Cataldo Giuseppe, Barrentine Emily M, Brown Ari D, Moseley Samuel H, U-Yen Kongpop, Wollack Edward J
Astrophysics Science Division, NASA Goddard Space Flight Center;
Instrument Systems and Technology Division, NASA Goddard Space Flight Center.
J Vis Exp. 2016 May 21(111):53868. doi: 10.3791/53868.
Superconducting microwave resonators are of interest for a wide range of applications, including for their use as microwave kinetic inductance detectors (MKIDs) for the detection of faint astrophysical signatures, as well as for quantum computing applications and materials characterization. In this paper, procedures are presented for the fabrication and characterization of thin-film superconducting microwave resonators. The fabrication methodology allows for the realization of superconducting transmission-line resonators with features on both sides of an atomically smooth single-crystal silicon dielectric. This work describes the procedure for the installation of resonator devices into a cryogenic microwave testbed and for cool-down below the superconducting transition temperature. The set-up of the cryogenic microwave testbed allows one to do careful measurements of the complex microwave transmission of these resonator devices, enabling the extraction of the properties of the superconducting lines and dielectric substrate (e.g., internal quality factors, loss and kinetic inductance fractions), which are important for device design and performance.
超导微波谐振器在广泛的应用中具有重要意义,包括用作微波动态电感探测器(MKID)来探测微弱的天体物理信号,以及用于量子计算应用和材料表征。本文介绍了薄膜超导微波谐振器的制造和表征过程。该制造方法能够实现超导传输线谐振器,其特征位于原子级光滑的单晶硅电介质的两侧。这项工作描述了将谐振器装置安装到低温微波测试平台并冷却至超导转变温度以下的过程。低温微波测试平台的设置使人们能够仔细测量这些谐振器装置的复微波传输,从而提取超导线和电介质基板的特性(例如,内部品质因数、损耗和动态电感分数),这些特性对于器件设计和性能至关重要。