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基于汞的高温超导晶界结和 SQUIDs 可在 110 开尔文以上运行。

Mercury-Based Cuprate High-Transition Temperature Grain-Boundary Junctions and SQUIDs Operating Above 110 Kelvin.

出版信息

Science. 1994 Aug 19;265(5175):1075-7. doi: 10.1126/science.265.5175.1075.

Abstract

The superconducting transport characteristics of HgBa(2) CaCu(2)O(6+delta) (Hg-1212) films and grain-boundary junctions grown on (100)-oriented SrTiO(3) bicrystal substrates have been investigated. The films exhibit a zero-resistance temperature of approximately 120 kelvin and sustain large critical current densities, with values as high as 10(6) amperes per square centimeter at around 100 kelvin. On the other hand, the grain boundaries behave as weak links, with substantially lower critical currents, as is observed for other cuprate superconductors. A reduction of three orders of magnitude in critical current was observed for transport across a 36.8 degrees grain boundary. The current-voltage characteristics of bridges across such a grain boundary show weak-link behavior qualitatively resembling that of a resistively shunted junction. Single-level direct-current superconducting quantum interference devices (SQUIDs) have been fabricated with such bicrystal junctions. These SQUIDs show clear periodic voltage modulations when subjected to applied magnetic fields. The SQUIDs operate at temperatures as high as 111.8 kelvin, which makes them attractive for operation in portable sensors and devices that utilize nonconventional cooling methods.

摘要

已研究了在(100)取向 SrTiO3 双晶衬底上生长的 HgBa(2)CaCu(2)O(6+delta)(Hg-1212)薄膜和晶界结的超导输运特性。该薄膜表现出约 120 开尔文的零电阻温度,并具有高临界电流密度,在约 100 开尔文时高达 10(6)安培/平方厘米。另一方面,晶界表现为弱连接,其临界电流显著低于其他铜氧化物超导体的临界电流。在跨越 36.8 度晶界的传输中,观察到临界电流降低了三个数量级。跨越此类晶界的桥的电流-电压特性表现出类似于电阻分路结的弱连接行为。已经使用这种双晶结制造了单级直流超导量子干涉器件(SQUID)。当这些 SQUID 受到外加磁场时,它们显示出明显的周期性电压调制。这些 SQUID 可以在高达 111.8 开尔文的温度下运行,这使得它们在利用非传统冷却方法的便携式传感器和设备中很有吸引力。

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