File:CEERS crop (NIRCam image) (CEERS11).jpg
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[edit]DescriptionCEERS crop (NIRCam image) (CEERS11).jpg |
English: When astronomers got their first glimpses of galaxies in the early Universe from the NASA/ESA/CSA James Webb Space Telescope, they were expecting to find galactic pipsqueaks, but instead they found what appeared to be a bevy of Olympic bodybuilders. Some galaxies appeared to have grown so massive, so quickly, that simulations couldn’t account for them. Some researchers suggested this meant that something might be wrong with the theory that explains what the Universe is made of and how it has evolved since the big bang, known as the standard model of cosmology.According to a new study in the Astrophysical Journal, some of those early galaxies are in fact much less massive than they first appeared. Black holes in some of these galaxies make them appear much brighter and bigger than they really are. The evidence was provided by Webb’s Cosmic Evolution Early Release Science (CEERS) Survey.According to this latest study, the galaxies that appeared overly massive likely host black holes rapidly consuming gas. Friction in the fast-moving gas emits heat and light, making these galaxies much brighter than they would be if that light emanated just from stars. This extra light can make it appear that the galaxies contain many more stars, and hence are more massive, than we would otherwise estimate. When scientists remove these galaxies, dubbed “little red dots” (based on their red color and small size), from the analysis, the remaining early galaxies are not too massive to fit within predictions of the standard model.However, there are still roughly twice as many massive galaxies in Webb’s data of the early Universe than expected from the standard model. One possible reason might be that stars formed more quickly in the early Universe than they do today. Star formation happens when hot gas cools enough to succumb to gravity and condense into one or more stars. But as the gas contracts, it heats up, generating outward pressure. In our region of the Universe, the balance of these opposing forces tends to make the star formation process very slow. But perhaps, according to some theories, because the early Universe was denser than today, it was harder to blow gas out during star formation, allowing the process to go faster.This image shows a small portion of the field observed by NASA’s James Webb Space Telescope’s NIRCam (Near-Infrared Camera) for the CEERS survey. The light from some of them has traveled for over 13 billion years to reach the telescope. Read more about the full CEERS image here.[Image description: Thousands of galaxies appear in this view, which is set against the black background of space. There are many overlapping objects at various distances. They include large, blue foreground stars, some with eight diffraction spikes, and white and pink spiral and elliptical galaxies. Numerous tiny red dots appear throughout the scene.] |
Date | 26 August 2024 (upload date) |
Source | CEERS crop (NIRCam image) |
Author | NASA, ESA, CSA, Steve Finkelstein (UT Austin) |
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[edit]ESA/Webb images, videos and web texts are released by the ESA under the Creative Commons Attribution 4.0 International license and may on a non-exclusive basis be reproduced without fee provided they are clearly and visibly credited. Detailed conditions are below; see the ESA copyright statement for full information. For images created by NASA or on the webbtelescope.org website, use the {{PD-Webb}} tag.
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This file is licensed under the Creative Commons Attribution 4.0 International license.
Attribution: NASA, ESA, CSA, Steve Finkelstein (UT Austin)
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Credit/Provider | NASA, ESA, CSA, Steve Finkelstein (UT Austin) |
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Source | ESA/Webb |
Author | Space Telescope Science Institute Office of Public Outreach |
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Date and time of data generation | 16:00, 26 August 2024 |
JPEG file comment | When astronomers got their first glimpses of galaxies in the early Universe from the NASA/ESA/CSA James Webb Space Telescope, they were expecting to find galactic pipsqueaks, but instead they found what appeared to be a bevy of Olympic bodybuilders. Some galaxies appeared to have grown so massive, so quickly, that simulations couldn’t account for them. Some researchers suggested this meant that something might be wrong with the theory that explains what the Universe is made of and how it has evolved since the big bang, known as the standard model of cosmology. According to a new study in the Astrophysical Journal, some of those early galaxies are in fact much less massive than they first appeared. Black holes in some of these galaxies make them appear much brighter and bigger than they really are. The evidence was provided by Webb’s Cosmic Evolution Early Release Science (CEERS) Survey. According to this latest study, the galaxies that appeared overly massive likely host black holes rapidly consuming gas. Friction in the fast-moving gas emits heat and light, making these galaxies much brighter than they would be if that light emanated just from stars. This extra light can make it appear that the galaxies contain many more stars, and hence are more massive, than we would otherwise estimate. When scientists remove these galaxies, dubbed “little red dots” (based on their red color and small size), from the analysis, the remaining early galaxies are not too massive to fit within predictions of the standard model. However, there are still roughly twice as many massive galaxies in Webb’s data of the early Universe than expected from the standard model. One possible reason might be that stars formed more quickly in the early Universe than they do today. Star formation happens when hot gas cools enough to succumb to gravity and condense into one or more stars. But as the gas contracts, it heats up, generating outward pressure. In our region of the Universe, the balance of these opposing forces tends to make the star formation process very slow. But perhaps, according to some theories, because the early Universe was denser than today, it was harder to blow gas out during star formation, allowing the process to go faster. This image shows a small portion of the field observed by NASA’s James Webb Space Telescope’s NIRCam (Near-Infrared Camera) for the CEERS survey. The light from some of them has traveled for over 13 billion years to reach the telescope. Read more about the full CEERS image here. [Image description: Thousands of galaxies appear in this view, which is set against the black background of space. There are many overlapping objects at various distances. They include large, blue foreground stars, some with eight diffraction spikes, and white and pink spiral and elliptical galaxies. Numerous tiny red dots appear throughout the scene.] |
Date and time of digitizing | 06:46, 12 January 2023 |
Software used | Adobe Photoshop 24.3 (Macintosh) |
Date metadata was last modified | 10:39, 16 August 2024 |
File change date and time | 10:27, 16 August 2024 |
Unique ID of original document | xmp.did:42227ad8-c4af-4955-abfe-370241a5a94f |
Copyright status | Copyright status not set |
Contact information | outreach@stsci.edu
ESA Office, Space Telescope Science Institute, 3700 San Martin Dr Baltimore, MD, 21218 United States |
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