A new study reveals that highly disordered indium oxide superconductors undergo a first-order quantum phase transition — a sudden shift from a superconducting to an insulating state. This finding is ...
Add Yahoo as a preferred source to see more of our stories on Google. In a groundbreaking discovery, a team of researchers at the Rice University have reported the first direct observation of a ...
Charge density waves are a central feature of many quantum materials and often coexist or compete with other electronic ...
Back in 2019, Google made waves by claiming it had achieved what has been called “quantum supremacy”—the ability of a quantum computer to perform operations that would take a wildly impractical amount ...
A team of Rice University researchers reported the first direct observation of a surprising quantum phenomenon predicted over half a century ago, opening pathways for revolutionary applications in ...
Quantum phase transitions and topological phases constitute a vibrant domain within condensed matter physics. Unlike classical transitions driven by thermal fluctuations, quantum phase transitions ...
Researchers report a field-tuned quantum phase transition in a disordered iron-based alloy family, TiFexCu2x−1Sb. Thermodynamic and transport measurements reveal a quantum critical point near 0.13 ...
SHENZHEN, China, Feb. 20, 2025 /PRNewswire/ -- MicroCloud Hologram Inc. (NASDAQ: HOLO), ("HOLO" or the "Company"), a technology service provider, they focuses on the in-depth exploration of the ...
Quantum phase transitions describe abrupt changes in the ground state of a quantum system at absolute zero when a control parameter is varied. They are distinguished from classical phase transitions ...
A new study in Nature describes both the mechanism and the material conditions necessary for superfluorescence at high temperature. A new study in Nature describes both the mechanism and the material ...
The Ethereum Foundation has elevated post-quantum cryptography to a top priority and formed a dedicated PQ team.