Neutron stars harbor some of the most extreme environments in the universe: their densities soar to several times those of atomic nuclei, and they possess some of the strongest gravitational fields of ...
Some of the universe’s densest objects can twist, stretch, and resonate in ways that challenge even the most seasoned ...
A new theoretical framework shows that tidal forces in inspiraling neutron star pairs can be described through oscillation modes, opening a new path to studying ultra-dense matter using gravitational ...
The final dance of a black hole and a neutron star before their ultimate merger has been revealed, according to new research.
Scientists analyzing a gravitational-wave signal have discovered that a neutron star and black hole spiraled together on an oval-shaped orbit just before merging. This unusual motion, detected in the ...
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Study suggests Hawking-like radiation could slowly evaporate stars
Physicists at Radboud University have outlined a theoretical model suggesting that compact stars and their remnants could, in principle, slowly lose mass through a Hawking-like radiation process even ...
A newly analyzed gravitational-wave event has revealed something unexpected about one of the Universe’s most violent encounters. Scientists have found the first strong evidence that a black hole and a ...
We all know how weird black holes are, but did you know there is another type of star that is just as strange? Welcome to the universe of neutron stars.
In 2020, astronomers discovered a violent cosmic event that has led them to rethink how extreme pairs of astronomical objects form. These pairs are capable of producing powerful cosmic collisions.
Add Yahoo as a preferred source to see more of our stories on Google. When you buy through links on our articles, Future and its syndication partners may earn a commission. Credit: Robert Lea (created ...
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