Scientists published the Cascaded Variational Quantum Eigensolver (CVQE) algorithm in a recent article, expected to become a powerful tool to investigate the physical properties in electronic systems.
Quantum HPC co-location isn't necessary for most hybrid algorithms, a cross-lab study by AWS, NVIDIA, Lawrence Berkeley ...
For the past six years, Los Alamos National Laboratory has led the world in trying to understand one of the most frustrating barriers that faces variational quantum computing: the barren plateau.
BEIJING, June 8, 2026 /PRNewswire/ -- WiMi Hologram Cloud Inc. (NASDAQ: WiMi) ("WiMi" or the "Company"), a leading global Hologram Augmented Reality ("AR") Technology provider, is exploring ...
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German firm debuts first 100+ qubit diamond-based quantum processors
German company SAXON Q has built a high-powered “quantum computer” that doesn’t need a ...
Variational quantum algorithms (VQAs) have attracted a lot of attention from the quantum computing community for the last few years. Their hybrid quantum-classical nature with relatively shallow ...
Quantum processors run at room temperature, fit into server racks, need no cooling, and support AI, chemistry, materials ...
SAXON Q, a pioneer in diamond-based nitrogen-vacancy (NV) quantum computing, has announced commercial availability of the 128-qubit SXQ128 and 512-qubit SXQ512 – the first diamo ...
U.S. Naval Research Laboratory (NRL) scientists have published the Cascaded Variational Quantum Eigensolver (CVQE) algorithm in a recent Physical Review Research article. The algorithm is expected to ...
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