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A superradiant clock phase emerges when Rydberg atoms meet quantum light, simulations suggest
Rydberg atoms are atoms with one or more outer electrons excited to very high energy levels, which interact very strongly ...
Morning Overview on MSN
Wild new phase of time emerges as Rydberg atoms meet quantum light
Researchers at Chongqing University and Chongqing Normal University report a theoretical prediction of a new quantum phase of ...
Magnetic materials in a quantum spin liquid phase are of great interest in the pursuit of exotic state of matter and quantum ...
Quantum computers need special materials called topological superconductors—but they’ve been notoriously difficult to create. Researchers have now shown they can trigger this exotic state by subtly ...
When mobile charge carriers, also known as itinerant electrons, interact with the strong exchange magnetic fields associated ...
Quantum phase transitions represent fundamental changes between distinct quantum states of matter, driven not by thermal fluctuations but by quantum fluctuations at zero temperature. These transitions ...
Quantum phase transitions and topological phases constitute a vibrant domain within condensed matter physics. Unlike classical transitions driven by thermal fluctuations, quantum phase transitions ...
A team in China has demonstrated the simultaneous teleportation of multiple sideband qumodes in a continuous-variable system, overcoming a longstanding technical barrier.
A pair of photons enters an optical maze, and sometimes they leave as something new. Not new in the everyday sense, since both were still photons when they came out.
Light does not “think” in any human sense. Still, under the right conditions, it can behave in a way that looks uncannily ...
Overview: Quantum computing has generated massive excitement for its potential to solve complex problems beyond the reach of classical computers.However, techni ...
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