论文标题

片上片上芯片

Thermally pumped on-chip maser

论文作者

Thomas, George, Gubaydullin, Azat, Golubev, Dmitry S., Pekola, Jukka P.

论文摘要

我们在超导电路中基于单个人工原子的超导电路中呈现一个理论模型,并由温度梯度在热浴之间泵送的温度梯度与不同的跨层跃迁。我们表明,使用典型的电路参数可以实现一些频率超过敏感隆隆法的分辨率的序列的maser幂。我们还证明,可以检测到人工原子中的种群反转,而无需测量maser的相干辐射输出。为此,该系统应作为三端热传输设备运行。人口反转的标志是,即使其温度超过了其他两个端子的温度,热电量即使其温度超过了弱耦合的输出终端。提出的将热量转化为微波辐射的方法和通过加热来控制能量水平的方法为电路量子电动力学实验提供了其他有用的工具。

We present a theoretical model of an on-chip three-level maser in a superconducting circuit based on a single artificial atom and pumped by a temperature gradient between thermal baths coupled to different interlevel transitions. We show that maser powers of the order of a few femtowatts, well exceeding the resolution of the sensitive bolometry, can be achieved with typical circuit parameters. We also demonstrate that population inversion in the artificial atom can be detected without measuring coherent radiation output of the maser. For that purpose, the system should operate as a three-terminal heat transport device. The hallmark of population inversion is the influx of heat power into the weakly coupled output terminal even though its temperature exceeds the temperatures of the two other terminals. The proposed method of on-chip conversion of heat into microwave radiation and control of energy-level populations by heating provide additional useful tools for circuit quantum electrodynamics experiments.

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