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Josephson parametric phase-locked oscillator and its application to dispersive readout of superconducting qubits

机译:约瑟夫森参数锁相振荡器及其在超导量子位色散读出中的应用

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摘要

The parametric phase-locked oscillator (PPLO) is a class of frequency-conversion device, originally based on a nonlinear element such as a ferrite ring, that served as a fundamental logic element for digital computers more than 50 years ago. Although it has long since been overtaken by the transistor, there have been numerous efforts more recently to realize PPLOs in different physical systems such as optical photons, trapped atoms, and electromechanical resonators. This renewed interest is based not only on the fundamental physics of nonlinear systems, but also on the realization of new, high-performance computing devices with unprecedented capabilities. Here we realize a PPLO with Josephson-junction circuitry and operate it as a sensitive phase detector. Using a PPLO, we demonstrate the demodulation of a weak binary phase-shift keying microwave signal of the order of a femtowatt. We apply PPLO to dispersive readout of a superconducting qubit, and achieved high-fidelity, single-shot and non-destructive readout with Rabi-oscillation contrast exceeding 90%.
机译:参数锁相振荡器(PPLO)是一类频率转换设备,最初基于诸如铁氧体环之类的非线性元件,在50多年前,它已成为数字计算机的基本逻辑元件。尽管它早已被晶体管所取代,但最近人们进行了许多努力来在不同的物理系统中实现PPLO,例如光学光子,捕获的原子和机电谐振器。这种新的兴趣不仅基于非线性系统的基本物理原理,而且还基于实现具有空前能力的新型高性能计算设备。在这里,我们实现了具有约瑟夫森结电路的PPLO,并将其用作灵敏的鉴相器。使用PPLO,我们演示了对飞秒量级的微弱二进制移相键控微波信号的解调。我们将PPLO应用于超导量子位的色散读出,并实现了高保真,单发和无损读出,Rabi振荡对比度超过90%。

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