Physics - Dark Matter Goes Down to the Wire
A superconducting nanowire detector places new bounds on how a hypothetical lightweight dark matter particle interacts with electrons.
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A superconducting nanowire detector places new bounds on how a hypothetical lightweight dark matter particle interacts with electrons.
Experiments suggest that hydrogen bonding explains why a wet surface can have nearly twice as much friction as a dry surface.
Computations support the 30-year-old idea that supercooled liquid water can undergo a transition between high- and low-density states.
Fusion researchers received an early holiday present with the confirmed measurement of a laser-induced fusion reaction that produced more energy than it consumed.
Solar neutrinos are no longer the “stars” of neutrino research, but next-generation experiments characterizing these neutrinos may deepen our understanding of solar and neutrino physics.