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Correlation of microwave nonlinearity and magnetic pinning in high-temperature superconductor thin film band-pass filters

机译:高温超导薄膜带通滤波器中微波非线性与磁钉扎的相关性

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摘要

Third-order intermodulation has been studied in two-pole X-band microstrip filters made of three high-temperature superconductors (HTS), including HgBa2CaCu2O6+delta (Hg-1212), Tl2Ba2CaCu2Oy (Tl-2212) and YBa2Cu3O7-delta (YBCO) at >= 77 K. In addition, the dc critical current density J(c) was investigated in these three types of HTS films in the same temperature range. Interestingly, the dc J(c) and the rf critical current density J(IP3) derived from the third-order intercept (IP3) have a similar dependence on the reduced temperature, suggesting that the magnetic vortex depinning in HTS materials dominates the microwave nonlinearity at elevated temperatures. This observation agrees with the recent theoretical discussion on the origin of the microwave nonlinearity. Disagreement between J(c) and J(IP3), however, has been observed in the trilayer YBCO/CeO2/YBCO filters. Although magnetic flux pinning and hence J(c) were improved by the insertion of a 20 nm thin CeO2 layer, the reduced J(IP3) is attributed to the high power loss from the extra interfaces between YBCO and CeO2.
机译:在由三个高温超导体(HTS)制成的两极X波段微带滤波器中研究了三阶互调,包括HgBa2CaCu2O6 + delta(Hg-1212),Tl2Ba2CaCu2Oy(Tl-2212)和YBa2Cu3O7-delta(YBCO)在> = 77 K时。此外,在相同温度范围内研究了这三种HTS薄膜的dc临界电流密度J(c)。有趣的是,源自三阶截距(IP3)的dc J(c)和rf临界电流密度J(IP3)对降低的温度具有相似的依赖性,这表明高温超导材料中的磁涡旋去钉化主导了微波的非线性在高温下。这一观察结果与最近关于微波非线性起源的理论讨论相吻合。但是,在三层YBCO / CeO2 / YBCO过滤器中已观察到J(c)和J(IP3)之间的分歧。尽管通过插入20 nm的CeO2薄层可以改善磁通钉扎,从而改善J(c),但减小的J(IP3)归因于YBCO和CeO2之间额​​外界面的高功率损耗。

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