Tohoku University and Fujitsu Limited have successfully used AI to derive new insights into the superconductivity mechanism ...
Using ultracold atoms and laser light, researchers recreated the behavior of a Josephson junction—an essential component of ...
Abstract: This work presents a novel security attack based on CNOT gate induced crosstalk in superconducting qubit systems. Compared to previous work, this work introduces a double-sided crosstalk ...
In order to scale quantum computers, more qubits must be added and interconnected. However, prior attempts to do this have ...
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Google’s quantum processor could perform 1,000 times better with Princeton’s new qubit
Simply swapping the Princeton-built qubit into Google’s best quantum processor, Willow, would improve its performance by ...
Another mega-round for a quantum computing company? This feels like a phase shift in the quantum computing ecosystem as ...
Abstract: Hardware crosstalk in multi-tenant superconducting quantum computers poses a severe security threat, allowing adversaries to induce targeted errors across tenant boundaries by injecting ...
If quantum computing is going to become an every-day reality, we need better superconducting thin films, the hardware that ...
Researchers made iron telluride into a superconducting thin film by reducing crystal distortion, enabling use in quantum chips at very low temperatures. (Nanowerk News) If quantum computing is going ...
Scientists at the RIKEN Center for Emergent Matter Science (CEMS) in Japan have discovered a way to make a superconducting ...
Quantware has solved the fanout problem for superconducting quantum computers. They are making breakthroughs that can scale quantum computers to millons of qubits by 2029. They are at the Q2B silicon ...
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