惯性聚合 高效追踪和阅读你感兴趣的博客、新闻、科技资讯
阅读原文 在惯性聚合中打开

推荐订阅源

博客园 - 司徒正美
月光博客
月光博客
奇客Solidot–传递最新科技情报
奇客Solidot–传递最新科技情报
美团技术团队
WordPress大学
WordPress大学
罗磊的独立博客
Last Week in AI
Last Week in AI
人人都是产品经理
人人都是产品经理
爱范儿
爱范儿
MongoDB | Blog
MongoDB | Blog
J
Java Code Geeks
H
Hackread – Cybersecurity News, Data Breaches, AI and More
H
Help Net Security
S
SegmentFault 最新的问题
C
Check Point Blog
酷 壳 – CoolShell
酷 壳 – CoolShell
腾讯CDC
Engineering at Meta
Engineering at Meta
The GitHub Blog
The GitHub Blog
F
Fortinet All Blogs
D
DataBreaches.Net
雷峰网
雷峰网
GbyAI
GbyAI
宝玉的分享
宝玉的分享

Latest from Live Science

Loneliness may contribute to memory issues, but not dementia — they are 'not the same thing' Naked mole rats wage bloody wars of succession to choose a new queen — but one colony did something scientists… Can the US be trusted with the moon? A law scholar raises concerns after Artemis II Lyrid meteor shower 2026: See spring's first rain of 'shooting stars' peak in moonless skies $3 million prize goes to duo whose research led to first sickle cell CRISPR therapy 700-year-old mummy from Bolivia contains earliest confirmed evidence of strep throat bacteria in the Americas New pain-relief opioid could be much less addictive than morphine, rodent study finds Experimental drug doubles one-year survival in pancreatic cancer Science news this week: Physicists witness faster-than-light darkness pinpricks, humans are still evolving, and some… Archaeologists discover perfectly circular ancient Egyptian temple that may have been used for sacred water rituals Some polar bears are adapting to their melting habitat. Will it be enough to save the iconic species? 2 supermassive black holes may collide 100 years from now ‪—‬ and Earth would feel it Anglo-Saxon burial holds an older sister cradling her little brother after they both died 1,400 years ago, possibly of… Colorado River may have pooled and spilled over to form the Grand Canyon, solving a long-standing mystery ‪—‬… 'We all screamed when it happened': Bright-green fireball meteor caught exploding over famous Viking raid site… Northern lights may be visible from several US states Friday and Saturday as giant hole opens up in sun Hackers used AI to steal hundreds of millions of Mexican government and private citizen records in one of the largest… The first black hole ever discovered is spewing 'dancing jets' at half the speed of light Stephen Hawking's black hole information paradox could be solved — if the universe has 7 dimensions 'Something's missing': Most thorough-ever study of the cosmos proves we still can't explain how the… 'Human evolution didn't slow down; we were just missing the signal': Large DNA study reveals natural selection led to more redheads and less male-pattern baldness Artemis II quiz: Is your knowledge of NASA New study confirms lobsters feel pain, driving scientists to call for a ban on boiling them alive This humanoid robot does all your housework for you ‪—‬ and its makers say it Ancient process that created rare earth elements discovered — and it could help us locate desperately needed deposits Strange mammal ancestor laid huge, leathery eggs —‬ and it was key to surviving the world 73 moon landings? NASA Diagnostic dilemma: A woman heard voices telling her she had a brain tumor ‪—‬ and scans confirmed she did Triassic croc relative from Ghost Ranch, New Mexico finally identified after nearly 80 years in museum basement There were
The hungriest black holes in the universe are running out...
2026-04-06 · via Latest from Live Science
Two images side by side showing galaxies and black holes in bright purple against a starry background
Galaxy J033225 shines brighter in X-rays than the galaxy J033215 because of its increased consumption. (Image credit: X-ray: NASA/CXC/Penn State Univ./Z. Yu et al.; Optical (HST): NASA/ESA/STScI; Infrared: NASA/ESA/CSA/STScI; Image Processing: NASA/CXC/SAO/P. Edmonds, L. Frattare)

For years, astronomers have been puzzled by why the biggest black holes in the universe have been growing much more slowly over the past 10 billion years. Now, a new study offers a potential solution to this astrophysical enigma: They're starved for gas.

Supermassive black holes (SMBHs) have immense gravitational appetites that allowed them to grow to many millions or billions of times the mass of the sun at surprisingly rapid rates in the first few billion years after the Big Bang. However, SMBHs have been growing ever more slowly since the period known as "cosmic noon," when the universe was less than a quarter of its current age.

The actual reason may be that there's simply less material for them to munch on, scientists suggested in a paper published Dec. 17 in The Astrophysical Journal.

"We knew black holes were growing more slowly, but not why — and it turned out to be that individual black holes are consuming material much less rapidly, rather than there simply being fewer growing black holes or smaller ones," study co-author Fan Zou, an astronomer at the University of Michigan, told Live Science via email.

Beefy black holes on a diet

Studying the growth of black holes is crucial for understanding galactic evolution and star birth, because SMBHs and their host galaxies evolve in a coordinated manner. SMBH sizes also correlate with the total mass of stars and their chaotic movements in a galaxy's bulge — the football-shaped central region where stars are densely packed.

To measure how black hole growth has changed throughout cosmic time, the researchers utilized data from nine extragalactic surveys collected in a "wedding cake" design. These tiered layers include shallow surveys of large, relatively nearby regions of the sky, as well as extremely deep "pencil-beam" looks at smaller fields, gathered from the world's premier X-ray-based space telescopes, including NASA's Chandra X-ray Observatory, the European Space Agency's XMM-Newton and the German-Russian eROSITA.

Get the world’s most fascinating discoveries delivered straight to your inbox.

"X-ray light is arguably the best tracer of black hole growth," lead author Zhibo Yu, an astronomer at Penn State, told Live Science via email. "It is ubiquitously produced by growing supermassive black holes and has high contrast compared to the background star light. It also has high-penetrating power — that's why it's commonly used in medical imaging — so that it is less affected by the obscuring gas and dust in the galaxy."

Altogether, the researchers analyzed multiwavelength observations of 1.3 million galaxies and 8,000 actively feeding, X-ray-spewing SMBHs to determine why the black holes' growth rate has plummeted.

Have black holes had their heyday?

The research tested three main ideas. For example, are the black holes in the modern universe gobbling less matter? Alternatively, are they simply smaller and, therefore, less gravitationally gluttonous than their ancient predecessors? Or are there fewer actively growing black holes overall?

The researchers concluded that the black holes' consumption has slackened as the amount of cold gas for them to gobble has decreased since cosmic noon, approximately 10 billion years ago. "What surprised me most was that we could actually isolate the main reason, and there is indeed a dominating reason instead of a messy mix," Zou explained.

A figure showing different hypotheses of how black holes grow, with a series of black holes illustrated with golden halos surrounding them against a blue background.

Scenarios highlighting the hypotheses for decreasing black hole growth rates over cosmic time. (Image credit: Penn State/Z. Yu)

RELATED STORIES

This decrease in growth rates appears to be significant. "Our best estimate is that the decrease is a factor of 22," study co-author Neil Brandt, an astrophysicist at Penn State, told Live Science via email. Although this study did not address the bafflingly fast black hole growth in the very early universe, "it does the best job so far of [addressing] the final 75% of cosmic time — a large majority!"

Future work may focus on additional datasets, such as wide-field X-ray surveys from Chandra and XMM-Newton, as well as multiwavelength data from other observatories. As a result, astronomers will be able to uncover larger SMBH populations, including even older examples and those that are obscured by dense dust and gas.

Finally, the research further confirms that the eras of rampant SMBHs are behind us. "We do not expect many SMBHs to emerge and significantly grow in the future," Zou said. "Actually, we found in 2024 that the number of SMBHs was almost settled by 7 billion years ago — and will likely continue to be so in the future."

Article Sources

喻 Z. 知. Y., Brandt, W. N., Zou, F., Luo, B., Ni, Q., Schneider, D. P., & Vito, F. (2025). The Drivers of the Decline in Supermassive Black Hole Growth at z < 2. The Astrophysical Journal, 995(2), 205. https://doi.org/10.3847/1538-4357/ae173d


How much do you know about black holes? Test your knowledge with our black hole quiz!

Ivan is a long-time writer who loves learning about technology, history, culture, and just about every major “ology” from “anthro” to “zoo.” Ivan also dabbles in internet comedy, marketing materials, and industry insight articles. An exercise science major, when Ivan isn’t staring at a book or screen he’s probably out in nature or lifting progressively heftier things off the ground. Ivan was born in sunny Romania and now resides in even-sunnier California. 

You must confirm your public display name before commenting

Please logout and then login again, you will then be prompted to enter your display name.