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Coherent Single Photon Transport in a One-Dimensional Waveguide Coupled with Superconducting Quantum Bits

机译:一维波导中与超导量子位耦合的相干单光子传输

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A recent theoretical analysis [A. Blais et al, Phys. Rev. A 69, 062320 (2004)] and experimental results [A. Wallraff et al, Nature (London) 431, 162 (2004)] show that interesting transport properties of a single microwave photon emerge when a quantum bit in a cavity is coupled to a one-dimensional waveguide. Here we adopt a real-space model Hamiltonian to give a unified approach which accounts for the experimental results, and make new predictions on the properties of single photon transport, such as the general Fano line shape, symmetric vacuum Rabi splitting for a leaky cavity at resonance, and a one-photon switching capability.
机译:最近的理论分析[A. Blais等,Phys。 Rev. A 69,062320(2004)]和实验结果[A. Wallraff等人,Nature(London)431,162(2004)]表明,当腔中的量子位耦合到一维波导时,单个微波光子的有趣的传输特性就会出现。在这里,我们采用实空间模型哈密顿量给出统一的方法来解释实验结果,并对单光子输运的性质做出新的预测,例如一般的Fano线形,对称真空Rabi裂隙用于泄漏腔。共振和单光子切换功能。

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