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- Physicists reveal a new quantum state where electrons run . . .
Physicists reveal a new quantum state where electrons run wild Date: November 17, 2025 Source: Florida State University Summary: Electrons can freeze into strange geometric crystals and then melt
- Physicists reveal a quantum state where electrons run wild
Physicists have unveiled a new quantum state, a realm where electrons behave in a way previously unseen This breakthrough, announced on November 17, 2025, marks a significant stride in the
- Quantum pinball state of matter in electrons allows both . . .
This phenomenon makes possible new technologies in quantum computing, advanced superconductivity for energy and medical imaging, lighting, and highly precise atomic clocks
- Physicists Just Mapped the Hidden Quantum World of Electrons
For the first time, scientists have successfully measured the quantum state of electrons released from atoms after absorbing high-energy light pulses This breakthrough was made possible by a new measurement technique developed by researchers at Lund University in Sweden
- Physicists reveal a new quantum state where electrons run . . .
This unusual behavior provides scientists with valuable insight into how electrons interact and has opened the door to advances in quantum computing, high-performance superconductors used in energy and medical imaging, innovative lighting systems, and extremely precise atomic clocks
- Physicists Reveal a New Quantum State Where Electrons Run . . .
ScienceDaily reports: Electrons can freeze into strange geometric crystals and then melt back into liquid-like motion under the right quantum conditions Researchers identified how to tune these transitions and even discovered a bizarre "pinball" state where some electrons stay locked in place whi
- Unconventional Fractional Phases in Multiband Vortexable Systems
We show that even in the ideal quantum geometry limit, moir ́e flat band systems can exhibit physical phenomena fundamentally different from Landau levels without lattices In particular, we find new fractional quantum Hall states emerging from multiband vortexable systems, where multiple exactly flat bands appear at the Fermi energy
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