论文标题
通过超导量子阵列的单微波光子检测非脱糖的量子电动力学
Quantum electrodynamics of non-demolition detection of single microwave photon by superconducting qubit array
论文作者
论文摘要
通过始终应用量子电动力学的形式主义,我们开发了一个综合的理论框架,描述了单微波光子与波浪导向腔谐振器中单个微波光子与一系列超导式透射量子的相互作用。特别是,我们分析了微波光子对阵列响应对弱探针信号的响应的影响。该研究表明,高质量的因子腔提供了更好的响应光谱分辨率,而具有中等质量因子的腔体可以更好地对单个光子检测的灵敏度。值得注意的是,我们的分析表明,在系统参数范围内,即使是腔体的唯一量子置则也可以检测到单光子信号。我们还讨论了光子的量子特性以及谐振器的电动力学特性如何影响量子数阵列的响应。我们的结果提供了有效的理论背景,用于告知由量子阵列阵列组成的量子设备的开发和设计,尤其是对于那些使用腔体的量子阵列,需要进行显式或反射的显式表达式。
By consistently applying the formalism of quantum electrodynamics we developed a comprehensive theoretical framework describing the interaction of single microwave photons with an array of superconducting transmon qubits in a wave guide cavity resonator. In particular, we analyze the effects of microwave photons on the arrays response to a weak probe signal exciting the resonator. The study reveals that a high quality factor cavities provide better spectral resolution of the response, while cavities with moderate quality factor allow better sensitivity for a single photon detection. Remarkably, our analysis showed that a single-photon signal can be detected by even a sole qubit in cavity under the realistic range of system parameters. We also discuss how quantum properties of the photons and electrodynamical properties of resonators affect the response of qubits array. Our results provide an efficient theoretical background for informing the development and design of quantum devices consisting of arrays of qubits, especially for those using a cavity where an explicit expression for the transmission or reflection is required.