Astrophysics news, articles and features | New 女生小视频 /topic/astrophysics/ Science news and science articles from New 女生小视频 Thu, 23 Jul 2026 14:27:34 +0000 en-US hourly 1 https://wordpress.org/?v=7.0.2 242057827 We now know how a black hole can be flung across the universe /article/2580928-we-now-know-how-a-black-hole-can-be-flung-across-the-universe/?utm_campaign=RSS|NSNS&utm_content=astrophysics&utm_medium=RSS&utm_source=NSNS Fri, 24 Jul 2026 09:00:00 +0000 /article/2580928-auto-draft/ 2580928 We still don’t know how black holes get so big | Becky Smethurst /video/2580686-we-still-dont-know-how-black-holes-get-so-big-becky-smethurst/?utm_campaign=RSS|NSNS&utm_content=astrophysics&utm_medium=RSS&utm_source=NSNS Wed, 22 Jul 2026 17:00:00 +0000 /video/2580686-auto-draft/

In the centre of our galaxy sits a monster 4.3 million times the mass of the sun. But Sagittarius A* is tiny compared with other black holes in the universe, with some reaching up to 40 billion times the mass of the sun. They are the point where our laws of physics break, and how these giants get so big has puzzled scientists for decades.

Becky Smethurst is an astrophysicst at the University of Oxford and her work looks at how these behemoths affect the galaxy around them. New 女生小视频‘s digital features editor, Jacklin Kwan, sat down with her to discuss what black holes are, how the supermassive ones get so big and Smethurst’s amazing career.

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The hidden pockets of the universe where the future can cause the past /article/2526781-the-hidden-pockets-of-the-universe-where-the-future-can-cause-the-past/?utm_campaign=RSS|NSNS&utm_content=astrophysics&utm_medium=RSS&utm_source=NSNS Mon, 18 May 2026 08:00:40 +0000 /?post_type=article&p=2526781 2526781 Black hole stars really do exist in the early universe /article/2508512-black-hole-stars-really-do-exist-in-the-early-universe/?utm_campaign=RSS|NSNS&utm_content=astrophysics&utm_medium=RSS&utm_source=NSNS Mon, 22 Dec 2025 10:00:37 +0000 /?post_type=article&p=2508512 2508512 A distant galaxy is being strangled by the cosmic web /article/2503265-a-distant-galaxy-is-being-strangled-by-the-cosmic-web/?utm_campaign=RSS|NSNS&utm_content=astrophysics&utm_medium=RSS&utm_source=NSNS Fri, 07 Nov 2025 16:00:45 +0000 /?post_type=article&p=2503265 2503265 Is the expansion of the universe slowing down? /article/2503263-is-the-expansion-of-the-universe-slowing-down/?utm_campaign=RSS|NSNS&utm_content=astrophysics&utm_medium=RSS&utm_source=NSNS Thu, 06 Nov 2025 02:38:21 +0000 /?post_type=article&p=2503263
The Tycho supernova remnant
NASA/CXC/RIKEN & GSFC/T. Sato et al; DSS

It is widely thought that our universe is expanding at an ever-accelerating rate. But could we have that wrong? That is what a group of scientists from South Korea claims, but other scientists have major concerns about the work.

Our universe has been expanding since the big bang 13.8 billion years ago. Several strands of evidence, including observations of distant dying stars called type Ia supernovae, have suggested that this expansion is accelerating. One of the main explanations for the driver of this acceleration is a mysterious force called dark energy, the discovery of which won the 2011 Nobel prize in physics.

at Yonsei University in South Korea and his colleagues now say this might be wrong. Type Ia supernovae are caused when the remnant core of a star like our sun, known as a white dwarf, explodes in a binary system. Astronomers use these 鈥standard candles鈥 as trustworthy measurements of distance across the cosmos because they are thought to be uniformally bright.

But Lee and his team say the brightness varies strongly with the age of the stars, based on their analysis of 300 host galaxies. They say that distant supernovae may appear to be fainter than expected and this is usually put down to the accelerating expansion of the universe, but, once this 鈥渁ge bias鈥 is taken into account, the accelerating expansion disappears.

Instead, Lee says their findings suggest the expansion of the universe began decelerating 1.5 billion years ago, and could even reverse in the future, a scenario called the 鈥渂ig crunch鈥 in which the universe could end in a reverse big bang. Previously, he says, 鈥渁 big crunch was out of the question. But now it is a possibility.鈥

at the Space Telescope Science Institute in Maryland, one of the recipients of the 2011 Nobel prize in physics, disagrees with that claim, pointing to earlier work by the group in 2020 that had been refuted. 鈥淭he same group鈥檚 new work repeats the argument with little change,鈥 he says, noting that making measurements of stellar ages for type Ia supernovae at large distances is very difficult. He says Lee鈥檚 team used a mean stellar age derived from the host galaxy. 鈥淭he theory behind this is weak because of a lack of certainty about how the [star] forms,鈥 says Riess.

There are known issues with how age affects the brightness of type Ia supernovae across the universe, says at the University of Southampton, UK, but these are already accounted for in measurements of dark energy. 鈥淚鈥檓 very sceptical this will lead to a decelerating universe,鈥 he says.

Upcoming observations with the Vera C. Rubin Observatory in Chile are expected to greatly expand the number of known type Ia supernovae in the universe, from the thousands catalogued today to tens of thousands. That will allow us to 鈥渕ap the expansion history鈥 of the universe much further back in time, says Sullivan, potentially ruling out the claims from Lee鈥檚 team.

The exact nature of dark energy, however, remains mysterious. Earlier this year, results from the Dark Energy Spectroscopic Instrument survey indicated that dark energy might not be a constant force, but could vary over time. While that wouldn鈥檛 mean the universe was decelerating right now, it might suggest that the expansion rate has changed over the history of the universe.

鈥淭he needle is pointing a lot more to dark energy being some kind of dynamical thing, not a cosmological constant,鈥 says at Queen Mary University of London. 鈥淓xactly what that is, I think, is a really interesting question.鈥

Journal reference

Monthly Notices of the Royal Astronomical Society

Jodrell Bank with Lovell telescope

Mysteries of the universe: Cheshire, England

Spend a weekend with some of the brightest minds in science, as you explore the mysteries of the universe in an exciting programme that includes an excursion to see the iconic Lovell Telescope.

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The end of US support for the CMB-S4 telescope is devastating /article/2501480-the-end-of-us-support-for-the-cmb-s4-telescope-is-devastating/?utm_campaign=RSS|NSNS&utm_content=astrophysics&utm_medium=RSS&utm_source=NSNS Wed, 29 Oct 2025 18:00:00 +0000 http://mg26835670.100 2501480 Quantum-inspired algorithm could help reveal hidden cosmic objects /article/2501892-quantum-inspired-algorithm-could-help-reveal-hidden-cosmic-objects/?utm_campaign=RSS|NSNS&utm_content=astrophysics&utm_medium=RSS&utm_source=NSNS Tue, 28 Oct 2025 20:46:45 +0000 /?post_type=article&p=2501892 2501892 There is an odd streak in the universe 鈥 and we still don鈥檛 know why /article/2498128-there-is-an-odd-streak-in-the-universe-and-we-still-dont-know-why/?utm_campaign=RSS|NSNS&utm_content=astrophysics&utm_medium=RSS&utm_source=NSNS Fri, 03 Oct 2025 15:00:27 +0000 /?post_type=article&p=2498128 2498128 How faster-than-light explosions could reveal the universe鈥檚 secrets /article/2495828-how-faster-than-light-explosions-could-reveal-the-universes-secrets/?utm_campaign=RSS|NSNS&utm_content=astrophysics&utm_medium=RSS&utm_source=NSNS Wed, 24 Sep 2025 15:00:24 +0000 /?post_type=article&p=2495828 2495828