论文标题

一种通过改变读数功率的微波功率来测量微波动力电感检测器的过渡温度的方法

A method to measure superconducting transition temperature of microwave kinetic inductance detector by changing power of readout microwaves

论文作者

Kutsuma, Hiroki, Sueno, Yoshinori, Hattori, Makoto, Mima, Satoru, Oguri, Shugo, Otani, Chiko, Suzuki, Junya, Tajima, Osamu

论文摘要

微波动力电感检测器(MKID)是尖端的超导检测器,其原理基于超导谐振器电路。 MKID的超导过渡温度(TC)是一个重要参数,因为各种MKID表征参数取决于它。在本文中,我们提出了一种通过更改读取微波的应用功率来测量MKID TC的方法。一小部分读出功率沉积在MKID中,并且MKID中的准粒子数量随着这种功率而增加。此外,准粒子寿命随准粒子的数量减少。因此,我们可以通过快速改变读数功率来衡量准粒子寿命与检测器响应之间的关系。从这个关系中,我们估计了固有的准粒子寿命。理论上,该寿命是由TC,MKID设备的物理温度和其他已知参数建模的。我们通过将测得的寿命与使用理论模型获得的测量寿命进行比较来获得TC。使用用铝制成的MKID,我们在0.3 K操作下演示了此方法。结果与通过监测读出微波的透射率随着设备温度的变化而测量的TC获得的结果一致。本文提出的方法适用于其他类型,例如混合型MKID。

A microwave kinetic inductance detector (MKID) is a cutting-edge superconducting detector, and its principle is based on a superconducting resonator circuit. The superconducting transition temperature (Tc) of the MKID is an important parameter because various MKID characterization parameters depend on it. In this paper, we propose a method to measure the Tc of the MKID by changing the applied power of the readout microwaves. A small fraction of the readout power is deposited in the MKID, and the number of quasiparticles in the MKID increases with this power. Furthermore, the quasiparticle lifetime decreases with the number of quasiparticles. Therefore, we can measure the relation between the quasiparticle lifetime and the detector response by rapidly varying the readout power. From this relation, we estimate the intrinsic quasiparticle lifetime. This lifetime is theoretically modeled by Tc, the physical temperature of the MKID device, and other known parameters. We obtain Tc by comparing the measured lifetime with that acquired using the theoretical model. Using an MKID fabricated with aluminum, we demonstrate this method at a 0.3 K operation. The results are consistent with those obtained by Tc measured by monitoring the transmittance of the readout microwaves with the variation in the device temperature. The method proposed in this paper is applicable to other types, such as a hybrid-type MKID.

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