ZME Science on MSN
A Gigantic Spinning Filament of 14 Galaxies Could Be the Largest Rotating Structure Ever Found
Razor-thin chain of 14 galaxies may be the biggest spinning structure yet ...
ZME Science on MSN
AI Just Helped Scientists Simulate Every Star in the Milky Way—All 100 Billion of Them
Using artificial intelligence, researchers at the RIKEN Center for Interdisciplinary Theoretical and Mathematical Sciences, ...
AZoQuantum on MSN
New Code Bridges Gap in Dark Matter Simulation
Researchers at Perimeter Institute are now delving deeper into how a specific dark matter candidate, known as ...
This animation shows the simulated evolution of a galaxy over 200 million years. While the simulations look very similar with and without the machine learning AI model, the AI model performed 4 times ...
Two for two! A duo of interacting galaxies commemorates the second science anniversary of NASA's James Webb Space Telescope, which takes constant observations, including images and highly detailed ...
Using one of the most powerful supercomputers in the world to simulate the halo of dark matter that envelopes our galaxy, researchers found dense clumps and streams of the mysterious stuff lurking in ...
When you buy through links on our articles, Future and its syndication partners may earn a commission. "El Gordo" one of the most cluster of galaxies known to exist, which has strange properties that ...
A USC-led research team has created a series of supercomputer-simulated twins of our Milky Way galaxy—which could help scientists unlock new answers about one of the biggest mysteries in the universe: ...
"We already see indications of cracks in the standard model." Are we living in a simulation? Well, the jury's out on that one. But humans do create simulations all the time. In fact, the Euclid ...
If true, this would challenge a fundamental framework of cosmology. When you purchase through links on our site, we may earn an affiliate commission. Here’s how it works. Strange behavior in a massive ...
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Quantum simulator realizes strongly interacting Mott-Meissner phases in bosonic flux ladders
When exposed to periodic driving, which is the time-dependent manipulation of a system's parameters, quantum systems can exhibit interesting new phases of matter that are not present in ...
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