After initial classical molecular dynamics computations taking on the order of hours, vibronic spectra at nonzero ...
Researchers detail a new approach to quantum simulation of nuclei, achieving improved results with fewer qubits—using the ...
Matt Zajac joins The Bloch Quantum as a director of operations and strategic engagement, beginning September 1, 2026. The CQE ...
MulticoreWare expands its semiconductor engineering with the acquisition of Simulus Automation, bringing hardware design ...
QuPepFold is a Python package for hybrid quantum-classical protein folding simulations, designed to explore intrinsically ...
An unexplained signal detected by the world’s most sensitive dark matter experiment, could mark a major breakthrough in the ...
Can complex light-matter interactions reliably predict system behaviour during rapid change? A new analytical framework ...
Unitary protocols using copies of qubits approximate imaginary-time evolution, efficiently preparing low-energy states for ...
The CMS experiment observed, for the first time, leptons—electrons and muons—emitted from protons scattering off one another, ...
Monotones and Irreversibility Despite powerful quantum tools allowing seemingly impossible state changes, inherent limits to ...
Quantum computers threaten widely used cryptography, like RSA and elliptic curve cryptography—essential for blockchains—by solving currently hard problems.
Research from MIT & Motional shows explainable deep learning improves human prediction of what a vehicle will do, enhancing understanding of self-driving car behavior.