Quantum battery research proved an inescapable trade-off: the more quantum entanglement a design uses to boost charging power ...
Researchers used 13 trapped ions to simulate string breaking, showing how quantum hardware could help scientists explore ...
Simulating the non-equilibrium dynamics of quantum field theories in nature is generally intractable with classical methods, but is a promising application for quantum computers. Unfortunately, ...
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Mapping one atom's interaction with light uncovers an unbounded network of quantum states
A new graph-theoretic framework provides a unified description of atom-light interactions across regimes ranging from weak to ...
Quantum batteries are an emerging area of research, with progress coming from theoretical studies and proof-of-principle ...
Simulating the fundamental forces of nature on a computer is one of the grand challenges of modern physics, and a team at the ...
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Physicists put Einstein's 'happiest thought' to the test, uniting relativity and quantum mechanics
Physicists have proven a 100-year-old prediction of relativity by showing that Einstein's equivalence principle holds at quantum scales.
In neutral dense electron–hole systems at low temperatures, theory predicted Cooper-pair-like excitons exist at the Fermi energy and form a Bardeen–Cooper–Schrieffer-like condensate. Optical ...
A team led by University at Buffalo physicists has found a mathematical solution that shows how a frustrated quantum magnet ...
Physicists searching through Large Hadron Collider data found no evidence that the machine has been producing microscopic ...
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Physicists created a record-breaking Schrödinger's cat with some of the weirdest atoms in ...
The bigger the quantum superposition, the bigger the proverbial Schrödinger's cat. (dennisvdw/iStockphoto/Getty Images) ...
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