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November 3, 2023
PhD-position (f/m/d) job in Heidelberg, Baden-Württemberg (DE) with Max Planck Institute for Nuclear Physics (MPIK). Apply Today.
September 12, 2023
Researchers have proven the viability of a new method to measure neutrino mass. Yale physicists Karsten Heeger and Talia Weiss discuss the discovery.
August 3, 2023
Despite proliferating the universe, dark matter has remained elusive. Scientists are starting to think that’s because it’s made of “fuzzy” little axions.
July 17, 2023
A team of researchers suggests the space observatory just spotted "dark stars"—theoretical stellar objects powered by dark matter.
June 19, 2023
Researchers propose in a new study that the universe's lack of clumpiness suggests dark matter is composed of hypothetical, ultra-light particles called axions. If confirmed, this could have broad implications for our understanding of the universe and could even provide support for string theory.
June 15, 2023
Toronto, Canada (SPX) Jun 15, 2023 - In a study published in the Journal of Cosmology and Astroparticle Physics, researchers at the University of Toronto reveal a theoretical breakthrough that may explain both the nature of invisible d
June 15, 2023
In a study published today in the Journal of Cosmology and Astroparticle Physics, researchers at the University of Toronto reveal a theoretical breakthrough that may explain both the nature of invisible dark matter and the large-scale structure of the universe known as the cosmic web. The result establishes a new link between these two longstanding problems in astronomy, opening new possibilities for understanding the cosmos. The research suggests that the "clumpiness problem," which c...
June 3, 2023
New theoretical research has shown that Stephen Hawking was likely right about black holes, although not completely. Due to Hawking radiation, black holes will eventually evaporate, but the event horizon is not as crucial as had been believed. Gravity and the curvature of spacetime cause this radiation too. This means that all large objects in the universe, like the remnants of stars, will eventually evaporate.
June 2, 2023
New theoretical research by Michael Wondrak, Walter van Suijlekom and Heino Falcke of Radboud University has shown that Stephen Hawking was right about black holes, although not completely. Due to Hawking radiation, black holes will eventually evaporate, but the event horizon is not as crucial as had been believed. Gravity and the curvature of spacetime cause this radiation too. This means that all large objects in the universe, like the remnants of stars, will eventually evaporate.