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Quantum optical diode based on Lyapunov control in a superconducting system

机译:基于Lyapunov控制在超导系统中的量子光学二极管

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In this paper, we show how to use Lyapunov control theory to realize the unidirectional transmission of photons. We construct a quantum diode in a two-cavity system that includes two coplanar waveguide resonators connected by a superconducting quantum interference device, and the coupling strength can be adjusted by a magnetic flux. We utilize the Lyapunov control theory to design the shape of the coupling coefficient so that the dynamic evolution of the system can be effectively controlled. Moreover, we select the more stable and feasible control scheme by comparing and analyzing two control methods. Our scheme can obtain high efficiency of photon transmission in the presence of quantum noise without the need to construct strong nonlinear interactions, thus greatly reducing the difficulty of the experiment. (c) 2018 Optical Society of America
机译:在本文中,我们展示了如何使用Lyapunov控制理论来实现光子的单向传输。 我们在两个腔系统中构造量子二极管,其包括由超导量子干涉装置连接的两个共面波导谐振器,并且可以通过磁通量调节耦合强度。 我们利用Lyapunov控制理论来设计耦合系数的形状,从而可以有效地控制系统的动态演化。 此外,我们通过比较和分析两个控制方法来选择更稳定和可行的控制方案。 我们的方案可以在存在量子噪声存在下获得高效率的光子传输,而无需构建强的非线性相互作用,从而大大减少了实验的难度。 (c)2018年光学学会

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