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, ...
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 ...
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 ...
The bigger the quantum superposition, the bigger the proverbial Schrödinger's cat. (dennisvdw/iStockphoto/Getty Images) ...