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Microwave Down-Conversion with an Impedance-Matched Λ System in Driven Circuit QED

机译:用于驱动电路QED中的阻抗匹配Λ系统的微波下变频

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摘要

By driving a dispersively coupled qubit-resonator system, we realize an “impedance-matched” Λ system that has two identical radiative decay rates from the top level and interacts with a semi-infinite waveguide. It has been predicted that a photon input from the waveguide deterministically induces a Raman transition in the system and switches its electronic state. We confirm this through microwave response to a continuous probe field, observing near-perfect (99.7%) extinction of the reflection and highly efficient (74%) frequency down-conversion. These proof-of-principle results lead to deterministic quantum gates between material qubits and microwave photons and open the possibility for scalable quantum networks interconnected with waveguide photons.
机译:通过驱动色散耦合的量子比特谐振器系统,我们实现了一个“阻抗匹配”Λ系统,该系统从顶层具有两个相同的辐射衰减率,并且与半无限波导相互作用。据预测,从波导输入的光子确定性地引起系统中的拉曼跃迁并切换其电子状态。我们通过对连续探针场的微波响应来确认这一点,观察到反射几乎完美(99.7%)消光,并且高效(74%)频率下变频。这些原理证明的结果导致了材料量子位和微波光子之间的确定性量子门,并为与波导光子互连的可扩展量子网络打开了可能性。

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