Uncovering the Hidden Disorder in Silicon Quantum Computers
Insider Brief PRESS RELEASE — Qubits are the quantum counterpart to the bits used in conventional computers. Bits have a “0” and “1” state that is defined by electric charge. In a...
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Insider Brief PRESS RELEASE — Qubits are the quantum counterpart to the bits used in conventional computers. Bits have a “0” and “1” state that is defined by electric charge. In a...
Insider Brief PRESS RELEASE — A truly useful quantum computer must be able to run any algorithm at all, with the same versatility an ordinary laptop offers. Physicists have now sho...
Companies are making sure we have a surplus of options for building qubits.
Insider Brief MIT researchers have designed a quantum computing component that simulations suggest could perform faster operations while preserving stored information. It’s an adva...
What if one qubit could store information reliably while interacting rapidly with the rest of a quantum processor? MIT researchers have proposed an architecture. Researchers at MIT...
Немецкая компания Saxon Q объявила о коммерческом запуске квантовых компьютеров SXQ128 и SXQ512 — соответственно на 128 и 512 физических кубитах. Разработчики называют их первыми с...
Источник: Компьютерра - Журнал о науке и технологиях Немецкая компания SAXON Q объявила о коммерческом запуске квантовых процессоров SXQ128 и SXQ512 на основе алмазных центров азо...
Researchers demonstrated that braiding and fusing particles known as non-Abelian anyons can perform every operation required by a quantum computer. A quantum computer becomes broad...
Inside a chip no wider than a fingernail, a quantum computer is storing information as tiny vibrations, a breakthrough that could reshape how these machines are built. A quantum co...
Can a silicon chip handle complex quantum states without relying on conventional multi-photon resources? A programmable photonic approach offers another route. Sizhen Chip Technolo...
German quantum computing startup SAXON Q has announced the commercial release of the SXQ128 (128 qubits) and the SXQ512 (512 qubits), marking the first diamond-based nitrogen-vacan...
Источник: Компьютерра - Журнал о науке и технологиях Исследователи из Англии предложили необычную альтернативу привычным квантовым элементам. Вместо сверхпроводящих цепей — которы...
Hefei-based Guizhen Chip Technology, working with USTC's Ren Xifeng group, has demonstrated on-chip generation of a 4-photon 16-qubit GHZ state and a 4-qubit cluster state, with Gr...
Conceptual illustration of the proposed approach and circuit. Chinese startup Hefei Guizhen Chip Technology Co., Ltd. (硅臻芯片), in collaboration with Professor Ren Xifeng's team...
MIT and University of Ferrara researchers created a mathematical blueprint for designing distinguishable non-Gaussian quantum states. Researchers worldwide are working to develop q...
The team employed a quantum material and chip architecture that could be key in scaling quantum computers to one million qubits.
Insider Brief Quantum computing emerged with a promise of mythic proportions: machines capable of solving, in seconds, problems that would take today’s supercomputers millennia to...
This podcast also explores the intersection of general relativity and quantum information The post Quarks and qubits: how quantum computing could transform particle physics appeare...
Insider Brief Hefei Sizhen Chip Technology Co., Ltd. and the research group of Professor Ren Xifeng at the Key Laboratory of Quantum Information, University of Science and Technolo...
Quantum software and materials discovery company OTI Lumionics, in collaboration with the Samsung Advanced Institute of Technology (SAIT), has published research benchmarking its p...
Insider Brief Press release – Imec, a world-leading research and innovation hub for advanced semiconductor technologies, and Diraq, a pioneer of silicon-based quantum computing, to...
Insider Brief IBM and IonQ use very different physical systems to build quantum computers. IBM uses superconducting circuits that must be cooled to extremely low temperatures, whil...
Insider Brief PRESS RELEASE — Quantum computers are being built in several ways: superconducting circuits, trapped ions, neutral atoms, semiconductor spins and photonics. Photonic...
Физики впервые на практике реализовали способ создания квантовой запутанности между двумя удалёнными кубитами, который теоретики предложили ещё в 2004 году. Речь идёт не о новом до...
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