Saturday, September 19, 2026

A Zodiacal Night in India

A Zodiacal Night in India

Also known as the false dawn, a luminous band of zodiacal light is captured in this dark night skyscape. The serene view was recorded just before the beginning of astronomical twilight during September's star party at the remote Hanle Dark Sky Reserve, Ladakh, India, planet Earth. 

At about 4,500 meters altitude, the dark sky reserve presents a haven for hardy stargazing and astrophotography enthusiasts. While meteors streak through the night, bright planet Jupiter appears immersed in the faint zodiacal glow near the eastern horizon. Follow the zodiacal band toward the zenith to find open star cluster M44 and a yellowish tinged planet Mars near the center of the frame. In fact, serendipitous detections of interplanetary dust by NASA's Juno spacecraft suggest Mars itself is the source of dust that back scatters sunlight and creates zodiacal light in planet Earth's night.

What's that strangely diffused white light? 
Dust orbiting the Sun. At certain times of the year, a band of sun-reflecting dust from the inner Solar System appears prominently just after sunset—or just before sunrise—and is called zodiacal light. Although the origin of this dust is still being researched, a leading hypothesis holds that zodiacal dust originates mostly from faint Jupiter-family comets and that it slowly spirals into the Sun.

India, officially the Republic of India, is a country in South Asia. Bounded by the Indian Ocean on the south, the Arabian Sea on the southwest, and the Bay of Bengal on the southeast, it shares land borders with Pakistan to the west; China, Nepal, and Bhutan to the north; and Bangladesh and Myanmar to the east. In the Indian Ocean, India is near Sri Lanka and the Maldives.

Learn more about the Hanle Dark Sky Reserve in Ladakh, India:
https://www.iiap.res.in/centers/iao/hdsr/


Image Credit & Copyright: Neelam and Ajay Talwar (TWAN)
Ajay's website: http://ajaytalwar.com
Release Date: Sept. 19,  2026

#NASA #Astronomy #Space #Science #Stars #Sun #Planets #Jupiter #Mars #Earth #ZodiacalLight #CosmicDust #Meteors #Comets #SolarSystem #DarkSkies #LightPollution #Astrophotographers #AjayTalwar #CitizenScience #Astrophotography #HanleDarkSkyReserve #Ladakh #India #BhāratGaṇarājya #STEM #Education

Flight Deck Aurora at 37,000 feet: View over Northern Canada

Flight Deck Aurora at 37,000 feet: View over Northern Canada




Photographer Matt Melnyk: "After nearly six months without seeing the aurora on my overseas flights to Europe due to the long daylight hours of the northern summer, it was great to finally see the Northern Lights again! This display was photographed at 37,000 feet over Hudson Bay while flying from Calgary, Canada, to London, UK. From above much of the lower atmosphere, the aurora was incredibly vivid with bright green curtains and pillars accompanied by beautiful red and magenta color higher in the display. It was a spectacular welcome back to dark skies on the transatlantic route. I'm super excited to see what the Equinox will bring on these flights!" 

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/

Canada is a country in North America. Its ten provinces and three territories extend from the Atlantic Ocean to the Pacific Ocean and northward into the Arctic Ocean, making it the second-largest country by total area with the longest coastline of any country. Its border with the United States is the longest international land border.

Image Credit: Matt Melnyk
Locations: Northern Manitoba, Hudson Bay and Baffin Island
Image Details: Canon R6 mark 2, with Canon RF 14mm F1.4 lens. shot at ISO 25,600, F1.4 and 0.8 sec exposure
Matt's website: https://www.melnykphotos.com
Date: Sept. 14, 2026

#NASA #Astronomy #Space #Science #Stars #Sun #SolarSystem #Planets #Earth #Aurorae #AuroraBorealis #NorthernLights #MagneticFields #Magnetosphere #SolarWind #Sun #Star #Photography #MattMelnyk #Photographer #CitizenScience #Manitoba #HudsonsBay #BaffinIsland #Canada #NorthAmerica #STEM #Education

'True Color' Full-disk Earth View | China Fengyun-4B Weather Satellite

'True Color' Full-disk Earth View | China Fengyun-4B Weather Satellite

A Fengyun-4B (FY-4B) satellite true-color image of Earth captured at 13:00 Beijing Time, September 16, 2026. FY-4 is the second generation of China's geostationary meteorological satellite series. FY-4B, the second of its series, was launched on June 3rd, 2021. FY-4B is based on the SAST5000 platform with three-axis stabilization and 1553B and Spacewire dual-buses system. It has a designed life of 7 years and a launch weight of 5400kg, The main payloads onboard FY-4B are: Advanced Geostationary Radiation Imager, Geostationary Interferometric Infrared Sounder, Geostationary High-speed Imager and Space Environment Package.

Learn more about Fengyun-4B from China's National Center for Space Weather:
https://www.nsmc.org.cn/nsmc/en/satellite/FY4B.html

So far, China has launched 23 Fengyun meteorological satellites, with ten currently in orbit. According to the China Meteorological Administration (CMA), the network provides data services to 133 countries and regions and serves as a key engine for MAZU, an artificial intelligence (AI) powered meteorological system China launched this year to provide early warnings for all users. 

Fengyun-4C was launched on December 27, 2025 to boost the country's ability to monitor extreme weather events and high-impact climate systems with greater precision, according to the China Meteorological Administration (CMA). As the latest member of China's second-generation Fengyun 4 series, the new satellite will replace the aging Fengyun 4A and will operate in a network with the Fengyun 4B satellite. In addition to Earth science, the Fengyun 4C carries advanced instruments for monitoring space weather and is capable of providing early warning data for space weather disturbances, such as solar proton events.

A geostationary (GEO) satellite orbits Earth at about 35,786 km above the equator, appearing stationary relative to the ground, enabling continuous observation and communication over a fixed region. It is positioned in a circular orbit directly above the Earth's equator at an altitude of approximately 35,786 km (22,236 miles), where it completes one orbit in exactly 24 hours, matching Earth's rotation. From the ground, it appears motionless, allowing antennas to remain fixed without tracking the satellite. 


Image Credit: China's National Center for Space Weather/China Meteorological Administration (CMA)
Acknowledgement: Seger Yu
Image Date: Sept. 16, 2026


#NASA #Space #Science #Astronomy #Stars #Sun #SolarSystem #SpaceWeather #Planets #Satellites #Earth #Atmospheres #Weather #Meteorology #WeatherSatellites #China #中国 #Fengyun #风云卫星 #Fengyun4BSatellite #FY4BSatellite #ClimateChange #GlobalHeating #Environment #EarthObservation #RemoteSensing #GSFC #STEM #Education

Earth Night Colors with Galactic Views | International Space Station

Earth Night Colors with Galactic Views | International Space Station

Expedition 75 flight engineer and NASA astronaut Anil Menon: "Colors at night are beautiful when looking at Earth at night.  Here you can see blues from the squid boats, the bright lights of cities, storms, and the Milky Way, stars, and galaxies rising in the sky. This was shot from the Dragon forward window with 3 second exposures and stitched together into a timelapse. That's what it looks like through the window; just, a little slower."


Expedition 75 Crew
Station Commander: Jessica Meir
Roscosmos (Russia) Flight Engineers:
Andrey Fedyaev,
Anna Kikina, Pyotr Dubrov
European Space Agency Flight Engineer: Sophie Adenot
NASA Flight Engineers: Jack Hathaway, Anil Menon

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/J. Meir
Duration: 9 seconds
Release Date: Sept. 18, 2026

#NASA #Space #Science #ISS #Stars #Planets #Earth #SouthernHemisphere #Airglow #MilkyWayGalaxy #SMC #LMC #Astronauts #AnilMenon #AstronautVideography #Cosmonauts #Russia #Россия #Roscosmos #Роскосмос #HumanSpaceflight #Expedition75 #InternationalCooperation #UnitedStates #STEM #Education #HD #Video

Microgravity Music Moves | International Space Station

Microgravity Music Moves | International Space Station

Expedition 75 commander, flight engineer, and NASA astronaut Jessica Meir: "Volume up and get your groove on. A bit of weekend dancing on the International Space Station to start your week off right. A friend of mine was shocked when she realized that it was possible to dance in microgravity. Seems we can’t keep this from the world for any longer! The power of music transcends Earth and space."


Expedition 75 Crew
Station Commander: Jessica Meir
Roscosmos (Russia) Flight Engineers:
Andrey Fedyaev,
Anna Kikina, Pyotr Dubrov
European Space Agency Flight Engineer: Sophie Adenot
NASA Flight Engineers: Jack Hathaway, Anil Menon

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/J. Meir
Duration: 58 seconds
Release Date: Sept. 16, 2026

#NASA #Space #Science #ISS #EarthPeople #AstronautDancing #LivingInMicrogravity #MicrogravityExperiments #Astronauts #JessicaMeir #AstronautVideography #Cosmonauts #Russia #Россия #Roscosmos #Роскосмос #HumanSpaceflight #Expedition75 #InternationalCooperation #UnitedStates #STEM #Education #HD #Video

Panorama at “Chocolatal” Sand Ridge | NASA’s Curiosity Rover

Planet Mars Panorama at “Chocolatal” Sand Ridge | NASA’s Curiosity Rover

While parked at a sand ridge nicknamed “Chocolatal,” NASA’s Curiosity Mars rover used its black-and-white navigation cameras to capture panoramas at two times of day. The first was taken on Aug. 30, 2026, at 9:56 a.m. local Mars time; the second was taken on Sep. 2, 2026, at 5:39 p.m. local Mars time. Those dates correspond to the 5,000th and 5,003rd Martian days, or sols, of the mission.

After being sent back to Earth, the two images were merged together. Color was added for an artistic interpretation of the scene, with blue representing the morning panorama and yellow representing the afternoon one. The resulting “postcard” is similar to past examples created with rover images, such as one taken in November 2021.

The rover’s deck can be seen in the foreground, including its can-shaped UHF antenna, used for sending data to orbiting spacecraft, and its finned Multi-Mission Radioisotope Thermoelectric Generator (MMRTG), a nuclear power source, at its rear. The rover’s tracks can be seen trailing off in the distance. 

Curiosity is in the lower foothills of Mount Sharp, a 3-mile-tall (5-kilometer-tall) mountain that sits within Gale Crater. This image looks down toward the crater floor, with the crater rim barely perceptible on the horizon.

Curiosity was built by NASA’s Jet Propulsion Laboratory (JPL), which is managed by Caltech in Pasadena, California. JPL leads the mission on behalf of NASA’s Science Mission Directorate in Washington as part of NASA’s Mars Exploration Program portfolio.

Image Description: NASA’s Curiosity rover traverses the rocky, desert landscape of Mars beneath a soft sky. The scene is captured in striking blue and yellow hues.

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
Image Dates: Aug. 30, 2026 & Sept. 2, 2026
Release Date: Sept. 16, 2026

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

Friday, September 18, 2026

Northern Lights over Finland

Northern Lights over Finland







Astrophotographer Karsten Berger: "The aurora showed a multitude of colors from green to red, purple and even blue. I was fortunate to find a location by a lake. It was unreal to see the aurora from above and below. It felt as if I was literally submerged in it."

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: Inari, Finland
Date: Sept. 14-15, 2026


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

Planet Labels: "Not as easy as you think" | European Southern Observatory

Planet Labels: "Not as easy as you think" | European Southern Observatory

Labeling planetary objects is not straightforward. Beyond the well-known case of Pluto. It was reclassified as a dwarf planet in 2006, exoplanets––planets orbiting other stars––complicate this even more. The International Astronomical Union (IAU) has a working definition of what an exoplanet is, depending on the properties of both the planet itself and the object it orbits. Like any definition, it may need to be adjusted as we keep discovering strange planetary systems, like the ones in this video.

0:00 - Pluto

2:54 - Brown dwarfs

4:30 - The TOI-201 system

5:53 - The CD-35 2722 system

Credits: European Southern Observatory (ESO)
Directed by: L. Calçada, B. Ferreira
Hosted by: S. Randall
Written by: S. Randall, M. Lopes, E. Elkington
Editing: M. Kornmesser, L. Calçada
Videography: A. Tsaousis
Animations & footage:
ESO, M. Kornmesser, L. Calçada, NMSU/Darren Phillip, NOVA PBS Official,
Greg Scheiderer, ESA/Hubble, Andreas Cellarius, I. Saviane, IAU,
Martin Heck, IAU/Robert Hurt (SSC), L. H. Nielsen,
NASA/JHUAPL/SwRI, Photos[dot]com/Getty Images, Solar System Scope,
JPL-Caltech/UCLA/MPS/DLR/IDA/Steve Albers, I. Crossfield/N. Risinger
Filming Locations: ESO Supernova
Produced by ESO, the European Southern Observatory
Duration: 7 minutes
Release Date: Sept. 18, 2026

#NASA #ESO #Space #Astronomy #Science #SolarSystem #Planets #Pluto #DwarfPlanets #IAU #BrownDwarfs #Exoplanets #EuropeanSouthernObservatory #Universe #Cosmos #STEM #Education #HD #Video

Journey to Galaxy NGC 4698 in Virgo—Spinning out of Sync | Hubble

Journey to Galaxy NGC 4698 in VirgoSpinning out of Sync | Hubble


This video takes the viewer on a journey through space to a NASA/European Space Agency image of galaxy NGC 4698. It lies about 55 million light-years away in the constellation Virgo. It is one of over one thousand galaxies in the Virgo Cluster, the nearest large cluster of galaxies bound together by gravity.

As a spiral galaxy similar to our own Milky Way galaxy, NGC 4698 has spiral arms that curl around within a thin disc of stars, gas and dust. These arms are marked by opaque clumps of brown dust and dotted with small collections of bright blue stars. Unlike many other spiral galaxies, like this one recently photographed by Hubble, NGC 4698’s delicate spiral arms are only prominent in the outer reaches of the disc; spiral arms often wind down to the very center of a galaxy, but NGC 4698’s spiral arms appear to shy away from its glowing center. The arms instead hover in a ring-like structure around the perimeter of the galaxy.

NGC 4698’s center is dominated by a galactic bulge. The diffuse off-white glow of the galaxy’s bulge comes from stars smaller, older, and cooler than the massive blue stars that dot the galaxy’s outer disc. These tightly packed stars orbit a supermassive black hole containing millions of times the Sun’s mass. Scientists have found signs that this black hole is actively growing, drawing gas inward with its gravitational pull.

With a flat, starry disc and diffusely glowing center, NGC 4698 looks a lot like a typical spiral galaxy — but this galaxy is far from normal. NGC 4698 is one of only a few known spiral galaxies with a bulge that extends out from the disc at a right angle. The elongation is faintly visible in this Hubble image. It shows the ghostly glow of the starry bulge peeking above and below the dusty disc. Furthermore, the stars and gas nearest the galaxy’s center rotate perpendicular to the rest of the disc.

What could cause a galaxy to be so out of sync? 
Astronomers have found that the culprit likely lies outside the galaxy. If NGC 4698 funneled in gas from an outside source, the newly collected gas could have formed a disc of gas and stars in the galaxy’s center, at an angle relative to the rest of the disc. Observations suggest that this galaxy once experienced a minor galactic merger, as evidenced by a short ‘tail’ of hydrogen streaming from one side of the galaxy.

The data used to create this image come from an observing program (#18103; PI: Thilker) focusing on galaxies in the Virgo Cluster. This program zooms in on the details of these relatively nearby galaxies, such as individual star clusters and nebulae. At the same time, researchers will use these data to take stock of the larger picture, learning how a galaxy’s journey through a cluster affects the galaxy’s evolution and ability to form new stars.

Image Description: A spiral galaxy viewed at an angle, with a bright central bulge and winding spiral arms. The arms form a ring around the galaxy, without appearing to reach its center. Prominent red-brown dust lanes weave through the arms. These are also dotted with bright blue and reddish regions of star formation. The galaxy is set against a dark background scattered with stars and faint distant galaxies.


Credit: ESA/Hubble & NASA, KPNO/NOIRLab/NSF/AURA, DSS2, D. Thilker, N. Bartmann (ESA/Hubble), D. de Martin, S. Hopkins, A. Block, N. Risinger, E. Slawik, M. Zamani (ESA/Hubble)
Duration: 1 minute
Release Date: Sept. 18, 2026

#NASA #ESA #Hubble #Astronomy #Space #Science #Galaxies #NGC4698 #VirgoConstellation #VirgoCluster #Cosmos #Universe #HubbleSpaceTelescope #HST #NASAGoddard #GSFC #STScI #STEM #Education #HD #Video

Close-up: Galaxy NGC 4698 in Virgo—Spinning out of Sync | Hubble

Close-up: Galaxy NGC 4698 in VirgoSpinning out of Sync | Hubble

Although the spiral galaxy in this NASA/European Space Agency Hubble image seems serene, it hides a chaotic secret. This galaxy is NGC 4698, and it lies about 55 million light-years away in the constellation Virgo. It is one of over one thousand galaxies in the Virgo Cluster, the nearest large cluster of galaxies bound together by gravity.

As a spiral galaxy similar to our own Milky Way galaxy, NGC 4698 has spiral arms that curl around within a thin disc of stars, gas and dust. These arms are marked by opaque clumps of brown dust and dotted with small collections of bright blue stars. Unlike many other spiral galaxies, like this one recently photographed by Hubble, NGC 4698’s delicate spiral arms are only prominent in the outer reaches of the disc; spiral arms often wind down to the very center of a galaxy, but NGC 4698’s spiral arms appear to shy away from its glowing center. The arms instead hover in a ring-like structure around the perimeter of the galaxy.

NGC 4698’s center is dominated by a galactic bulge. The diffuse off-white glow of the galaxy’s bulge comes from stars smaller, older, and cooler than the massive blue stars that dot the galaxy’s outer disc. These tightly packed stars orbit a supermassive black hole containing millions of times the Sun’s mass. Scientists have found signs that this black hole is actively growing, drawing gas inward with its gravitational pull.

With a flat, starry disc and diffusely glowing center, NGC 4698 looks a lot like a typical spiral galaxy — but this galaxy is far from normal. NGC 4698 is one of only a few known spiral galaxies with a bulge that extends out from the disc at a right angle. The elongation is faintly visible in this Hubble image. It shows the ghostly glow of the starry bulge peeking above and below the dusty disc. Furthermore, the stars and gas nearest the galaxy’s center rotate perpendicular to the rest of the disc.

What could cause a galaxy to be so out of sync? 
Astronomers have found that the culprit likely lies outside the galaxy. If NGC 4698 funneled in gas from an outside source, the newly collected gas could have formed a disc of gas and stars in the galaxy’s center, at an angle relative to the rest of the disc. Observations suggest that this galaxy once experienced a minor galactic merger, as evidenced by a short ‘tail’ of hydrogen streaming from one side of the galaxy.

The data used to create this image come from an observing program (#18103; PI: Thilker) focusing on galaxies in the Virgo Cluster. This program zooms in on the details of these relatively nearby galaxies, such as individual star clusters and nebulae. At the same time, researchers will use these data to take stock of the larger picture, learning how a galaxy’s journey through a cluster affects the galaxy’s evolution and ability to form new stars.

Image Description: A spiral galaxy viewed at an angle, with a bright central bulge and winding spiral arms. The arms form a ring around the galaxy, without appearing to reach its center. Prominent red-brown dust lanes weave through the arms. These are also dotted with bright blue and reddish regions of star formation. The galaxy is set against a dark background scattered with stars and faint distant galaxies.


Credit: ESA/Hubble & NASA, D. Thilker, the MAUVE-HST Team
Release Date: Sept. 18, 2026

#NASA #ESA #Hubble #Astronomy #Space #Science #Galaxies #NGC4698 #VirgoConstellation #VirgoCluster #Cosmos #Universe #HubbleSpaceTelescope #HST #NASAGoddard #GSFC #STScI #STEM #Education #HD #Video

Galaxy NGC 4698 in Virgo: Spinning out of Sync | Hubble Space Telescope

Galaxy NGC 4698 in Virgo: Spinning out of Sync | Hubble Space Telescope

Although the spiral galaxy in this NASA/European Space Agency Hubble image seems serene, it hides a chaotic secret. This galaxy is NGC 4698, and it lies about 55 million light-years away in the constellation Virgo. It is one of over one thousand galaxies in the Virgo Cluster, the nearest large cluster of galaxies bound together by gravity.

As a spiral galaxy similar to our own Milky Way galaxy, NGC 4698 has spiral arms that curl around within a thin disc of stars, gas and dust. These arms are marked by opaque clumps of brown dust and dotted with small collections of bright blue stars. Unlike many other spiral galaxies, like this one recently photographed by Hubble, NGC 4698’s delicate spiral arms are only prominent in the outer reaches of the disc; spiral arms often wind down to the very center of a galaxy, but NGC 4698’s spiral arms appear to shy away from its glowing center. The arms instead hover in a ring-like structure around the perimeter of the galaxy.

NGC 4698’s center is dominated by a galactic bulge. The diffuse off-white glow of the galaxy’s bulge comes from stars smaller, older, and cooler than the massive blue stars that dot the galaxy’s outer disc. These tightly packed stars orbit a supermassive black hole containing millions of times the Sun’s mass. Scientists have found signs that this black hole is actively growing, drawing gas inward with its gravitational pull.

With a flat, starry disc and diffusely glowing center, NGC 4698 looks a lot like a typical spiral galaxy — but this galaxy is far from normal. NGC 4698 is one of only a few known spiral galaxies with a bulge that extends out from the disc at a right angle. The elongation is faintly visible in this Hubble image. It shows the ghostly glow of the starry bulge peeking above and below the dusty disc. Furthermore, the stars and gas nearest the galaxy’s center rotate perpendicular to the rest of the disc.

What could cause a galaxy to be so out of sync? 
Astronomers have found that the culprit likely lies outside the galaxy. If NGC 4698 funneled in gas from an outside source, the newly collected gas could have formed a disc of gas and stars in the galaxy’s center, at an angle relative to the rest of the disc. Observations suggest that this galaxy once experienced a minor galactic merger, as evidenced by a short ‘tail’ of hydrogen streaming from one side of the galaxy.

The data used to create this image come from an observing program (#18103; PI: Thilker) focusing on galaxies in the Virgo Cluster. This program zooms in on the details of these relatively nearby galaxies, such as individual star clusters and nebulae. At the same time, researchers will use these data to take stock of the larger picture, learning how a galaxy’s journey through a cluster affects the galaxy’s evolution and ability to form new stars.

Image Description: A spiral galaxy viewed at an angle, with a bright central bulge and winding spiral arms. The arms form a ring around the galaxy, without appearing to reach its center. Prominent red-brown dust lanes weave through the arms. These are also dotted with bright blue and reddish regions of star formation. The galaxy is set against a dark background scattered with stars and faint distant galaxies.


Credit: ESA/Hubble & NASA, D. Thilker, the MAUVE-HST Team
Release Date: Sept. 18, 2026

China ExPace Kuaizhou-11 Solid Fueled Commercial Rocket Satellite Launch

China ExPace Kuaizhou-11 Solid Fueled Commercial Rocket Satellite Launch







🚀 ExPace’s Kuaizhou-11 solid fueled commercial rocket blasted off from Launch Area 95 at the Jiuquan Satellite Launch Center at 10:40 am China Standard Time (02:40 am Universal Coordinated Time) on September 17, 2026, successfully sending the Tianyi-51 and Tianyi-52 satellites into their planned orbits.

SpaceTY's Tianyi-51 and Tianyi-52 are C-band interferometric synthetic-aperture radar (SAR) satellites. They were deployed into a 55-degree orbit for daily revisiting of imaging sites. Another stated reason for choosing that orbital inclination was to eliminate blind spots in urban regions and to provide a third dimension to captured sets of images.

Both satellites are able to capture the Earth below at a resolution of 3 meters with an imaging swath of 25 kilometers, or at 2 meters with a swath of 40 kilometers. Images captured by the satellites are planned to be pre-processed onboard via installed dedicated compute and intelligent software, as is an ever-increasing pattern on Chinese satellites.

While being built by SpaceTY, the two satellites have secondary names as well, chosen by their respective clients. Tianyi-51 carries the name Caiyun-SAR-01 from the Yunnan Provincial Bureau of Geology and Mineral Resources Exploration and Development and Yunnan Geology and Mining Group Co. Ltd. Tianyi-52 is known as Xinglianti-Tianyuan-YG-01 by Xinglianti Wuxi Aerospace Technology Co. Ltd.

SpaceTY also spoke of the two satellites as being able to support efforts in nations participating in China's Belt and Road Initiative.

ExPace promotes Kuaizhou-11’s low costs to customers, high orbital accuracy, and high reliability, while being a quick-to-prepare solution. Tailored to the needs of the two Tianyi satellites, the launch vehicle used its 2.2-meter-diameter in-line fairing to protect them during ascent out of the atmosphere.

So far, 2026 has been Kuaizhou-11’s busiest year, with previous missions in March and June to achieve one launch per quarter. 

This launch was the 7th Kuaizhou-11 mission, and the 41st flight of the Kuaizhou series. This was also the 66th launch from China in 2026.


Image Credit: ExPace
Text Credit: Jack C.
Date: Sept. 16, 2026

#NASA #Space #Satellites #Earth #China #中国 #ExPace #CASICRocketTechnologyCompany #RocketLaunch #Kuaizhou11 #快舟 #SolidFuelRockets #SpaceTY #长沙天仪空间科技研究院有限公司 #Tianyi51 #Tianyi52 #EarthObservation #RemoteSensing #SARSatellites #CommercialSpace #JSLC #InnerMongolia #STEM #Education

China ExPace Kuaizhou-11 Solid Fueled Commercial Rocket Satellite Launch

China ExPace Kuaizhou-11 Solid Fueled Commercial Rocket Satellite Launch

🚀 ExPace’s Kuaizhou-11 solid fueled commercial rocket blasted off from Launch Area 95 at the Jiuquan Satellite Launch Center at 10:40 am China Standard Time (02:40 am Universal Coordinated Time) on September 17, 2026, successfully sending the Tianyi-51 and Tianyi-52 satellites into their planned orbits.

SpaceTY's Tianyi-51 and Tianyi-52 are C-band interferometric synthetic-aperture radar (SAR) satellites. They were deployed into a 55-degree orbit for daily revisiting of imaging sites. Another stated reason for choosing that orbital inclination was to eliminate blind spots in urban regions and to provide a third dimension to captured sets of images.

Both satellites are able to capture the Earth below at a resolution of 3 meters with an imaging swath of 25 kilometers, or at 2 meters with a swath of 40 kilometers. Images captured by the satellites are planned to be pre-processed onboard via installed dedicated compute and intelligent software, as is an ever-increasing pattern on Chinese satellites.

While being built by SpaceTY, the two satellites have secondary names as well, chosen by their respective clients. Tianyi-51 carries the name Caiyun-SAR-01 from the Yunnan Provincial Bureau of Geology and Mineral Resources Exploration and Development and Yunnan Geology and Mining Group Co. Ltd. Tianyi-52 is known as Xinglianti-Tianyuan-YG-01 by Xinglianti Wuxi Aerospace Technology Co. Ltd.

SpaceTY also spoke of the two satellites as being able to support efforts in nations participating in China's Belt and Road Initiative.

ExPace promotes Kuaizhou-11’s low costs to customers, high orbital accuracy, and high reliability, while being a quick-to-prepare solution. Tailored to the needs of the two Tianyi satellites, the launch vehicle used its 2.2-meter-diameter in-line fairing to protect them during ascent out of the atmosphere.

So far, 2026 has been Kuaizhou-11’s busiest year, with previous missions in March and June to achieve one launch per quarter. 

This launch was the 7th Kuaizhou-11 mission, and the 41st flight of the Kuaizhou series. This was also the 66th launch from China in 2026.


Video Credit: ExPace
Text Credit: Jack C.
Duration: 15 seconds
Release Date: Sept. 17, 2026

#NASA #Space #Satellites #Earth #China #中国 #ExPace #CASICRocketTechnologyCompany #RocketLaunch #Kuaizhou11 #快舟 #SolidFuelRockets #SpaceTY #长沙天仪空间科技研究院有限公司 #Tianyi51 #Tianyi52 #EarthObservation #RemoteSensing #SARSatellites #CommercialSpace #JSLC #InnerMongolia #STEM #Education #HD #Video

Thursday, September 17, 2026

New Moon Crater Detected: A Rare Find | NASA's Lunar Reconnaissance Orbiter

New Moon Crater Detected: A Rare Find | NASA's Lunar Reconnaissance Orbiter

This view from the side (55 degrees away from straight down) towards the east, covers an area of the Moon that is about 1.5 miles wide. It was taken by NASA's Lunar Reconnaissance Orbiter's Narrow Angle Camera (NAC) on March 3, 2026.
This view from the side (55 degrees away from straight down) towards the east, covers an area of the Moon that is about 1.5 miles wide. It was taken by NASA's Lunar Reconnaissance Orbiter's Narrow Angle Camera (NAC) on March 3, 2026.
An overhead, close-up view of McGetchin crater that was taken on Dec. 5, 2025, by NASA's Lunar Reconnaissance Orbiter (LRO) Narrow Angle Camera (NAC). 
A zoomed-in view of McGetchin crater, circled on the left, next to a “before” image on the right. The panel on the left is made from images captured by NASA’s Lunar Reconnaissance Orbiter Wide-Angle Camera in summer 2025; the right panel was made from images taken in spring 2011. The white spot is not the crater itself, but rather material flung out of the crater. This formed when a rock, possibly this size of a three- to six‑story building, crashed into the Moon between April 11 and May 22, 2024a once-in-a-century event, as scientists reported on Sept. 15, 2026, in a pair of papers in Science Advances. The area shown in these two images is 38 miles wide.

It started as a routine data-quality check. However, as Robert Wagner, a scientist with NASA’s Lunar Reconnaissance Orbiter (LRO), scanned a giant Moon map on his computer screen, an unusually large bright spot circled by a dark halo caught his eye, as it implied that surface material in that area had been shaken up.

“I just stopped, dropped everything, and started looking into what that spot was,” said Wagner, an image-processing specialist from Intuitive Machines that works with data from the Lunar Reconnaissance Orbiter Camera (LROC) system.

By comparing before and after images of the Moon, Wagner realized he had discovered the largest, newly formed crater ever found in the solar system, as scientists reported on Wednesday, Sept. 16, 2026, in Science Advances. This discovery highlights the value of NASA’s Moon orbiter data in studying a dynamic landscape as the agency advances a sustained human presence and expanded scientific and commercial activity on the Moon.                 

Officially named McGetchin after pioneering lunar scientist Tom McGetchin, the crater formed on the Moon’s eastern edge sometime between April 11 and May 22, 2024, after a comet or asteroid the size of a three- to six-story building hit the surface.

The crash left a crater, 728 feet wide, that spans the length of two football fields. And at 141 feet deep, the crater could fit three vertically stacked yellow school buses.

Scientists estimate that an impact of this magnitude happens on the Moon about once in a century or even longer.

The Moon takes hits
For more than 17 years, LRO has been circling the Moon and using its seven instruments to map the topography, surface composition, temperature, and radiation environment there. The spacecraft’s team has identified at least 1,000 new impact craters throughout the mission and flagged 100,000 more surface changes from an object smashing into the Moon or from the debris that flung out after.

With no atmosphere to slow them or burn them up, space rocks and other objects easily reach the lunar surface. Most are much smaller compared to the object that carved out McGetchin crater. The smallest craters scientists can distinguish from LRO images are about 30 feet wide, the length of a three-story building laid on its side, made by rocks about 43 inches wide, the size of a monster-truck tire. Scientists estimate that impacts of this scale produce about 140 new craters across the Moon each year. Nonetheless, most new ones are made by microscopic projectiles that leave holes too small to identify in orbital images.

With its numerous instruments, the spacecraft can observe changes to the lunar surface that are not apparent in the LROC images alone. After the crater was discovered, scientists working with LRO’s thermal instrument, Diviner, made follow-up observations of the site. They found a 4-mile-wide area around the crater that is about 16 degrees Fahrenheit cooler at night than its surroundings.

Reporting in a second paper Wednesday in the same journal, researchers say that the cooling happens because the impact fluffs up the regolith around the crater, making it less dense and therefore less able to retain heat.e

The large extent of this “cold spot” is striking, scientists say, because it shows that impacts can modify the Moon’s surface far beyond the crater itself. These physical changes could affect how rover wheels interact with the surface, for instance.

Road to discovery
The LROC system collects images from about 60 miles above the Moon as LRO loops from pole to pole. The system includes two cameras that capture high‑resolution black‑and‑white images and one camera for moderate‑resolution multispectral images. Over the years and thousands of passes, scientists have built maps detailed enough to spot not only new craters, but also landslides, landers, seismic faults, and even hints of lava tubes.

LROC scientists regularly analyze close-up images of small portions of the Moon's surface taken by the Narrow-Angle Camera. Using these images, they look for changes that are typically less than 30 feet across. Plus, every few years the team searches for large (wider than 150 feet) features by creating global Moon maps and comparing them to older versions.

This is what Wagner was doing on Oct. 24, 2025, when he came across McGetchin. Using images from LROC’s Wide-Angle Camera that captures broad views with pixels the size of football fields, he stacked hundreds of “before” and “after” frames with software designed to highlight change. Anything that stayed the same turned gray while anything different showed up as bright or dark patches.

While the process sounds straightforward, spotting real craters requires a lot of manual work. The software flags every tiny shift in lighting or shadow, generating hundreds of false alarms. For this reason, Wagner typically verifies the software, looking for small fuzzy halos around pixel‑wide bright points, which indicate splashes of regolith around a new crater.

Spanning hundreds of pixels, McGetchin stood out immediately. “It was by far the most obvious impact debris pattern I’ve ever seen in one of these images,” Wagner said.

After his discovery, scientists turned to the Narrow-Angle Camera, which takes much sharper views at about 3 feet per pixel. This camera’s close-up images, taken as LRO flew over the impact site again, revealed the crater size, shape, and how the surrounding terrain was affected. These images also helped researchers estimate the size and force of the rock fragment that formed the new crater, details that are expected to appear in a future paper.

NASA's Lunar Reconnaissance Orbiter has made a 3-D map of the Moon's surface at 100-meter resolution and 98.2% coverage (excluding polar areas in deep shadow), including 0.5-meter resolution images of Apollo landing sites.

LRO has been studying the Moon from up close since 2009, making it the longest-lived lunar orbiting mission ever. The orbiter has mapped the Moon’s surface and measured its temperature, composition, and radiation environment in unprecedented detail. Data from LRO enables NASA, and our international and commercial partners, to select locations on the lunar surface where spacecraft and astronauts can safely land. The orbiter is also helping NASA identify areas near the Moon’s South Pole with crucial resources like water and extended sunlight that provides power for equipment and supports exploration activities.

McGetchin lies one degree north of the lunar equator in the eastern hemisphere on the near side of the Moon. It sits at the boundary between volcanic mare basalt and ancient anorthosite highlands, near the outer rim of Crisium basin and 330 km (210 mi) from Mare Crisium. It measures on average 222 m (728 ft) in diameter and is up to 43 m (141 ft) deep. It is slightly asymmetrical, with a long axis of 231 m (758 ft) and a short axis of 213 m (699 ft). Its crater wall has slopes averaging 24°, reaching nearly 40° in some sections. The rim has an average height of 8 m (26 ft) above the pre-existing terrain.


Image Credits: NASA Goddard/Intuitive Machines/Robert Wagner
Article Credit: Lonnie Shekhtman
Release Date:
March 8, 2018

#NASA #Space #Astronomy #Science #Earth #Moon #Geology #Geoscience #Craters #ImpactCraters #McGetchin #LRO #LunarOrbiter #LROC #NAC #SpaceRobotics #SpaceTechnology #NASAGoddard #GSFC #ASU #UnitedStates #SolarSystem #SpaceExploration #STEM #Education

Summer Goes Out with a Heat Dome over South-central U.S. | NASA Goddard

Summer Goes Out with a Heat Dome over South-central U.S. | NASA Goddard

Temperature records toppled across the central and southern U.S. as the autumnal equinox approached.

An area of high pressure over the south-central U.S. produced unseasonable and record-breaking warmth on September 15, 2026, as shown in this map of modeled air temperatures from the Goddard Earth Observing System (GEOS).

While the calendar indicated that astronomical summer was winding down, a swath of the south-central United States was sweltering under a heat dome in mid-September 2026.

This map shows air temperatures in the contiguous U.S. on September 15, 2026, at 4 p.m. Central Time (21:00 Universal Time), modeled at 2 meters (6.5 feet) above the ground. It was produced by combining satellite observations with temperatures predicted by a version of the GEOS model. It uses mathematical equations to represent physical processes in the atmosphere. The darkest reds indicate areas where temperatures approached or exceeded 40 degrees Celsius (104 degrees Fahrenheit).

More than 41 million people in the U.S.—about 12 percent of the population—were under a National Weather Service extreme heat advisory, extreme heat watch, or extreme heat warning on September 15. The high temperatures spanned large portions of several states, such as Texas, Oklahoma, Arkansas, Missouri, and Tennessee. Meteorologists warned that high humidity, limited cloud cover, and light winds could make temperatures feel higher than thermometer readings and increase the risk of heat-related illnesses.

Several locations set new daily high temperature records on September 15. These included Dallas, Texas, at 101ºF (38ºC), Memphis, Tennessee, at 99ºF (37ºC), and Nashville, Tennessee, at 100ºF (38ºC). The cities were all at least 12ºF warmer than normal that day with Nashville breaking its daily-high record from 1927. The day before, Nashville also set a record-high minimum temperature of 75ºF (24ºC).

A weather phenomenon meteorologists call a heat dome was responsible for driving temperatures up across the region. A heat dome develops when an area of high pressure in the upper atmosphere pushes hot air toward the surface and traps it there. Heat domes put the brakes on convection and suppress clouds and precipitation. This allows sunlight to reach Earth’s surface relatively unhindered and further elevate air temperatures.

The stretch of unseasonable temperatures follows the warmest June through August in the contiguous United States in a 132-year record, according to the National Oceanic and Atmospheric Administration (NOAA). The three-month period in 2026 was 0.4ºF warmer than the previous records, set in 1936 and 2021.

The Earth GEOS-FP data refers to the Goddard Earth Observing System Forward Processing system. It is used by NASA's Global Modeling and Assimilation Office (GMAO) to generate data products in near real-time or reanalysis modes.

Climate change refers to long-term shifts in temperatures and weather patterns. Human activities have been the main driver of climate change, primarily due to the burning of fossil fuels like coal, oil and gas.

Image Credit: NASA Earth Observatory image by Michala Garrison, using GEOS-FP data from the Global Modeling and Assimilation Office at NASA GSFC
Article Credit: Lindsey Doermann
Release Date: Sept. 17, 2026

#NASA #NOAA #Sun #Planets #Earth #Science #Satellites #GeostationarySatellites #Weather #Meteorology #HeatDomes #HighTemperatureRecords #ClimateChange #GlobalHeating #Environment #EarthObservation #RemoteSensing #NASAGoddard #GSFC #GEOS #UnitedStates #STEM #Education

Comet 220P/McNaught: View from Czech Republic

Comet 220P/McNaught: View from Czech Republic

220P/McNaught, is a Jupiter-family comet with a 5.5-year orbit around the Sun. It is one of several comets discovered by Australian astronomer, Robert H. McNaught. It reached perihelion (closest approach to the Sun) on June 14, 2026, two weeks after a large outburst where the comet brightened as much as 8,000 times.

The Czech Republic, also known as Czechia and historically known as Bohemia, is a landlocked country in Central Europe. The country is bordered by Austria to the south, Germany to the west, Poland to the northeast, and Slovakia to the southeast.


Image Credit: Dalibor Hanzl 
Location: Pavlovice, Czech Republic
Image Details: 16x5min, 8" ASA reflector + ASI 6200MC. The image also shows two diffraction spikes from bright stars (magnitudes 3.7 and 3.6) - a blue spike originating from the star ksi Tau and a reddish one from o Tau (the stars themselves lie just beyond the top edge of the image)
Date: Sept. 16, 2026

#NASA #Astronomy #Space #Science #Planets #Earth #Comets #Comet220PMcNaught #JupiterFamilyComets #JFc #SolarSystem #MilkyWayGalaxy #Cosmos #Universe #Astrophotography #DaliborHanzl #Astrophotographers #Pavlovice #Czech Republic #CentralEurope #Europe #STEM #Education