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

WordPress大学
WordPress大学
aimingoo的专栏
aimingoo的专栏
月光博客
月光博客
博客园 - Franky
Martin Fowler
Martin Fowler
U
Unit 42
阮一峰的网络日志
阮一峰的网络日志
Recent Announcements
Recent Announcements
The Cloudflare Blog
博客园 - 聂微东
酷 壳 – CoolShell
酷 壳 – CoolShell
宝玉的分享
宝玉的分享
J
Java Code Geeks
B
Blog RSS Feed
博客园 - 三生石上(FineUI控件)
MongoDB | Blog
MongoDB | Blog
腾讯CDC
博客园_首页
博客园 - 司徒正美
D
DataBreaches.Net
I
InfoQ
GbyAI
GbyAI
IT之家
IT之家
罗磊的独立博客

Latest from Live Science in News

Artemis II heat shield aced its blistering reentry, ghostly underwater photo reveals Scientists invent artificial neurons that 'talk' to real brain cells, paving way to better brain implants 'What are the odds': Superbright comet and exploding fireball meteor form near-perfect X over European castle Meet AGI CPU — a specialist processor that engineers believe will power the next wave of AI Egyptian mummy has part of the 'Iliad' in its abdomen, archaeologists discover Artemis moon landing could face long delay while NASA waits for next-generation spacesuits Gene therapy improves hearing in 90% of patients with inherited deafness in largest trial of its kind Oil spills from Iran war may contaminate water and food supply and threaten protected wildlife refuge NASA's Curiosity rover finds a surprising number of giant 'dragon scales' littered across Mars Watch an AI-powered table tennis robot beat elite players NASA shuts off another Voyager 1 instrument as humanity Florida is facing its most intense drought in 15 years. Here's how it got so bad and how long it will last. Neanderthal toddlers grew faster than modern humans, probably because of the harsh environment they evolved in 'Nations need to prepare now': Key Atlantic ocean current is much closer to collapse than scientists thought New blood test aims to spot liver scarring before it paves the way to cancer A giant 'shadow' has been creeping across Mars for 50 years — and scientists aren't sure why Bruce the parrot is missing his upper beak —‬ but that hasn't stopped him from becoming an undefeated… Scientists identify main cause of extreme nausea and vomiting in pregnancy Naked mole rats wage bloody wars of succession to choose a new queen — but one colony did something scientists… 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 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…
The universe may end trillions of years sooner than we th...
pmsutter@gma · 2026-04-28 · via Latest from Live Science in News
A swirl of purple and blue gas dotted with red stars moves around a central glowing core, blending together to make a giant spiral galaxy.
Astronomers use twinkling stars in galaxies like this one (NGC 5468) to confirm the universe’s expansion rate. But what if cosmic expansion were to slow down and reverse? New research looks at the implications on the lifespan of the universe. (Image credit: NASA, ESA, CSA, STScI, A. Riess (JHU/STScI), CC BY 4.0 INT)

Scientists have long assumed our universe would continue on for trillions of years, but a new study presents a much shorter life span for the cosmos: Our universe might last only another 33 billion years.

That's just a cosmic blink before everything collapses in on itself ‪—‬ a process dubbed the "Big Crunch," where expansion reverses, causing all matter and space-time to collapse back into an extremely dense state similar to the conditions of the Big Bang. While long considered a discarded possibility for the fate of the universe, because of accelerating cosmic expansion, this new research has reopened the surprising — and slightly unsettling — option.

The journey to this dramatic conclusion started with our quest to map the cosmos, where we've focused on dark energy, the mysterious force that's pushing the universe apart at an accelerating rate. Recent data from the Dark Energy Survey (DES) and the Dark Energy Spectroscopic Instrument (DESI) mapped hundreds of millions of galaxies to probe this expansion. These crucial tools suggest, with extremely high confidence that the dark energy "equation of state" — its pressure-to-energy density relationship, which dictates its effect on expansion — isn't simply a static number. Instead, its influence appears to be changing over time.

This strange dynamic opens the door for alternative explanations for what dark energy might be made of . This has led to the axion dark energy (aDE) model, which proposes that dark energy comprises both an axion field, which would be an ultra-light form of dark matter that sloshes around the universe, plus a cosmological constant, or fixed background expansion baked into the structure of space-time.

In the new paper, which was uploaded to the preprint server arXiv, the researchers applied this hybrid model to DES measurements. They discovered that this combination likely can explain the DES and DESI results, but with a twist: In the far future of the universe, the interplay of the axion field and the cosmological constant actually actively pulls the universe back together, leading to that ultimate Big Crunch.

A scientific illustration showing a cylindrical shape on its side, with various stars and images inside, and labels along the bottom showing the timeline of the universe's evolution.

The standard model of cosmology suggests that cosmic expansion will continue to accelerate over time. However, if dark energy is dynamic, as some recent surveys hint, then the universe could one day reverse course and collapse on itself. (Image credit: ESA, CC BY-SA 3.0 IGO)

By taking the model that best matched observations and running the simulation forward in time, researchers calculated a precise moment of cosmic demise: 33.3 billion years from now. This dramatically shorter future contrasts sharply with the trillion-year lifespan often traditionally considered. Instead of cosmic expansion stretching the universe out like a lonely, eternal highway, we get a cosmic U-turn that takes us back to the start of our journey.

Related stories

This is fresh territory, and while evidence compels us, science always comes with caveats. The DES and DESI observations suggesting the cosmological constant isn't static are intriguing, but it still needs verification. This model depends on many variables, and several different combinations of them could still explain observations, though a negative cosmological constant ‪—‬ and a resulting Big Crunch ‪—‬ remains the most likely in their analysis.

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

More data is needed to rigorously test this model. The cosmos is a complicated beast; our understanding continually evolves. As we pursue increasing data streams, we piece together the greatest story ever told — but that story might end sooner than we expected.

Paul M. Sutter is a research professor in astrophysics at  SUNY Stony Brook University and the Flatiron Institute in New York City. He regularly appears on TV and podcasts, including  "Ask a Spaceman." He is the author of two books, "Your Place in the Universe" and "How to Die in Space," and is a regular contributor to Space.com, Live Science, and more. Paul received his PhD in Physics from the University of Illinois at Urbana-Champaign in 2011, and spent three years at the Paris Institute of Astrophysics, followed by a research fellowship in Trieste, Italy.