用于多路多量子位读出的可调谐LC谐振器

Llorenç Fanals, E. Alarcon, Imran Bashir, E. Blokhina, Dirk R. Leipold, R. Staszewski
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引用次数: 0

摘要

本文提出使用可调谐$LC$谐振器以多路复用方式读取量子位阵列,通过使目标量子位的色散位移占主导地位。腔和电路电动力学(QED)理论证明了这一观点。可调谐电容器阵列与超导电感并联,旨在通过频率范围乘积($Q\cdot\Delta\omega$)最大化质量因子。这种方法只需要一个射频信号就可以测量多个量子位,有利于量子计算的扩展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Tunable $LC$ resonator for multiplexed multi-qubit readout
This paper proposes the use of a tunable $LC$ resonator to read an array of qubits in a multiplexed fashion, by making the dispersive shift of the targeted qubit dominant. Cavity and circuit electrodynamics (QED) theory is shown to support this idea. The tunable capacitor array, in parallel with a superconducting inductance, is designed to maximize the quality factor by frequency range product, $Q\cdot\Delta\omega$. This approach only requires one RF signal to measure multiple qubits, which can facilitate quantum computing scaling.
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