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Noise and Dissipation in a Circuit Quantum Electrodynamic Description of a Josephson Traveling-Wave Parametric Amplifier

机译:Josephson行波参量放大器的电路量子电动力学描述中的噪声和耗散

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In this paper, we are constructing a circuit quantum electrodynamic model describing dissipative effects in a Josephson traveling-wave parametric amplifier (JTWPA). Losses and noise are treated using the quantum Langevin method. The total Hamiltonian of our model describes the coupling of the modes in a parametric four-wave-mixing scheme, as well as the interaction with the environment. Based on the Heisenberg equations of motion, we obtain the temporal evolution of the signal photon number and analyze the signal gain of the JTWPA.
机译:在本文中,我们正在构建描述约瑟夫森行波参数放大器(JTWPA)中的耗散效应的电路量子电动力学模型。损耗和噪声使用量子兰格文方法进行处理。我们模型的总哈密顿量描述了参数四波混频方案中模式的耦合以及与环境的相互作用。基于运动的海森堡方程,我们获得了信号光子数的时间演化并分析了JTWPA的信号增益。

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