Distinguishing between multiple quantum states becomes dramatically easier as the number of measurements increases ...
Immanuel Bloch wins the Wolf Prize for his work in quantum simulation, specifically controlling ultracold atomic systems.
Quantum physics-informed neural networks utilising exact symmetrization and randomised encoding now deliver the lowest ...
Until now, linking how quickly particles travel, root-mean-square ballistic transport, with whether they eventually return to ...
Can accurate modelling of complex physical systems previously require countless data points from sensors? This work ...
Previously, modelling even simple quantum systems demanded computational effort scaling with polylogarithmic factors, a major ...
Prior delayed-choice experiments typically selected only one beam splitter to observe photon behaviour. This work advances ...
Previously, determining how efficiently quantum processes could be simulated lacked definitive theoretical limits. Now, ...
Previously, reliable connections between quantum processors extended only as far as d+1 units; new hybrid networking ...
Below two spatial dimensions, standard classifications of how quantum particles react and move break down entirely.
Multi-qubit gate fidelities have now exceeded 9%, but further gains are not coming from better circuits alone. Instead, ...
Calculations matching Stark shifts between theories to 45 significant figures were previously unattainable. New work confirms ...