铌酸锂
材料科学
谐振器
锂(药物)
光电子学
Crystal(编程语言)
医学
计算机科学
程序设计语言
内分泌学
作者
E. Alex Wollack,Agnetta Y. Cleland,Patricio Arrangoiz-Arriola,Timothy P. McKenna,Rachel G. Gruenke,Rishi N. Patel,Wentao Jiang,Christopher J. Sarabalis,Amir H. Safavi-Naeini
摘要
We investigate the performance of microwave-frequency phononic crystal resonators fabricated on thin-film lithium niobate for integration with superconducting quantum circuits. For different design geometries at millikelvin temperatures, we achieve mechanical internal quality factors Qi above 105–106 at high microwave drive power, corresponding to 5×106 phonons inside the resonator. By sweeping the defect size of resonators with identical mirror cell designs, we are able to indirectly observe signatures of the complete phononic bandgap via the resonators' internal quality factors. Examination of quality factors' temperature dependence shows how superconducting and two-level system (TLS) loss channels impact device performance. Finally, we observe an anomalous low-temperature frequency shift consistent with resonant TLS decay and find that the material choice can help to mitigate these losses.
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