universe #JWST #NIRCam #InfraredAstronomy #SpaceTelescopes #Europe #NASAGoddard #STScI #UnitedStates #CSA #Canada #STEM #Education

Monday, October 05, 2026

Swirling Spiral Galaxy Messier 83 in Hydra (radio telescope view) | ALMA

Swirling Spiral Galaxy Messier 83 in Hydra (radio telescope view) | ALMA

Like a portal to another dimension, a hypnotizing swirl is featured in this picture of the spiral galaxy Messier 83 (M83), also known as the Southern Pinwheel, located approximately 15 million light-years away. It is one of the brightest galaxies in the night sky, but this image––taken with the Atacama Large Millimeter/submillimeter Array (ALMA). ALMA does not show how M83 looks in the light our eyes can see. Instead, it depicts the light emitted by cold gas molecules, the ingredients of star formation.

Nicolas-Louis de Lacaille discovered M83 on February 17, 1752, at the Cape of Good Hope.

Astronomers are interested in molecular gas clouds as virtually all stars are born from their collapse. Once stars form, they heat up their surroundings, making it harder for gas to condense and form further stars. This, combined with galactic dynamics that continually stirs gas, controls the growth of galaxies. ALMA allows astronomers to map how the density and temperature of these gas clouds change at locations within a galaxy, such as the central regions, the spiral arms, or the space between them. This in turn helps us understand star formation in a variety of galactic environments. The European Southern Observatory (ESO) is an ALMA partner. 

M83 closely resembles our own galaxy, the Milky Way. Since M83 appears nearly face-on in the sky, astronomers enjoy a privileged view to study whether the recipe to turn gas into stars is universal or changes within M83.

Image Description: This image shows an object made of two spiral arms connected at the center, in shades of orange against a black background. The object is brightest at the center and along the spiral arms. The spirals are composed of cloud-like threads that become more diffuse further away from the center of the image, spreading out like loose tufts of wool.

The Atacama Large Millimeter/submillimeter Array (ALMA), an international astronomy facility, is a partnership of the European Southern Observatory (ESO), the U.S. National Science Foundation (NSF), and the National Institutes of Natural Sciences (NINS) of Japan in cooperation with the Republic of Chile. ALMA is funded by ESO on behalf of its Member States, by NSF in cooperation with the National Research Council of Canada (NRC) and the National Science and Technology Council (NSTC) in Taiwan, and by NINS in cooperation with the Academia Sinica (AS) in Taiwan and the Korea Astronomy and Space Science Institute (KASI).

ALMA construction and operations are led by ESO on behalf of its Member States; by the National Radio Astronomy Observatory (NRAO), managed by Associated Universities, Inc. (AUI), on behalf of North America; and by the National Astronomical Observatory of Japan (NAOJ) on behalf of East Asia. The Joint ALMA Observatory (JAO) provides the unified leadership and management of ALMA's construction, commissioning, and operation. 


Learn more about the Atacama Large Millimeter/submillimeter Array (ALMA):
https://www.almaobservatory.org/en/about-alma/

Credit: ALMA(ESO/NAOJ/NRAO)/J. Koda et al.
Release Date: Oct. 5, 2026

#NASA #Astronomy #Science #Space #Messier83 #M83 #SouthernPinwheelGalaxy #NGC5236 #SpiralGalaxies #HydraConstellation #Cosmos #Universe #ALMA #RadioAstronomy #Chile #NSF #AUI #NRAO #UnitedStates #NAOJ #Japan #ESO #Europe #STEM #Education