{"id":9962,"date":"2026-09-15T14:00:00","date_gmt":"2026-09-15T14:00:00","guid":{"rendered":"https:\/\/godshand.link\/ground_post\/nasas-webb-reveals-dynamic-panorama-of-star-formation\/"},"modified":"2026-09-15T14:00:00","modified_gmt":"2026-09-15T14:00:00","slug":"nasas-webb-reveals-dynamic-panorama-of-star-formation","status":"publish","type":"ground_post","link":"https:\/\/godshand.link\/en_gb\/ground_post\/nasas-webb-reveals-dynamic-panorama-of-star-formation\/","title":{"rendered":"NASA\u2019s Webb Reveals Dynamic Panorama of Star Formation"},"content":{"rendered":"<p><br \/>\n<\/p>\n<div xmlns:default=\"http:\/\/www.w3.org\/2000\/svg\">\n<p class=\"wp-block-paragraph\">This starry view of the nearby star-forming region IC 348 is one of the largest images released to date from NASA\u2019s James Webb Space Telescope. Using Webb, astronomers searched IC 348 for brown dwarfs, which are less massive than the smallest stars. The researchers discovered brown dwarfs just twice the mass of Jupiter, bringing the study of these curious objects into a new mass range and revealing new insights about the star formation process.<\/p>\n<p class=\"wp-block-paragraph\">The star-forming region IC 348 is located just 1,000 light-years away in the constellation Perseus. In regions like IC 348, cold clouds of molecular hydrogen gas collapse to form new stars, creating glowing, sculpted scenes like this one. The star-formation process can create widely varied objects, from massive stars that expire after only a few million years in core-collapse supernova explosions to the smallest and most common stars, which are long lived and produce powerful stellar storms.<\/p>\n<div class=\"stma-image-wrapper bg-carbon-black nasa-block-align-wide\">\n<div class=\"image-container\" aria-label=\"Interactive image\"><img width=\"30866\" height=\"38204\" src=\"https:\/\/assets.science.nasa.gov\/dynamicimage\/assets\/science\/missions\/webb\/science\/2026\/09\/STScI-01M0JFFAD7SDCCNHWT7T7P3QX9.png?w=30866&amp;h=38204&amp;fit=clip&amp;crop=faces%2Cfocalpoint\" class=\"attachment-card-md size-card-md\" alt=\"A star-forming region. The left two thirds of the image is blanketed in thick clouds of green and yellow gas and dust that form swirling patterns. Some of the gas is spread into thin, thready wisps. The right third of the image is the black background speckled with stars and multi-colored dots that represent distant galaxies. Bright stars are scattered throughout the clouds, with the densest cluster situated in the center of the scene. Each is crowned with six long spikes and two shorter spikes created by the optics of the telescope\u2019s mirrors. In the upper right, a couple of hidden stars blast out long, glowing jets of material that glow in blue.\" style=\"transform: scale(1); transform-origin: 50% 50%; object-position: 50% 50%; object-fit: cover;\" block_context=\"nasa-block\" loading=\"lazy\" decoding=\"async\" srcset=\"https:\/\/assets.science.nasa.gov\/dynamicimage\/assets\/science\/missions\/webb\/science\/2026\/09\/STScI-01M0JFFAD7SDCCNHWT7T7P3QX9.png?w=30866&amp;h=38204&amp;fit=crop&amp;crop=faces%2Cfocalpoint 30866w, https:\/\/assets.science.nasa.gov\/dynamicimage\/assets\/science\/missions\/webb\/science\/2026\/09\/STScI-01M0JFFAD7SDCCNHWT7T7P3QX9.png?w=242&amp;h=300&amp;fit=crop&amp;crop=faces%2Cfocalpoint 242w, https:\/\/assets.science.nasa.gov\/dynamicimage\/assets\/science\/missions\/webb\/science\/2026\/09\/STScI-01M0JFFAD7SDCCNHWT7T7P3QX9.png?w=768&amp;h=951&amp;fit=crop&amp;crop=faces%2Cfocalpoint 768w, https:\/\/assets.science.nasa.gov\/dynamicimage\/assets\/science\/missions\/webb\/science\/2026\/09\/STScI-01M0JFFAD7SDCCNHWT7T7P3QX9.png?w=827&amp;h=1024&amp;fit=crop&amp;crop=faces%2Cfocalpoint 827w, https:\/\/assets.science.nasa.gov\/dynamicimage\/assets\/science\/missions\/webb\/science\/2026\/09\/STScI-01M0JFFAD7SDCCNHWT7T7P3QX9.png?w=1241&amp;h=1536&amp;fit=crop&amp;crop=faces%2Cfocalpoint 1241w, https:\/\/assets.science.nasa.gov\/dynamicimage\/assets\/science\/missions\/webb\/science\/2026\/09\/STScI-01M0JFFAD7SDCCNHWT7T7P3QX9.png?w=1655&amp;h=2048&amp;fit=crop&amp;crop=faces%2Cfocalpoint 1655w, https:\/\/assets.science.nasa.gov\/dynamicimage\/assets\/science\/missions\/webb\/science\/2026\/09\/STScI-01M0JFFAD7SDCCNHWT7T7P3QX9.png?w=323&amp;h=400&amp;fit=crop&amp;crop=faces%2Cfocalpoint 323w, https:\/\/assets.science.nasa.gov\/dynamicimage\/assets\/science\/missions\/webb\/science\/2026\/09\/STScI-01M0JFFAD7SDCCNHWT7T7P3QX9.png?w=485&amp;h=600&amp;fit=crop&amp;crop=faces%2Cfocalpoint 485w, https:\/\/assets.science.nasa.gov\/dynamicimage\/assets\/science\/missions\/webb\/science\/2026\/09\/STScI-01M0JFFAD7SDCCNHWT7T7P3QX9.png?w=727&amp;h=900&amp;fit=crop&amp;crop=faces%2Cfocalpoint 727w, https:\/\/assets.science.nasa.gov\/dynamicimage\/assets\/science\/missions\/webb\/science\/2026\/09\/STScI-01M0JFFAD7SDCCNHWT7T7P3QX9.png?w=970&amp;h=1201&amp;fit=crop&amp;crop=faces%2Cfocalpoint 970w, https:\/\/assets.science.nasa.gov\/dynamicimage\/assets\/science\/missions\/webb\/science\/2026\/09\/STScI-01M0JFFAD7SDCCNHWT7T7P3QX9.png?w=1616&amp;h=2000&amp;fit=crop&amp;crop=faces%2Cfocalpoint 1616w\" sizes=\"auto, (max-width: 30866px) 100vw, 30866px\"\/><\/div>\n<\/div><figcaption class=\"nasa-block-align-wide hds-caption padding-y-2\">\n<p>NASA\u2019s James Webb Space Telescope recently observed IC 348, a star-forming region just 1,000 light-years away from Earth. Webb\u2019s sharp vision revealed tiny brown dwarfs, some just twice Jupiter\u2019s mass, and young stars ejecting powerful jets crashing into surrounding gas and dust.<\/p>\n<p>Image: NASA, ESA, CSA, Kevin Luhman (PSU), Catarina Alves de Oliveira (ESA), Mahdi Zamani (ESA\/Webb)<\/p>\n<\/figcaption><p class=\"wp-block-paragraph\">The smallest stars weigh in at around 8 percent of the Sun\u2019s mass. Below this mass lies a strange class of objects called brown dwarfs. Brown dwarfs form in the same way stars do, through the collapse of molecular clouds. However, unlike stars, the cores of brown dwarfs never become hot enough to fuse ordinary hydrogen into helium (though many briefly fuse deuterium, or heavy hydrogen, early in their lives).<\/p>\n<p class=\"wp-block-paragraph\">What\u2019s still not clear, and what researchers hoped to learn by using Webb\u2019s sensitive instruments to study IC 348, is how small the smallest objects created by the star-formation process are. In other words, how small is the smallest brown dwarf?<\/p>\n<p class=\"wp-block-paragraph\">Researchers seeking to answer this question first used Webb to study IC 348 in 2022, when they <a target=\"_blank\" href=\"https:\/\/science.nasa.gov\/missions\/webb\/nasas-webb-identifies-tiniest-free-floating-brown-dwarf\/\">discovered brown dwarfs with masses as low as three to four times the mass of Jupiter<\/a>. Now, the same research team has used Webb to probe even deeper into this region in search of even smaller brown dwarfs.\u00a0<\/p>\n<p class=\"wp-block-paragraph\">The team used Webb\u2019s NIRCam (Near-Infrared Camera) in 2024 to capture the warm glow of young brown dwarfs and newborn stars seen in this new image of IC 348. After selecting candidate brown dwarfs based on their colors and brightness, they followed up with Webb\u2019s NIRSpec (Near-Infrared Spectrograph) in 2025 to conduct <a target=\"_blank\" href=\"https:\/\/science.nasa.gov\/mission\/webb\/science-overview\/science-explainers\/spectroscopy-101-introduction\/\">spectroscopic observations<\/a> to study the masses of the brown dwarfs.<\/p>\n<p class=\"wp-block-paragraph\">These deep Webb observations <a target=\"_blank\" href=\"https:\/\/iopscience.iop.org\/article\/10.3847\/2041-8213\/addc55\" rel=\"noreferrer noopener\">revealed something remarkable<\/a> to the researchers: brown dwarfs with masses as low as just twice the mass of Jupiter or only 0.19 percent of the Sun\u2019s mass \u2014 far smaller than theory predicts brown dwarfs should be. These are the least massive brown dwarfs known and their existence poses a challenge to models of how stars form.<\/p>\n<p class=\"wp-block-paragraph\">In addition to the discovery of these unexpectedly lightweight brown dwarfs, the Webb observations contained even more surprises. One of the lightest newfound brown dwarfs showed signs of a disk, suggesting that small planets could be forming around an object that is itself only the mass of a planet.<\/p>\n<p class=\"wp-block-paragraph\">While inspecting the spectra of IC 348\u2019s brown dwarfs, the research team also found a feature they attributed to an unidentified hydrocarbon \u2014 molecules made only of hydrogen and carbon atoms. This specific feature has only been seen in the atmospheres of the lowest-mass brown dwarfs, suggesting that these extreme objects might exist in a spectral class of their own.<\/p>\n<p class=\"wp-block-paragraph\">The stars and brown dwarfs of IC 348 aren\u2019t the only attractions in this image. A brilliantly detailed collection of protostars occupies the upper right corner. Several of these protostars are accompanied by Herbig-Haro objects, which are luminous regions that form when jets from growing newborn stars crash into the gas and dust around the star.<\/p>\n<p class=\"wp-block-paragraph\">The long, narrow feature that is oriented horizontally in this corner is the Herbig-Haro object <a target=\"_blank\" href=\"https:\/\/www.nasa.gov\/missions\/webb\/webb-telescope-a-prominent-protostar-in-perseus\/\">HH 797<\/a>. Upon close inspection, this source is revealed to be two protostars with nearly parallel outflows. Just to the right of HH 797 is the propeller-shaped source <a target=\"_blank\" href=\"https:\/\/science.nasa.gov\/missions\/webb\/nasas-webb-snaps-supersonic-outflow-of-young-star\/\">HH 211<\/a>, which features both narrow jets and broader outflows.<\/p>\n<div class=\"stma-image-wrapper bg-carbon-black nasa-block-align-wide\">\n<div class=\"image-container\" aria-label=\"Interactive image\"><img width=\"9253\" height=\"5990\" src=\"https:\/\/assets.science.nasa.gov\/dynamicimage\/assets\/science\/missions\/webb\/science\/2026\/09\/STScI-01M0JC98QG9N36BY19EW7AGX7H.png?w=9253&amp;h=5990&amp;fit=clip&amp;crop=faces%2Cfocalpoint\" class=\"attachment-card-md size-card-md\" alt=\"A collage, with three large panels along the top and four smaller ones on the bottom. The middle panel on top shows star-forming region IC 348, which has a blanket of thick clouds of yellow and green dust blanketing most of the image. Six boxes are drawn around features in the region, numbered 1\u20136. The other six panels are numbered and show these features enlarged. They include bright stars throughout the nebula, protostars shooting jets of gas, a distant spiral galaxy, and a gravitational lens.\" style=\"transform: scale(1); transform-origin: 50% 50%; object-position: 50% 50%; object-fit: cover;\" block_context=\"nasa-block\" loading=\"lazy\" decoding=\"async\" srcset=\"https:\/\/assets.science.nasa.gov\/dynamicimage\/assets\/science\/missions\/webb\/science\/2026\/09\/STScI-01M0JC98QG9N36BY19EW7AGX7H.png?w=9253&amp;h=5990&amp;fit=crop&amp;crop=faces%2Cfocalpoint 9253w, https:\/\/assets.science.nasa.gov\/dynamicimage\/assets\/science\/missions\/webb\/science\/2026\/09\/STScI-01M0JC98QG9N36BY19EW7AGX7H.png?w=300&amp;h=194&amp;fit=crop&amp;crop=faces%2Cfocalpoint 300w, https:\/\/assets.science.nasa.gov\/dynamicimage\/assets\/science\/missions\/webb\/science\/2026\/09\/STScI-01M0JC98QG9N36BY19EW7AGX7H.png?w=768&amp;h=497&amp;fit=crop&amp;crop=faces%2Cfocalpoint 768w, https:\/\/assets.science.nasa.gov\/dynamicimage\/assets\/science\/missions\/webb\/science\/2026\/09\/STScI-01M0JC98QG9N36BY19EW7AGX7H.png?w=1024&amp;h=663&amp;fit=crop&amp;crop=faces%2Cfocalpoint 1024w, https:\/\/assets.science.nasa.gov\/dynamicimage\/assets\/science\/missions\/webb\/science\/2026\/09\/STScI-01M0JC98QG9N36BY19EW7AGX7H.png?w=1536&amp;h=994&amp;fit=crop&amp;crop=faces%2Cfocalpoint 1536w, https:\/\/assets.science.nasa.gov\/dynamicimage\/assets\/science\/missions\/webb\/science\/2026\/09\/STScI-01M0JC98QG9N36BY19EW7AGX7H.png?w=2048&amp;h=1326&amp;fit=crop&amp;crop=faces%2Cfocalpoint 2048w, https:\/\/assets.science.nasa.gov\/dynamicimage\/assets\/science\/missions\/webb\/science\/2026\/09\/STScI-01M0JC98QG9N36BY19EW7AGX7H.png?w=400&amp;h=259&amp;fit=crop&amp;crop=faces%2Cfocalpoint 400w, https:\/\/assets.science.nasa.gov\/dynamicimage\/assets\/science\/missions\/webb\/science\/2026\/09\/STScI-01M0JC98QG9N36BY19EW7AGX7H.png?w=600&amp;h=388&amp;fit=crop&amp;crop=faces%2Cfocalpoint 600w, https:\/\/assets.science.nasa.gov\/dynamicimage\/assets\/science\/missions\/webb\/science\/2026\/09\/STScI-01M0JC98QG9N36BY19EW7AGX7H.png?w=900&amp;h=583&amp;fit=crop&amp;crop=faces%2Cfocalpoint 900w, https:\/\/assets.science.nasa.gov\/dynamicimage\/assets\/science\/missions\/webb\/science\/2026\/09\/STScI-01M0JC98QG9N36BY19EW7AGX7H.png?w=1200&amp;h=777&amp;fit=crop&amp;crop=faces%2Cfocalpoint 1200w, https:\/\/assets.science.nasa.gov\/dynamicimage\/assets\/science\/missions\/webb\/science\/2026\/09\/STScI-01M0JC98QG9N36BY19EW7AGX7H.png?w=2000&amp;h=1295&amp;fit=crop&amp;crop=faces%2Cfocalpoint 2000w\" sizes=\"auto, (max-width: 9253px) 100vw, 9253px\"\/><\/div>\n<\/div><figcaption class=\"nasa-block-align-wide hds-caption padding-y-2\">\n<p>This collage features a collection of insets from NASA\u2019s James Webb Space Telescope\u2019s image of star-forming region IC 348: embedded stars, a central star cluster, faint outflows, Herbig-Haro objects, gravitational lensing, and spiral galaxies.<\/p>\n<p>Image: NASA, ESA, CSA, Kevin Luhman (PSU), Catarina Alves de Oliveira (ESA), Mahdi Zamani (ESA\/Webb)<\/p>\n<\/figcaption><p class=\"wp-block-paragraph\">The data used to create this image comes from the Webb <a target=\"_blank\" href=\"https:\/\/www.stsci.edu\/jwst\/science-execution\/program-information?id=4866\" rel=\"noreferrer noopener\">General Observer Program 4866<\/a>. In addition to studying the lowest-mass objects created through the star-formation process, this program also seeks to understand how the populations of planetary-mass objects like brown dwarfs vary between star-forming regions, as well as the origins of the hydrocarbon feature in the lowest-mass brown dwarfs.<\/p>\n<p class=\"wp-block-paragraph\">The James Webb Space Telescope is the world\u2019s premier space science observatory. Webb is solving mysteries in our solar system, looking beyond to distant worlds around other stars, and probing the mysterious structures and origins of our universe and our place in it. Webb is an international program led by NASA with its partners, ESA (European Space Agency) and CSA (Canadian Space Agency).<\/p>\n<p class=\"wp-block-paragraph\">To learn more about Webb, visit:<\/p>\n<p class=\"has-text-align-center wp-block-paragraph\"><a target=\"_blank\" href=\"https:\/\/science.nasa.gov\/webb\"><strong>https:\/\/science.nasa.gov\/webb<\/strong><\/a><\/p>\n<p class=\"wp-block-paragraph\">The following sections contain links to download this article&#8217;s images and videos in all available resolutions followed by related information links, media contacts, and if available, research paper and Spanish translation links.<\/p>\n<\/div>\n<p><br \/>\n<br \/><a href=\"https:\/\/science.nasa.gov\/missions\/webb\/nasas-webb-reveals-dynamic-panorama-of-star-formation\/?rand=6321\" target=\"_blank\">Source link <\/a><\/p>","protected":false},"excerpt":{"rendered":"<p>This starry view of the nearby star-forming region IC 348 is one of the largest images released to date from NASA\u2019s James Webb Space Telescope. Using Webb, astronomers searched IC 348 for brown dwarfs, which are less massive than the smallest stars. The researchers discovered brown dwarfs just twice the mass of Jupiter, bringing the study of these curious objects&hellip;<\/p>","protected":false},"author":1,"featured_media":9963,"parent":0,"menu_order":0,"comment_status":"open","ping_status":"open","template":"","format":"standard","meta":{"give_campaign_id":0,"footnotes":""},"tags":[3299,1123,331,3300,338,351,518],"ground_category":[137,138],"class_list":["post-9962","ground_post","type-ground_post","status-publish","format-standard","has-post-thumbnail","hentry","tag-dynamic","tag-formation","tag-nasas","tag-panorama","tag-reveals","tag-star","tag-webb","ground_category-1-grounds-science","ground_category-1-1-discover-universe"],"fifu_image_url":"https:\/\/assets.science.nasa.gov\/content\/dam\/science\/missions\/webb\/science\/2026\/09\/STScI-01M0JFFAD7SDCCNHWT7T7P3QX9.png\/jcr:content\/renditions\/cq5dam.web.1280.1280.png","_links":{"self":[{"href":"https:\/\/godshand.link\/en_gb\/wp-json\/wp\/v2\/ground_post\/9962","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/godshand.link\/en_gb\/wp-json\/wp\/v2\/ground_post"}],"about":[{"href":"https:\/\/godshand.link\/en_gb\/wp-json\/wp\/v2\/types\/ground_post"}],"author":[{"embeddable":true,"href":"https:\/\/godshand.link\/en_gb\/wp-json\/wp\/v2\/users\/1"}],"replies":[{"embeddable":true,"href":"https:\/\/godshand.link\/en_gb\/wp-json\/wp\/v2\/comments?post=9962"}],"version-history":[{"count":0,"href":"https:\/\/godshand.link\/en_gb\/wp-json\/wp\/v2\/ground_post\/9962\/revisions"}],"wp:featuredmedia":[{"embeddable":true,"href":"https:\/\/godshand.link\/en_gb\/wp-json\/wp\/v2\/media\/9963"}],"wp:attachment":[{"href":"https:\/\/godshand.link\/en_gb\/wp-json\/wp\/v2\/media?parent=9962"}],"wp:term":[{"taxonomy":"post_tag","embeddable":true,"href":"https:\/\/godshand.link\/en_gb\/wp-json\/wp\/v2\/tags?post=9962"},{"taxonomy":"ground_category","embeddable":true,"href":"https:\/\/godshand.link\/en_gb\/wp-json\/wp\/v2\/ground_category?post=9962"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}