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Z-Gate Operation on a Superconducting Flux Qubit via Its Readout SQUID

机译:通过其读出sQUID在超导磁通Qubit上进行Z-Gate操作

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摘要

Detuning a superconducting qubit from its rotating frame is one means to implement a Z-gate operation. In this work, we implement a Z gate by pulsing a current through the qubit’s readout dc SQUID. While the dc SQUID acts as a magnetic flux sensor for qubit readout, we in turn may use it as a flux actuator with tunable strength to impose a qubit frequency shift. Using this approach, we demonstrate Ramsey-type free-induction experiments with time constants as long as 280 ns and rotation frequencies as high as 1.4 GHz. We experimentally demonstrate an inferred Z-gate fidelity of approximately 90%, limited largely by the bandwidth of our system. In the absence of this limitation, we argue that the inferred fidelity may be improved to as high as 99%.
机译:将超导量子位从其旋转框架中解谐是实现Z门操作的一种方法。在这项工作中,我们通过使电流流过qubit的读出直流SQUID来实现Z门。尽管dc SQUID用作用于qubit读数的磁通量传感器,但我们又可以将其用作具有可调强度的磁通量致动器,以施加qubit频移。使用这种方法,我们演示了Ramsey型自由感应实验,其时间常数长达280 ns,旋转频率高达1.4 GHz。我们通过实验证明了大约90%的推断出的Z门保真度,很大程度上受我们系统的带宽限制。在没有此限制的情况下,我们认为推断的保真度可能会提高到99%。

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