Stevens Institute, Hoboken, reports the universal identity P²+K²=1, uniting polarization with entanglement across setups and ...
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Quantum walks explained, and why they could change everything
Quantum walks sound abstract, but they sit at the center of a very concrete race: who will harness quantum mechanics to solve problems that overwhelm today’s most powerful supercomputers. Instead of ...
Most of today's quantum computers rely on qubits with Josephson junctions that work for now but likely won't scale as needed ...
Superionic water—the hot, black and strangely conductive form of ice that exists in the center of distant planets—was ...
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Quantum computing stocks: D-Wave to acquire Quantum Circuits in $550M deal
D-Wave Quantum announced the acquisition of Quantum Circuits for $550 million, continuing a takeover spree among quantum ...
A research team from Peking University has successfully developed a vanadium oxide (VO₂)-based “locally active memristive ...
Semi-Physics-Based SiC MOSFET Circuit Simulation Model Capable of Extrapolation to High Temperatures
Abstract: In this study, a SiC MOSFET circuit simulation model capable of predicting ultrahigh-temperature operation, including short-circuit conditions, was developed. A fundamental structure ...
Sharma, Fu, and Ansari et al. developed a tool for converting plain-text instructions into photonic circuit designs with the ...
Recently, a research team led by Academician Lijun Wang at CIOMP under UCAS has systematically reviewed the latest ...
Abstract: Physics-informed neural networks (PINNs) have great potential for flexibility and effectiveness in forward modeling and inversion of seismic waves. However, coordinate-based neural networks ...
Ultracold atoms have successfully mimicked a fundamental quantum effect normally found in electronic circuits.
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