Positrons—the antimatter counterpart of electrons—are created in high-energy cosmic processes. When normal matter meets its ...
The afterglow of the study's subject, GRB 260310A, was one of the brightest observed in a decade.
A scientific team led by Facility for Rare Isotope Beams, or FRIB, has identified the origin of a mysterious excess of ...
Cosmic rays are high-energy charged particles, predominantly protons and atomic nuclei, that permeate the Galaxy. As they traverse the interstellar medium, they encounter gas, dust and photon fields, ...
First radio detection of polarized light and Faraday rotation in a gamma-ray burst reveals how magnetic fields shape these ...
Watch an animation of a black hole shooting jets of particles through a "collapsing star at nearly the speed of light" and ...
When massive stars die, they explode, leaving behind supernova remnants. Given how common binary star systems are - more than ...
The LHAASO observatory has detected gamma rays above 100 TeV from a gamma-ray binary for the first time, challenging current models of cosmic particle acceleration. (Nanowerk News) The Large High ...
Gamma-ray bursts are a relatively new field in space science. The first was discovered in the late 1960s, and in the nearly six decades since, there’s never been a discovery quite like this. It may ...
Multi-messenger astronomy of neutron star mergers unites gravitational-wave detections, electromagnetic observations across the spectrum and potential neutrino and cosmic-ray signals to probe the ...
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