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Efficient, High-Speed Two-Photon Logic Gates at Room Temperature for General-Purpose Quantum Information Processing

机译:室温下高效的高速双光子逻辑门,用于通用量子信息处理

摘要

A two-photon logic gate introduces a phase shift between two photons using a Q-switched cavity with some nonlinearity. The two-photon logic gate catches photons in and releases photons from de-coupled cavity modes in response to electronic or photonic control signals. This “catch-and-release” two-photon gate can be formed in semiconductor photonic integrated circuit (PIC) that operates at room temperature. When combined with sources, linear circuits, other logic gates, and detectors, it can be used to make a quantum computer with up to 1000 error-corrected logical qubits on a cm2 PIC, with full qubit connectivity to avoid overhead. Two-qubit gate fidelity exceeding 99% is possible with near-term technology, and scaling beyond 99.9% is possible. Two-photon logic gates are also suitable for gate-based quantum digital computing and for analog quantum computing schemes, such as adiabatic quantum computing or quantum annealing.
机译:双光子逻辑门使用具有某些非线性的Q开关腔在两个光子之间引入相移。双光子逻辑门响应于电子或光子控制信号,捕获光子并从解耦腔模式中释放光子。可以在室温下工作的半导体光子集成电路(PIC)中形成这种“捕获并释放”的双光子栅极。当与源,线性电路,其他逻辑门和检测器结合使用时,它可以用于制造在cm 2 PIC上具有多达1000个经过纠错的逻辑量子位的量子计算机,具有完整的量子位连通性避免开销。利用近期技术,两个量子比特的门极保真度可能超过99%,并且缩放比例可能超过99.9%。两光子逻辑门也适用于基于门的量子数字计算和模拟量子计算方案,例如绝热量子计算或量子退火。

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