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Cryocooler operation of SNIS Josephson arrays for AC Voltage standards

机译:用于交流电压标准的SNI Josephson阵列的冷冻机操作

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Avoiding liquid helium is now a worldwide issue, thus cryocooler operation is becoming mandatory for a wider use of superconductive electronics. Josephson voltage standards hold a peculiar position among superconducting devices, as they are in use in high precision voltage metrology since decades. Higher temperature operation would reduce the refrigerator size and complexity, however, arrays of Josephson junctions made with high temperature superconductors for voltage standard applications are not to date available. The SNIS (Superconductor-Normal metal-Insulator-Superconductor) junction technology developed at INRIM, based on low temperature superconductors, but capable of operation well above liquid helium temperature, is interesting for application to a compact cryocooled standard, allowing to set a compromise between device and refrigerator requirements. In this work, the behavior of SNIS devices cooled with a closed-cycle refrigerator has been investigated, both in DC and under RF irradiation. Issues related to thermal design of the apparatus to solve specific problems not faced with liquid coolants, like reduced cooling power and minimization of thermal gradients for uniform operation of the chip are discussed in detail.
机译:避免液氦现在是全球问题,因此冷冻机操作正在成为更广泛使用超导电子器件的强制性。 Josephson电压标准持有超导装置之间的特殊位置,因为几十年来以高精度的电压计量。更高的温度操作将降低冰箱尺寸和复杂性,但是,与电压标准应用的高温超导体制成的Josephson结阵是不可用的。基于低温超导体的Inrim开发的SNI(超导体 - 正常金属 - 绝缘子 - 超导体)结技术,但能够良好地运行液氦温度,很有趣,适用于紧凑的冷冻电影标准,允许在介于之间进行折衷设备和冰箱要求。在这项工作中,在DC和RF照射下,研究了用闭环冰箱冷却的SNIS装置的行为。详细讨论了与液体冷却剂不面对液体冷却剂的特定问题有关的问题,如降低的冷却功率和芯片均匀操作的热梯度的最小化。

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