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A unidirectional on-chip photonic interface for superconducting circuits

机译:用于超导电路的单向片上光子界面

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摘要

We propose and analyze a passive architecture for realizing on-chip, scalable cascaded quantum devices. In contrast to standard approaches, our scheme does not rely on breaking Lorentz reciprocity. Rather, we engineer the interplay between pairs of superconducting transmon qubits and a microwave transmission line, in such a way that two delocalized orthogonal excitations emit (and absorb) photons propagating in opposite directions. We show how such cascaded quantum devices can be exploited to passively probe and measure complex many-body operators on quantum registers of stationary qubits, thus enabling the heralded transfer of quantum states between distant qubits, as well as the generation and manipulation of stabilizer codes for quantum error correction.
机译:我们提出并分析了用于实现片上的无源架构,可扩展的级联量子器件。与标准方法相比,我们的计划不依赖于突破洛伦兹互惠。相反,我们在超导透射码和微波传输线对对之间的相互作用,使得两个被占用的正交激励发射(和吸收)在相反方向上传播的光子。我们展示了这种级联量子设备如何被利用以被动探测和测量静止Qubits的量子寄存器上的复杂多体运算符,从而使得遥远额度之间的Quantum状态的预示性转移,以​​及稳定器代码的产生和操纵量子纠错。

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