On the Resonances of Coupled Qubit–Cavity Systems

Eashwar N. Sivarajan
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Abstract

We consider a system consisting of a qubit and a microwave transmission line that are coupled by a capacitor which, in turn, is modulated sinusoidally. The Unruh effect is the simultaneous production from vacuum of a pair of photons, one in the qubit and the other in the cavity. The dynamical Casimir effect is the production from vacuum of a pair of photons in the cavity. We analyze this qubit–cavity system and show that the system can be viewed as a pair of coupled quantum-mechanical oscillators and that both the Unruh effect and the dynamical Casimir effect are resonances of this coupled oscillator system. For the case where the cavity supports two propagating modes, in addition to the Unruh and dynamical Casimir effect at each of the supported modes, we predict a “paired Casimir effect,” where one photon is emitted in the cavity in each of two allowed modes, at the appropriate driving frequency. We also calculate analytical approximations to the driving frequencies for all three effects.
耦合量子位-腔系统的共振
我们考虑一个由量子比特和微波传输线组成的系统,它们由一个电容器耦合,而电容器又被正弦调制。Unruh效应是指真空中同时产生一对光子,一个在量子比特中,另一个在腔中。动态卡西米尔效应是真空中一对光子在腔内产生的效应。我们分析了该量子位-腔系统,表明该系统可以看作一对耦合的量子力学振子,并且Unruh效应和动力学卡西米尔效应都是该耦合振子系统的共振。对于腔体支持两种传播模式的情况,除了在每个支持模式下的Unruh和动态卡西米尔效应外,我们预测了“配对卡西米尔效应”,其中一个光子在腔体中以适当的驱动频率以两种允许的模式中的每一种模式发射。我们还计算了所有三种效应的驱动频率的解析近似。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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