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The properties and potential applications of bulk RF SQUIDs made from YBaCuO, BiSrCaCuO and TlCaBaCuO

机译:由YBaCuO,BiSrCaCuO和TlCaBaCuO制成的大量RF SQUID的性能和潜在应用

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The authors have developed methods for making RF SQUIDs (superconducting quantum interference devices) from bulk samples of high-temperature ceramic superconductors. The technique relies on intrinsic closed superconducting pathways within the material to form the SQUID loop, and intergrain contact to provide the necessary Josephson elements. The material does not need to be multiply connected (for example, ring-shaped) or to have a region which is deliberately weakened or constricted. In this sense this type is quite unlike other RF SQUIDs that have been developed recently, which use break junctions or have machined constrictions. It is also much simpler to make and reveals some interesting properties related to the nature of the contact between grains. The authors conclude that a very simple system can make a magnetometer with a field sensitivity at 77 K of 1.5*10/sup -10/ T-Hz/sup -1/2/, comparable to that of a flux gate magnetometer. The technique also provides a good educational demonstration of quantum interference and can be used for detecting the superconducting state in small bulk samples.
机译:作者已经开发了从高温陶瓷超导体的大量样品中制造RF SQUID(超导量子干涉器件)的方法。该技术依靠材料内部固有的闭合超导路径形成SQUID回路,并通过晶间接触提供必要的约瑟夫森元素。该材料不需要多重连接(例如,环形)或具有被故意削弱或限制的区域。从这个意义上讲,这种类型与最近开发的其他RF SQUID完全不同,后者使用断路结或具有机械收缩。它也更容易制造,并且揭示了一些有趣的特性,这些特性与晶粒之间的接触性质有关。作者得出的结论是,一个非常简单的系统可以使磁力计在77 K时的磁场灵敏度为1.5 * 10 / sup -10 / T-Hz / sup -1 / 2 /,与磁通门磁力计相当。该技术还为量子干涉提供了良好的教学演示,可用于检测小体积样品中的超导状态。

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