论文标题

减慢量子材料中的光

Slowing down light in a qubit metamaterial

论文作者

Brehm, Jan David, Gebauer, Richard, Stehli, Alexander, Poddubny, Alexander N., Sander, Oliver, Rotzinger, Hannes, Ustinov, Alexey V.

论文摘要

量子信息处理的快速进展导致对设备的需求不断增加,以控制电磁波脉冲的传播,并最终实现通用和有效的量子记忆。尽管近年来已经取得了重大进展,以实现光频率下的原子来实现缓慢的光和量子记忆,但微波域中的超导电路仍然缺乏此类设备。在这里,我们证明了在超导的超导层中放慢电磁波的速度,由八个量子位组成,并耦合到一个公共波导,形成了波导量子电动力学系统。我们分析了两种互补方法,一种依赖于自动镇分裂的衣服状态,另一种是基于使用Qubits可调性的量身定制的分散配置文件。我们的时间分辨实验表明,降低的组速度降低到比真空小的1500倍。根据所使用的方法,光速可以通过额外的微波色调或有效的量子功能进行控制。我们的发现表明,超导电路具有很高的灵活性,可以实现自定义的带结构,并为量子制度中的微波分散工程打开大门。

The rapid progress in quantum information processing leads to a rising demand for devices to control the propagation of electromagnetic wave pulses and to ultimately realize a universal and efficient quantum memory. While in recent years significant progress has been made to realize slow light and quantum memories with atoms at optical frequencies, superconducting circuits in the microwave domain still lack such devices. Here, we demonstrate slowing down electromagnetic waves in a superconducting metamaterial composed of eight qubits coupled to a common waveguide, forming a waveguide quantum electrodynamics system. We analyze two complementary approaches, one relying on dressed states of the Autler-Townes splitting, and the other based on a tailored dispersion profile using the qubits tunability. Our time-resolved experiments show reduced group velocities of down to a factor of about 1500 smaller than in vacuum. Depending on the method used, the speed of light can be controlled with an additional microwave tone or an effective qubit detuning. Our findings demonstrate high flexibility of superconducting circuits to realize custom band structures and open the door to microwave dispersion engineering in the quantum regime.

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