Quantum computers have the potential to model new molecules and weather patterns better than any computer today. They may ...
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MIT scientists get first ‘direct view’ of exotic superconductivity in twisted graphene
New findings show that the superconducting gap in MATTG has a unique V-shape, confirming an unconventional mechanism.
In this week’s edition of The Prototype, we look at why AI models struggle with finance, a revolutionary superconducting ...
NVIDIA NVQLink NVIDIA NVQLink is an open system architecture for tightly coupling the extreme performance of GPU computing ...
Quantum computing is set to redefine data security, AI, and cloud infrastructure. This in-depth research explores how post-quantum cryptography, quantum AI acceleration, and hybrid quantum-cloud ...
Quantum computing is fast emerging as the next frontier in IT. Here are three Indian tech majors positioning themselves to ...
Explore Google's breakthrough in quantum advantage, showcasing its Willow processor's ability to outperform supercomputers in ...
By removing the steep learning curve of quantum programming, its platform lets anyone—from students to software engineers—run ...
US labs join forces Nvidia has lifted the kimono on NVQLink, a new open system architecture that connects quantum processors ...
By linking quantum and GPU computing, researchers can now run large-scale simulations and hybrid workloads more efficiently.
MIT researchers uncovered clear evidence of unconventional superconductivity in magic-angle twisted trilayer graphene.
NVIDIA collaborated with researchers from the Department of Energy's national laboratories to develop the NVQLink platform.
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