论文标题

驾驶引起的共振在一个强耦合的腔体系统中变窄

Driving-induced resonance narrowing in a strongly coupled cavity-qubit system

论文作者

Buks, Eyal, Brookes, Paul, Ginossar, Eran, Deng, Chunqing, Orgiazzi, Jean-Luc F. X., Otto, Martin, Lupascu, Adrian

论文摘要

我们研究了一个系统,该系统由超导通量Qubit强烈耦合到微波腔。为了操纵着衣服状态的范围,采用了外部施加量子驾驶。我们观察到在两个穿着的基本共振之间分裂的地区的共振变窄,将其调谐到零。可以利用这个重叠共振区域的狭窄来长期存储量子状态。此外,我们测量对强腔模式驱动的响应,并在实验结果与半经典模型的预测之间找到定性偏差。另一方面,使用通过数值整合管理系统动力学的主方程来获得的理论预测获得了良好的一致性。观察到的响应表明了两种元稳定着装状态相干取消的过程。

We study a system consisting of a superconducting flux qubit strongly coupled to a microwave cavity. Externally applied qubit driving is employed in order to manipulate the spectrum of dressed states. We observe resonance narrowing in the region where the splitting between the two dressed fundamental resonances is tuned to zero. The narrowing in this region of overlapping resonances can be exploited for long-time storage of quantum states. In addition, we measure the response to strong cavity mode driving, and find a qualitative deviation between the experimental results and the predictions of a semiclassical model. On the other hand, good agreement is obtained using theoretical predictions obtained by numerically integrating the master equation governing the system's dynamics. The observed response demonstrates a process of a coherent cancellation of two meta-stable dressed states.

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