Physicists have uncovered how direct atom-atom interactions can amplify superradiance, the collective burst of light from ...
A team of researchers at the Max Planck Institute for Physics in Munich has turned to an unconventional substance in the hunt ...
The possibility that our entire universe merely exists inside a computer simulation is more than an idle science fiction ...
The experiment at CERN produced pairs of electron and positron beams, propagating into an ambient plasma. The international ...
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The hunt for dark matter: a trivia quiz
From galaxy rotation curves that defy Newton's laws to gravitational lensing that bends light in eerie ways, scientists have ...
Radio astronomy opened up the universe for scientists. They could map new elements across galaxies and also search for ...
Researchers uncover how the surface structure of silver iodide at the atomic scale triggers ice formation in clouds, ...
An international team of scientists, led by the University of Oxford, has achieved a world-first by creating plasma 'fireballs' using the Super Proton ...
Researchers at CERN may be on the verge of explaining the universe’s missing gamma rays and hidden magnetic fields.
MIT scientists used radium monofluoride atom to observe electrons entering atomic nuclei, revealing new details of nuclear magnetism.
Gravity and quantum physics interact at the event horizons of black holes, though physicists don’t understand all the details. A new theoretical study has proposed that very small black holes, dubbed ...
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