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Noise, junction characteristics, and magnetic field dependencies of bicrystal grain boundary junction rf-SQUIDs

机译:双晶晶界结rf-SQUID的噪声,结特征和磁场依赖性

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Bicrystal grain boundary (GB) Josephson junctions and rf-SQUID's were made of 200 nm thick PLD YBCO films on bi-crystal SrTiO/sub 3/ substrates. The junction characteristics were studied to investigate optimal parameters in the rf-SQUID layout designs and the limits imposed by the technology. The I/sub c/ of 3 to 8 /spl mu/m wide test junctions scaled with the junction widths, showing clear linear RSJ-like I-V characteristics at 77 K. All the junctions showed hysteretic RCSJ-like behavior at very low temperatures. Classical Josephson flux motion type (long junction) nonlinearity in I-V curves of all the junctions was also observed at lower temperatures with systematic dependence on the junction widths. Measurements of the magnetic field dependence of the I/sub c/ of the junctions resulted in junction width dependent well-defined Fraunhofer-pattern like characteristics. The obtained characteristics of the junctions led to feasible criteria for the rf-SQUID layouts with desired device characteristics. Rf-SQUID's were made using designs for optimal performance at 77 K while avoiding large superconducting weak links across the substrate GB. Devices with low noise characteristics and junction field sensitivities proper for operation in environmental background magnetic fields were obtained. A nonsystematic spread of optimal working temperature of the SQUID's were also observed which is associated to the spread of the junction parameters caused by the defects at the GB of substrates.
机译:双晶晶界(GB)的Josephson结和rf-SQUID由在双晶SrTiO / sub 3 /衬底上的200 nm厚的PLD YBCO膜制成。研究了结的特性,以研究rf-SQUID布局设计中的最佳参数以及该技术施加的限制。 I / sub c /为3至8 / splμm/ m宽的测试结,与结的宽度成比例,在77 K时显示出清晰的线性RSJ样I-V特性。所有结在非常低的温度下都表现出类似于RCSJ的滞后行为。在较低温度下还观察到所有结的I-V曲线中的经典约瑟夫森通量运动类型(长结)非线性,并且系统地依赖于结宽。结的I / sub c /的磁场相关性的测量结果导致了结宽相关的明确定义的弗劳恩霍夫图形样特征。结的获得的特性导致具有所需器件特性的rf-SQUID布局的可行标准。 Rf-SQUID采用了在77 K时达到最佳性能的设计,同时避免了跨越基板GB的大型超导薄弱环节。获得了适合在环境背景磁场下工作的低噪声特性和结场灵敏度的器件。还观察到SQUID的最佳工作温度的非系统性扩散,这与由衬底GB处的缺陷引起的结参数的扩散有关。

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