In new quantum computer design, qubits use magnets to communicate selectively
The researchers demonstrated that qubits (represented by the spheres and arrows) can “communicate” with each other using a magnet (represented ...
The researchers demonstrated that qubits (represented by the spheres and arrows) can “communicate” with each other using a magnet (represented ...
(a) Device geometry including the gate electrodes (labeled G1–G8), the donor ionic plane, and an example of the disorder potential ...
An illustration of the energy exchanges taking place during the experiment. Credit: N. Belabas/ I. Maillette de Buy Wenniger/ A. ...
Conceptual illustration of the entangled Skyrmion topology. Each photon contributes to the emerging topology which exists only as a combined ...
Arbitrary logic state preparation protocol. Top panel: The surface code is divided into 5 regions, the central data qubit, regions ...
Individual physical qubits, like rubidium atoms, are notoriously fragile and easily disrupted by interactions with their environment. To minimize errors, ...
Cylindrical microstructures formed by a photoresist doped with different proportions of nanodiamond are presented in these scanning electron microscope images. ...
Laser setup to cool, control and entangle individual molecules. Credit: Richard Soden, Department of Physics, Princeton University For the first ...
Figure describing the mechanism in the context of the double slit paradigm. Credit: Jiang et al., Physical Examination Letters (2023). ...
The image depicts an experiment in which heavy particles (represented by the moon) cause an interference pattern (a quantum effect), ...
© 2023 Manhattan Tribune -By Millennium Press
© 2023 Manhattan Tribune -By Millennium Press