Sign in

Space Telescope Science Institute

@stsci.edu
82K followers 222 following 1.6K posts

STScI is the Science Operations Center for Webb, Hubble, and Roman space telescopes, & Mission Operations Center for Webb. We help humanity explore the universe with advanced space telescopes and data archive. news.stsci.edu

PostsRepliesMedia
Space Telescope Science Institute @stsci.edu · 1h
#NASARoman’s fine-guidance system, which allows the observatory to lock very steadily onto its targets during observations, passed a spate of tests from Sept. 15 to 21. Then on Sept. 22, the mission’s Coronagraph Instrument opened its eyes to cosmic light for the very first time.
science.nasa.gov
NASA Checks Roman Guidance System, Takes First Coronagraph Observation - NASA Science
NASA's Nancy Grace Roman Space Telescope's fine-guidance system, which allows the observatory to lock very steadily onto its targets during observations,
1267
Space Telescope Science Institute @stsci.edu · 5h
ICYMI: Over the summer #NASAWebb discovered a new exoplanet in the Beta Pictoris system, using a new method. Catch up on more news you may have missed on ViewSpace: viewspace.org/video_library?tags=16…
0183
Space Telescope Science Institute @stsci.edu · 29/09/2026
Astronomers theorize that the black hole at the center of Centaurus A influences the region as it feeds and launches powerful outflows. Learn more about the impact of its central black hole with a printable poster of this observation from #NASAWebb: go.nasa.gov/4hwsDlf
A horizontally oriented poster with an image of Centaurus A against a black background. The galaxy is brightest at its center, where a brilliant white and pink glow radiates outward. Wispy, ‘S’-shaped ribbons of pink arc above and below the center of the image. A parallelogram-shaped band of gray and white dust cuts across the middle of the galaxy. The galaxy’s outer edges fade into soft textures that stretch toward the left and right sides of the image. Along the bottom is a series of thin vertical bars ranging from purple at left to blue, green, yellow, orange, and red at right. Bars are separated slightly, with black in between. Bar colors are brightest at the bottom, fading up to black. Brightness varies from bar to bar, giving the array an undulating feel. At upper right is text that reads, “National Aeronautics and Space Administration” and NASA’s blue, white, and red meatball insignia. Title text appears at lower left that says, “James Webb Space Telescope: Centaurus A.”
04614
Space Telescope Science Institute @stsci.edu · 28/09/2026
The Hubble Cycle 34 science program is set and scheduled to begin November 1! Researchers around the world were awarded more than 2,700 prime orbits—and 31% will lead a Hubble observation for the first time: bit.ly/4xL4Ioj
Large text, Hubble Cycle 34 Approved Proposals, runs atop an image of space with the Hubble Space Telescope body at lower right.
0389
Space Telescope Science Institute @stsci.edu · 28/09/2026
#NASAWebb observed galaxy Messier 51 to uncover how star clusters form. This close-up of one of its spiral arms reveals white star clusters among red and orange gas clumps. Credit: ESA, NASA, CSA, A. Pedrini, A. Adamo (Stockholm University), FEAST JWST team.
A large, long portion of one of the spiral arms in spiral galaxy Messier 51. Red-orange, clumpy filaments of gas and dust stretch in a chain from left to right to comprise the arm. Shining cyan bubbles light up parts of the gas clouds from within, and gaps expose bright star clusters in these bubbles as glowing white dots. The whole image is dotted with small, point-like stars. A faint blue glow around the arm illuminates the otherwise dark background.
0459
Space Telescope Science Institute @stsci.edu · 25/09/2026
NASA has now confirmed all ground stations supporting the agency’s Nancy Grace Roman Space Telescope are ready to receive the mission’s high volume of data once science operations begin by early 2027. #NASARoman 🔭
science.nasa.gov
NASA’s Roman Team Confirms Ground Stations Receiving Data - NASA Science
NASA has now confirmed all ground stations supporting the agency’s Nancy Grace Roman Space Telescope are ready to receive the mission’s high volume of data
315344
Space Telescope Science Institute @stsci.edu · 25/09/2026
Astronomers estimate that there are 500,000 stars within this #NASAWebb image of Sagittarius C. One of the most densely packed areas lies within the dark, U-shaped region at the top left of the cyan-colored cloud of ionized hydrogen: bit.ly/4zeme64
A funnel-shaped region of space appears darker than its surroundings with fewer stars. It is wider at the top edge of the image, narrowing toward the bottom. At the bottom, a small clump of red and white appears to shoot out streamers upward and left. A large, bright, cyan-colored area surrounds the lower portion of the funnel-shaped dark area, forming a rough U shape. The cyan-colored area has needle-like, linear structures and becomes more diffuse in the center. The right side is dominated by clouds of orange and red, with a purple haze. There are thousands of pinpoints of light, a multitude of stars, throughout the view.
15619
Space Telescope Science Institute @stsci.edu · 25/09/2026
When two galaxies meet a “fireworks” show of star formation can occur. When #NASAWebb peered at starburst galaxy Messier 82 in infrared light, it pierced through dust to reveal hot galactic wind extending from the core where millions of stars are being born. 🔭
youtube.com
The Cigar Galaxy Lighting Up Under James Webb Space Telescope's Infrared Gaze
Scientifically known as Messier 82 (M82), the Cigar Galaxy forming stars at a rate that far exceeds the norm. Galaxies with this level of intense star formation are known as starburst galaxies. This phase of chaotic creation is often sparked by interact...
1376
Reposted by Space Telescope Science Institute
Space Telescope Science Institute @stsci.edu · 23/09/2026
One of the most transformational telescopes of modern time has reached another major milestone—200,000 orbits around Earth. Hubble’s observation from that day is a part of its defining legacy, measuring the expansion rate of the universe: go.nasa.gov/4h812b9 🔭
Dozens of galaxies on the black background of space observed by Hubble. Most of the galaxies are small white splotches. Some galaxies are more oval shaped, others are circular. Toward the center-left is a larger, fuzzy white oval.
07518
Space Telescope Science Institute @stsci.edu · 23/09/2026
OPPORTUNITY: The Space Telescope Science Institute in Baltimore, MD, is seeking a Principal AWS Cloud Cybersecurity Automation & Systems (CACS) Engineer to join our team supporting NASA flagship space telescope missions that are transforming our understanding of the universe: bit.ly/4hajDmP
0156
Space Telescope Science Institute @stsci.edu · 23/09/2026
NASA: Adopt a pixel from one of the Roman Space Telescope’s first images! Each pixel will represent a unique piece of the cosmos. Join over 500,000 others that have already claimed theirs: go.nasa.gov/3V4t2E0
This certificate acknowledges the adoption of a pixel from the Nancy Grace Roman Space Telescope's first images. It features the NASA logo and text about NASA's stewardship of the image. The pixel identification number is 00000002.
03413
Space Telescope Science Institute @stsci.edu · 23/09/2026
One of the most transformational telescopes of modern time has reached another major milestone—200,000 orbits around Earth. Hubble’s observation from that day is a part of its defining legacy, measuring the expansion rate of the universe: go.nasa.gov/4h812b9 🔭
Dozens of galaxies on the black background of space observed by Hubble. Most of the galaxies are small white splotches. Some galaxies are more oval shaped, others are circular. Toward the center-left is a larger, fuzzy white oval.
07518
Reposted by Space Telescope Science Institute
Space Telescope Science Institute @stsci.edu · 22/09/2026
Planets beyond our Solar System are extremely difficult to observe. It’s equivalent to trying to take a photograph of a firefly next to a lighthouse from thousands of miles away. TONIGHT at 7 p.m. ET, STScI's Dr. Emily Rickman will chat about the Webb technology behind imaging alien worlds. 🔭
youtube.com
How to Image Alien Worlds
Planets beyond our Solar System, known as exoplanets, are extremely difficult to observe. It's equivalent to trying to take a photograph of a firefly next to a lighthouse from thousands of miles away. The James Webb Space Telescope includes sophisticat...
05412
Space Telescope Science Institute @stsci.edu · 22/09/2026
Planets beyond our Solar System are extremely difficult to observe. It’s equivalent to trying to take a photograph of a firefly next to a lighthouse from thousands of miles away. TONIGHT at 7 p.m. ET, STScI's Dr. Emily Rickman will chat about the Webb technology behind imaging alien worlds. 🔭
youtube.com
How to Image Alien Worlds
Planets beyond our Solar System, known as exoplanets, are extremely difficult to observe. It's equivalent to trying to take a photograph of a firefly next to a lighthouse from thousands of miles away. The James Webb Space Telescope includes sophisticat...
05412
Space Telescope Science Institute @stsci.edu · 22/09/2026
When two galaxies meet a “fireworks” show of star formation can occur. When #NASAWebb peered at starburst galaxy Messier 82 in infrared light, it pierced through dust to reveal hot galactic wind extending from the core where millions of stars are being born. Credit: STScI.
07517
Space Telescope Science Institute @stsci.edu · 21/09/2026
It’s not everyday (but more often than most might think) that a NASA astronaut walks through our doors. The most recent: Baltimore-native Reid Wiseman, commander of NASA’s Artemis II mission! Last week, he stopped by to hear about NASA's flagship astrophysics missions. Credit: NASA/STScI
A person in a blue jacket is shaking hands with another person behind a row of computer stations in a NASA flight control room. Several monitors and control equipment are visible. NASA logos are displayed on the wall. Another individual is standing nearby holding a document.A group of people are standing outside a large glass window, observing a mission control room with multiple screens displaying data and images. One person is pointing towards the room. The workspace is busy and well-lit, indicating activity.Two individuals are in conversation inside the Mission Operations Control Center. One wears a blue jacket, with NASA logos visible on the back. They are standing near a model of the James Webb Space Telescope. Large windows reveal an outdoor view.Group of people smiling, with one person taking a selfie in the foreground. A person in a NASA jacket stands prominently. Background includes a screen showing a countdown and bright windows.
1587
Space Telescope Science Institute @stsci.edu · 18/09/2026
Baltimore City Public Schools alumni carry a universe-sized impact. 🪐 Decades before contemporary engineers took the reins to operate cutting-edge observatories, City Schools trailblazers were pioneering technologies and shaping NASA's most critical missions.
baltimorecityschools.org
The Only Limit for City Schools Students Is the Stars: How Baltimore City Public Schools Alumni Are Shaping the Universe
Baltimore City Public Schools alumni carry a universe-sized impact. Decades before contemporary eng...
1368
Space Telescope Science Institute @stsci.edu · 18/09/2026
Scientists call this region the Extreme Outer Galaxy due to its location at the edge of our Milky Way. It contains two massive molecular clouds from which clusters of stars are actively forming, as captured in this #NASAWebb image: bit.ly/4fRIdZ4
A star-forming region. At center right is a compact star cluster composed of luminous red, blue, and white points of light. Faint jets with clumpy, diffuse material extend in various directions from the bright cluster. Above and to the right is a smaller cluster of stars. Translucent red wisps of material stretch across the scene. Background galaxies are scattered across this swath of space, appearing as small blue-white and orange-white dots or fuzzy, thin disks.
06118
Space Telescope Science Institute @stsci.edu · 17/09/2026
STScI scientists are members of the collaboration that has been awarded the 2027 Berkeley Prize for their work with the UNCOVER project. This #NASAWebb program revealed “little red dots” are dusty black holes in the early universe: news.stsci.edu/4Ah7P9Y
A crowded galaxy field on a black background, with one large star dominating just right of center. Three areas are concentrated with larger white hazy blobs on the left, lower right, and upper right above the single star. Scattered between these areas are many smaller sources of light; some also have a hazy white glow, while many others are red or orange. Even without zooming in, different galaxy shapes are detectable, like spirals, ovals, and arcs.
1477
Reposted by Space Telescope Science Institute
Space Telescope Science Institute @stsci.edu · 15/09/2026
This starry view of the nearby star-forming region IC 348 sits just 1,000 light-years away in the constellation Perseus. Cold clouds of molecular hydrogen gas collapse to form new stars, creating glowing, sculpted scenes like this one. (1/5) 🧵 🔭
A star-forming region. The left two thirds is blanketed in thick clouds of green and yellow gas and dust that form swirling patterns. Some of the gas is spread into thin, thread-like wisps. The right third shows a black background speckled with stars and multi-colored dots that are distant galaxies. Bright stars are scattered throughout the clouds, with the densest cluster situated in the center. Each is crowned with six long spikes and two shorter spikes created by the optics of the telescope’s mirrors. In the upper right, a couple of hidden stars blast out long, glowing jets of material that glow in blue.
317037
Reposted by Space Telescope Science Institute
Space Telescope Science Institute @stsci.edu · 16/09/2026
Hubble has observed many Messier catalog items over 35+ years, including the Orion Nebula, the Omega Nebula, globular star cluster Messier 75, and galaxy Messier 109. Scroll through Hubble’s Messier images, and find your favorite: go.nasa.gov/3Ui2kHl 🔭
Messier 42: A vibrant and colorful image of the Orion Nebula, showcasing swirling clouds of gas and dust in hues of purple, pink, and orange, dotted with bright stars. The nebula is set against a dark cosmic background.Messier 17: The Omega Nebula features a dense field of stars and interstellar dust clouds. The image showcases vibrant blues, with bright stars scattered throughout the nebula.Messier 75: A densely packed star cluster, known as Messier 75 (M75), fills the image. The center radiates brightly with numerous stars, surrounded by a halo of smaller, glimmering stars. The background is black.Messier 109: A large spiral galaxy with a bright core surrounded by swirling dust and stars. The image depicts various shades of blue, illustrating large dust lanes and bright groups of stars.
210039
Reposted by Space Telescope Science Institute
Space Telescope Science Institute @stsci.edu · 15/09/2026
#NASARoman activated the Wide Field Instrument—a 300-megapixel infrared camera that will allow it to explore wide swaths of the cosmos quickly. This test image captures the very first photons of starlight to reach the instrument—taken as an initial performance assessment: go.nasa.gov/4rg4qEc
At the top, a grid of 21 panels shows a series of blue images with tiny neon green and yellow circles. A larger image highlights a section of the grid with circular patterns, and an inset presents a detailed star-like diffraction pattern. The colors consist of blue, green, and yellow.
8327107
Space Telescope Science Institute @stsci.edu · 16/09/2026
Hubble has observed many Messier catalog items over 35+ years, including the Orion Nebula, the Omega Nebula, globular star cluster Messier 75, and galaxy Messier 109. Scroll through Hubble’s Messier images, and find your favorite: go.nasa.gov/3Ui2kHl 🔭
Messier 42: A vibrant and colorful image of the Orion Nebula, showcasing swirling clouds of gas and dust in hues of purple, pink, and orange, dotted with bright stars. The nebula is set against a dark cosmic background.Messier 17: The Omega Nebula features a dense field of stars and interstellar dust clouds. The image showcases vibrant blues, with bright stars scattered throughout the nebula.Messier 75: A densely packed star cluster, known as Messier 75 (M75), fills the image. The center radiates brightly with numerous stars, surrounded by a halo of smaller, glimmering stars. The background is black.Messier 109: A large spiral galaxy with a bright core surrounded by swirling dust and stars. The image depicts various shades of blue, illustrating large dust lanes and bright groups of stars.
210039
Space Telescope Science Institute @stsci.edu · 15/09/2026
#NASARoman activated the Wide Field Instrument—a 300-megapixel infrared camera that will allow it to explore wide swaths of the cosmos quickly. This test image captures the very first photons of starlight to reach the instrument—taken as an initial performance assessment: go.nasa.gov/4rg4qEc
At the top, a grid of 21 panels shows a series of blue images with tiny neon green and yellow circles. A larger image highlights a section of the grid with circular patterns, and an inset presents a detailed star-like diffraction pattern. The colors consist of blue, green, and yellow.
8327107
Space Telescope Science Institute @stsci.edu · 15/09/2026
This starry view of the nearby star-forming region IC 348 sits just 1,000 light-years away in the constellation Perseus. Cold clouds of molecular hydrogen gas collapse to form new stars, creating glowing, sculpted scenes like this one. (1/5) 🧵 🔭
A star-forming region. The left two thirds is blanketed in thick clouds of green and yellow gas and dust that form swirling patterns. Some of the gas is spread into thin, thread-like wisps. The right third shows a black background speckled with stars and multi-colored dots that are distant galaxies. Bright stars are scattered throughout the clouds, with the densest cluster situated in the center. Each is crowned with six long spikes and two shorter spikes created by the optics of the telescope’s mirrors. In the upper right, a couple of hidden stars blast out long, glowing jets of material that glow in blue.
317037
Space Telescope Science Institute @stsci.edu · 15/09/2026
NEW: One of the largest #NASAWebb images released to date reveals a sweeping view of nearby star forming region IC 348, spanning a whopping 31,000 by 38,000 pixels! Look closely, there’s something to discover in every corner of this stellar nursery: news.stsci.edu/4hgxpnY
A star-forming region. The left two thirds is blanketed in thick clouds of green and yellow gas and dust that form swirling patterns. Some of the gas is spread into thin, thread-like wisps. The right third shows a black background speckled with stars and multi-colored dots that are distant galaxies. Bright stars are scattered throughout the clouds, with the densest cluster situated in the center. Each is crowned with six long spikes and two shorter spikes created by the optics of the telescope’s mirrors. In the upper right, a couple of hidden stars blast out long, glowing jets of material that glow in blue.
06618
Space Telescope Science Institute @stsci.edu · 15/09/2026
“As a result of exquisite planning by our orbital dynamics team, brilliant execution by the operations team, and a precise launch from SpaceX, Roman has fuel for at least 22 years of potential science operations,” said Jamie Dunn, center director at NASA’s Goddard Space Flight Center. #NASARoman 🔭
science.nasa.gov
Fuel Savings Double Potential Lifetime for NASA's Roman Mission - NASA Science
The results are in: NASA's Nancy Grace Roman Space Telescope's very accurate first mid-course correction, along with other fuel savings, are expected to more
216549
Space Telescope Science Institute @stsci.edu · 14/09/2026
Why was this tidal disruption event so far from its galaxy’s core? Explore this, and other comic questions, with News from the Universe: viewspace.org/video_library?tags=16…
0245
Reposted by Space Telescope Science Institute
Space Telescope Science Institute @stsci.edu · 10/09/2026
#NASAWebb is already helping scientists advance our knowledge about the life cycle of stars. How do stars form? Why do stars form in groups? What role do black holes play in the evolution of stars in galaxies? ➡️ go.nasa.gov/4fHCSDK 🔭
At the center is a thin vertical cloud known as Lynds 483 that is shaped like an hourglass with irregular edges. At lower center are two discrete bright white, tiny blobs of light that have raced away from the hidden central stars. The top lobe shows a more prominent orange U-shape. Orange bleeds into light purple, and brighter pink at its edges. Some background stars are visible through sections of this lobe. Higher up, there is an orange arc. Some brighter pink material extends to the top edges near the center. In the lower lobe, less orange is visible. More opaque light purple is in its top third, rippling out into semi-transparent blues and pinks. The lower lobe has more texture. V-shapes left and right of the lobes are darkest, and the background stars in these areas appear orange. Elsewhere, the black background of space is clearer, speckled with tiny white stars and faint orange galaxies.
210029
Space Telescope Science Institute @stsci.edu · 10/09/2026
#NASAWebb is already helping scientists advance our knowledge about the life cycle of stars. How do stars form? Why do stars form in groups? What role do black holes play in the evolution of stars in galaxies? ➡️ go.nasa.gov/4fHCSDK 🔭
At the center is a thin vertical cloud known as Lynds 483 that is shaped like an hourglass with irregular edges. At lower center are two discrete bright white, tiny blobs of light that have raced away from the hidden central stars. The top lobe shows a more prominent orange U-shape. Orange bleeds into light purple, and brighter pink at its edges. Some background stars are visible through sections of this lobe. Higher up, there is an orange arc. Some brighter pink material extends to the top edges near the center. In the lower lobe, less orange is visible. More opaque light purple is in its top third, rippling out into semi-transparent blues and pinks. The lower lobe has more texture. V-shapes left and right of the lobes are darkest, and the background stars in these areas appear orange. Elsewhere, the black background of space is clearer, speckled with tiny white stars and faint orange galaxies.
210029
Space Telescope Science Institute @stsci.edu · 09/09/2026
“Hubble and Webb are like looking through a keyhole at an individual object,” says Kristen McQuinn, who heads the Nancy Grace Roman Space Telescope mission office at the Space Telescope Science Institute in Baltimore. “With Roman, it’s like opening the door, and now you see everything." 🔭 #NASARoman
astronomy.com
How Roman will unlock the universe
This next-generation space telescope will blow past its predecessors to answer questions about everything from stars and planets to dark matter and dark energy.
07729
Space Telescope Science Institute @stsci.edu · 09/09/2026
#NASARoman is currently on its way to L2 where gravitational forces balance to keep objects in steady orbits with very little assistance. The animation begins shortly after launch and concludes with Roman entering its halo orbit around L2. Keep up with commissioning: go.nasa.gov/4gS6Zrb 🔭
05917
Reposted by Space Telescope Science Institute
NSF–DOE Rubin Observatory @rubinobservatory.org · 07/09/2026
Universe, meet your astronomical dream team! 🤝 Two observatories, two different ways of seeing the cosmos, and a whole lot of potential for discovery when their observations come together. 🧪🔭☄️
Rubin Observatory perched atop its mountain summit site on Cerro Pachón. The observatory is boot-shaped at lower left with long white service building extending left and silver dome sticking up. The dome's vertical slit is open, revealing the telescope in the blackness within. The night sky is peppered with the pinpricks of stars. The Little Beehive Cluster of stars is a denser collection of pinpricks to the upper right of the observatory.Artist’s rendering of a silver space telescope with a triangular sunshield and dish antenna floating in deep space against a star-filled black background.
27420
Reposted by Space Telescope Science Institute
Space Telescope Science Institute @stsci.edu · 08/09/2026
To shed light on an early stage of planet building in our solar system, Hubble and #NASAWebb examined Trans-Neptunian Objects—mysterious, frozen planetary building blocks that never formed into planets. This is the deepest such survey to date: news.stsci.edu/4zX3fgY 🔭
An illustration of a roughly spherical, rocky object against a black background speckled with distant, white stars. The rocky object is the color of red clay and is pockmarked with craters and other geological scars. At the bottom left corner of the illustration in gray lettering is the label “Artist’s Concept.
05412
Space Telescope Science Institute @stsci.edu · 08/09/2026
OPPORTUNITY: The Space Telescope Science Institute in Baltimore, MD, is seeking a Division Head for Platform Engineering to enable modern, scalable, secure, and mission-aligned engineering and operations across the Institute: bit.ly/4xe7cLG
0194
Space Telescope Science Institute @stsci.edu · 08/09/2026
To shed light on an early stage of planet building in our solar system, Hubble and #NASAWebb examined Trans-Neptunian Objects—mysterious, frozen planetary building blocks that never formed into planets. This is the deepest such survey to date: news.stsci.edu/4zX3fgY 🔭
An illustration of a roughly spherical, rocky object against a black background speckled with distant, white stars. The rocky object is the color of red clay and is pockmarked with craters and other geological scars. At the bottom left corner of the illustration in gray lettering is the label “Artist’s Concept.
05412
Reposted by Space Telescope Science Institute
Space Telescope Science Institute @stsci.edu · 04/09/2026
#NASAWebb, Hubble, and ALMA combined their strengths (infrared, visible, and radio) so scientists could study protoplanetary disk Oph 163131’s structure. Small dust grains create purple arcs, larger dust grains are yellow regions. Credit: ESA, NASA, CSA, ALMA, M. Villenave. 🧪
Oph 163131, a nearly edge-on protoplanetary disk around a newly formed star. The disk, which is small and at the center, looks like a flattened hamburger bun: two flat, purple lobes have a bright, thin vertical disk in the center. The whole protoplanetary disk glows brightly, shining bands of green, blue, and red into space around it. Surrounding the disk, against the black background of space, are several stars that appear as white dots. Distant galaxies also appear as dark orange spirals and other smaller shapes fading into the black background.
16916
Space Telescope Science Institute @stsci.edu · 04/09/2026
#NASAWebb, Hubble, and ALMA combined their strengths (infrared, visible, and radio) so scientists could study protoplanetary disk Oph 163131’s structure. Small dust grains create purple arcs, larger dust grains are yellow regions. Credit: ESA, NASA, CSA, ALMA, M. Villenave. 🧪
Oph 163131, a nearly edge-on protoplanetary disk around a newly formed star. The disk, which is small and at the center, looks like a flattened hamburger bun: two flat, purple lobes have a bright, thin vertical disk in the center. The whole protoplanetary disk glows brightly, shining bands of green, blue, and red into space around it. Surrounding the disk, against the black background of space, are several stars that appear as white dots. Distant galaxies also appear as dark orange spirals and other smaller shapes fading into the black background.
16916
Space Telescope Science Institute @stsci.edu · 03/09/2026
NASA launched its newest space telescope, undertaking its biggest mission yet to study the universe on a much larger scale. #NASARoman will allow scientists to get panoramic views of space and better understand the nature of powerful forces known as dark energy and dark matter. 🔭
pbs.org
How NASA's new space telescope could help solve mysteries of dark energy and dark matter
NASA launched its newest space telescope, undertaking its biggest mission yet to study the universe on a much larger scale. A roughly $4 billion project, the Nancy Grace Roman Space Telescope will allow scientists to get panoramic views of space and bet...
15111
Reposted by Space Telescope Science Institute
Space Telescope Science Institute @stsci.edu · 02/09/2026
Meet Saturn’s decagon, seen in recent images from Hubble. The new 10-sided atmospheric wave at the planet’s southern pole resembles the famous hexagon at the Saturn’s northern pole, but is also distinct: news.stsci.edu/4g9Gm1U
Side-by-side comparison of two views of the gas giant Saturn, labeled “August 29, 2025” at the top left corner. At left is a straight-on view of Saturn, a globe with pale yellow horizontal bands at the equator and orange and pink at the mid-latitudes. Some bands towards the north and south pole have a light blue hue. There are prominent horizontal rings circling at the equator. At right, labeled “Saturn’s south pole,” the south-polar view of Saturn shows concentric bands in its atmosphere, mostly tan and orange, surrounding a dark central region that has a 10-sided outline. A small, dashed circle at the very center of the pole with an “X” inside denotes missing data.
318053
Space Telescope Science Institute @stsci.edu · 03/09/2026
In collaboration with STScI, the Brinson Prize Fellowship Program applications open on Thursday, September 10, 2026, for early-career astrophysicists and cosmologists. More info: bit.ly/4wc1Pfx 🧪 🔭
The words “The Brinson Foundation” in white on a sea green background. A diamond-shaped logo in gold sits to the left of the words.
0145
Space Telescope Science Institute @stsci.edu · 02/09/2026
Meet Saturn’s decagon, seen in recent images from Hubble. The new 10-sided atmospheric wave at the planet’s southern pole resembles the famous hexagon at the Saturn’s northern pole, but is also distinct: news.stsci.edu/4g9Gm1U
Side-by-side comparison of two views of the gas giant Saturn, labeled “August 29, 2025” at the top left corner. At left is a straight-on view of Saturn, a globe with pale yellow horizontal bands at the equator and orange and pink at the mid-latitudes. Some bands towards the north and south pole have a light blue hue. There are prominent horizontal rings circling at the equator. At right, labeled “Saturn’s south pole,” the south-polar view of Saturn shows concentric bands in its atmosphere, mostly tan and orange, surrounding a dark central region that has a 10-sided outline. A small, dashed circle at the very center of the pole with an “X” inside denotes missing data.
318053
Space Telescope Science Institute @stsci.edu · 02/09/2026
#NASARoman is making its three-month journey to Lagrange Point 2. Along the way, Roman is undergoing a process called commissioning, where systems are turned on, adjusted, calibrated, and prepared for science operations. Follow along with Roman's commissioning! We're currently on Day 3. ⬇️
science.nasa.gov
Roman Commissioning - NASA Science
Roman is making its three-month journey from Earth to Sun-Earth Lagrange Point 2, or L2. Along the way, Roman is undergoing a process called commissioning,
05718
Reposted by Space Telescope Science Institute
Hannah Wakeford @stellarplanet.bsky.social · 02/09/2026
This is the next step towards linking our solar system to exoplanets and a way towards the future hopeful success of the Habitable Worlds Observatory. NGRST will potentially find evidence for thousands of worlds microlensing, transits, and direct imaging 🤩🔭🧪
0366
Space Telescope Science Institute @stsci.edu · 01/09/2026
The Nancy Grace Roman Space Telescope team has successfully activated the mission’s Coronagraph Instrument, which will block starlight to view planets and dusty disks around nearby stars. #NASARoman 🔭
science.nasa.gov
NASA Roman's Planet Imager Has Powered On - NASA Science
NASA's Nancy Grace Roman Space Telescope team has successfully activated the mission's Coronagraph Instrument, which will block starlight to view planets and
531579
Space Telescope Science Institute @stsci.edu · 01/09/2026
At one frequency, the dual-band antenna on the Nancy Grace Roman Space Telescope will receive commands and send back information about the spacecraft’s health and location. #NASARoman 🔭
science.nasa.gov
NASA Roman Space Telescope's Antenna, ‘Visor' Deployed - NASA Science
Roman's antenna and visor-like sunshade have successfully deployed.
06410
Space Telescope Science Institute @stsci.edu · 01/09/2026
Early on the morning of Sunday, August 30, 2026, #NASARoman was launched from the Kennedy Space Center in Florida. STScI is the science operations center for the telescope. This mission will revolutionize our understanding of dark energy, extra-solar planets, and astrophysics. 🔭 Credit: STScI.
14813
Reposted by Space Telescope Science Institute
Space Telescope Science Institute @stsci.edu · 31/08/2026
Hello, the telescope is named after Dr. Nancy Grace Roman, NASA's first Chief of Astronomy and champion for the Hubble Space Telescope. You can learn more about Dr. Roman below. 🔭 We'd love your help in telling her story to your followers!
science.nasa.gov
Who is Nancy Grace Roman? - NASA Science
Known as the "mother of the Hubble Space Telescope," Nancy Grace Roman was born May 16, 1925 in Nashville, Tennessee, and died December 25, 2018.
110348
Space Telescope Science Institute @stsci.edu · 31/08/2026
At 12:02 p.m. EDT, the Nancy Grace Roman Space Telescope began an approximately 3-minute mid-course correction burn to adjust its trajectory toward its final orbit. #NASARoman 🔭
science.nasa.gov
NASA's Roman Completes First Mid-Course Correction Burn - NASA Science
At 12:02 p.m. EDT, Roman began an approximately 3-minute mid-course correction burn to adjust its trajectory toward its final orbit.
116341
Reposted by Space Telescope Science Institute
Space Telescope Science Institute @stsci.edu · 30/08/2026
This morning's launch of the Nancy Grace Roman Space Telescope from the Kennedy Space Center was amazing! Roman is now on a million-mile journey to Lagrange point 2, where it will soon reveal the universe’s darkest secrets: go.nasa.gov/4qIa69I #NASARoman 🔭 Credit: J. Barrientes/STScI.
A rocket is launching into the sky from a launch pad, emitting bright flames and smoke. Trees are visible in the foreground.Crowd capturing a SpaceX rocket launch with smartphones, against a sunrise sky.A rocket launches into a cloudy sky, emitting a bright trail of light and smoke.A rocket with a fiery trail ascending into a clear blue sky, leaving a thick plume of white smoke underneath.
7325107