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Photon blockade with cross-Kerr nonlinearity in superconducting circuits

机译:具有超导电路中的交叉克尔非线性的光子封锁

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摘要

We theoretically investigate the photon statistical properties of a weakly-driven circuit quantum electrodynamic system with a cross-Kerr nonlinearity, which is built from two coupled transmon qubits through a superconducting quantum interference device (SQUID). We show that when two resonators are resonant with each other, photon blockade and subPoissonian photon statistics in the first superconducting transmission line resonator (TLR), TLR1, can be achieved by modulating the resonator-driving detunings and the cross-Kerr nonlinearity. Moreover, the optimal conditions for obtaining sub-Poissonian statistics are put forward through analytical derivations, which are in good agreement with those obtained by numerical simulations. We also examine the role of the resonator-resonator hopping interaction for photon statistics in TLR1 by numerically analyzing the case where the frequencies of two resonators are far detuned from each other. Due to the cutoff of the indirect transition paths in this case, the output field always acquires super-Poissonian statistics. In addition, a physical model with a SQUID embedded in TLR1 is proposed to tune the detuning between two TLRs, making it possible to demonstrate the importance of the resonatorresonator hopping interaction in obtaining a single-photon blockade. Thereby, our model of two coupled resonators with cross-Kerr nonlinearity has the potential to engineer the photon statistics through operating on the system parameters.
机译:理论上,从两个耦合的透射符号通过超导量子干涉装置(鱿鱼),理论上地研究了弱驱动电路量子电动力系统的光子统计特性。我们认为,当两个谐振器彼此谐振时,通过调制谐振器驱动静止和交叉克隆非线性,可以实现第一超导传输线谐振器(TLR),TLR1中的光子封锁和子位花尼的光子统计。此外,通过分析推导来提出获得子泊松统计的最佳条件,这与通过数值模拟获得的人吻合良好。我们还通过数值分析了两个谐振器的频率远离彼此的情况,检查TLR1中的光子统计的谐振器 - 谐振器跳跃相互作用的作用。由于在这种情况下间接转换路径的截止,输出字段总是获取超级泊松统计。另外,提出了具有鱿鱼的鱿鱼的物理模型,以调节两个TLR之间的静脉,使得可以证明在获得单光子封锁时的共振腐蚀剂跳跃相互作用的重要性。因此,我们的两个耦合谐振器的模型具有交叉克尔非线性的耦合谐振器具有通过在系统参数上操作来工程光子统计的潜力。

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