用于量子器件的高质量超导谐振器的发展

Dong-Gwang Ha, S. Kim, So-Yeon Jun, S. Shim, Woon Song, J. Park, Jiman Choi, Y. Chong
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摘要

我们报告了我们在量子器件应用的各种超导谐振器的设计,制造和表征方面的进展。谐振器主要用于电路QED结构中的超导量子比特实现,但未来的应用将包括光子探测器,如微波动力学电感探测器。首先在高阻硅片上设计制作了铌薄膜半波长共面波导谐振器,其基频范围为1 ~ 8ghz。负载质量因数由耦合电容控制,在稀释制冷机中测得内在质量因数下界低至7 mK。我们还设计了耦合到传输线上的四分之一波长谐振器和集总LC谐振器,并在一条传输线上表征了多个谐振器。针对三维发射量子比特的应用,我们设计并制作了一个超导铝的矩形盒谐振器。盒状谐振器的内在品质因子在7 mK时超过300万。我们还将介绍超导谐振器中transmon量子位元集成的基本结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of high quality superconducting resonators for quantum device applications
We report our development on design, fabrication and characterization of various superconducting resonators for quantum device applications. The resonators are developed mainly for superconducting qubit implementation in circuit QED structure, but future application will include photon detectors such as microwave kinetic inductance detectors. First we designed and fabricated half-wavelength coplanar waveguide resonators with niobium thin film on a high resistive silicon wafer, with the fundamental frequencies in the range of 1 to 8 GHz. The loaded quality factors are controlled by the coupling capacitors, and the lower bound of the intrinsic quality factor was measured down to 7 mK in the dilution refrigerator. We have also designed quarter-wavelength resonators and lumped LC resonators coupled to a transmission line, and characterized multiple resonators in a single transmission line. For the 3D transmon qubit application, we designed and fabricated a rectangular box resonator with superconducting aluminum. The intrinsic quality factor of the box resonator exceeds three million at 7 mK. We will also present basic results on the integration of a transmon qubit in the superconducting resonator.
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