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三端超导电路中的光子热输运

Photonic heat transport in three terminal superconducting circuit.

作者信息

Gubaydullin Azat, Thomas George, Golubev Dmitry S, Lvov Dmitrii, Peltonen Joonas T, Pekola Jukka P

机构信息

QTF Centre of Excellence, Department of Applied Physics, Aalto University School of Science, P.O. Box 13500, FI-00076, Aalto, Finland.

出版信息

Nat Commun. 2022 Mar 23;13(1):1552. doi: 10.1038/s41467-022-29078-x.

Abstract

We report an experimental realization of a three-terminal photonic heat transport device based on a superconducting quantum circuit. The central element of the device is a flux qubit made of a superconducting loop containing three Josephson junctions, which can be tuned by magnetic flux. It is connected to three resonators terminated by resistors. By heating one of the resistors and monitoring the temperatures of the other two, we determine photonic heat currents in the system and demonstrate their tunability by magnetic field at the level of 1 aW. We determine system parameters by performing microwave transmission measurements on a separate nominally identical sample and, in this way, demonstrate clear correlation between the level splitting of the qubit and the heat currents flowing through it. Our experiment is an important step towards realization of heat transistors, heat amplifiers, masers pumped by heat and other quantum heat transport devices.

摘要

我们报告了一种基于超导量子电路的三端光子热传输器件的实验实现。该器件的核心元件是一个由包含三个约瑟夫森结的超导环制成的磁通量子比特,其可通过磁通量进行调谐。它连接到三个由电阻器端接的谐振器。通过加热其中一个电阻器并监测另外两个的温度,我们确定了系统中的光子热电流,并在1 aW的水平上展示了它们通过磁场的可调谐性。我们通过在一个单独的名义上相同的样品上进行微波传输测量来确定系统参数,并以此证明量子比特的能级分裂与流经它的热电流之间存在明显的相关性。我们的实验是朝着实现热晶体管、热放大器、热泵浦微波激射器和其他量子热传输器件迈出的重要一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2939/8943049/80c0838698ae/41467_2022_29078_Fig1_HTML.jpg

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