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Low-frequency noise reduction in YBa2Cu3O7 superconducting quantum interference devices by antidots

机译:用解毒剂降低YBa2Cu3O7超导量子干涉装置中的低频噪声

摘要

It is demonstrated that the low-frequency noise due to vortex motion in high-temperature superconducting quantum interference devices (SQUIDs) in ambient magnetic fields can strongly be reduced by a simple arrangement of antidots patterned into the SQUID. Sputter-deposited YBa2Cu3O7-delta radio-frequency SQUIDs (rf-SQUIDs) with step edge junctions are characterized before and after patterning of antidots in the vicinity of the Josephson junction. No deterioration of the rf-SQUIDs due to the introduction of the antidots can be detected. In contrary, the onset of the increase of the low-frequency noise in an applied magnetic field is shifted from 10 mu T for the bare SQUID to 40 (field cooled) and 18 mu T (zero-field cooled) for the rf-SQUIDs with antidots. The reduction of low-frequency noise in ambient field is explained by trapping of vortices by the antidots. The comparison of zero-field and field-cooled experiments demonstrates that flux penetrating the washer does not affect the low-frequency noise as long as the vortices are homogeneously distributed and the flux is properly pinned in the vicinity of the junction. (C) 2000 American Institute of Physics. [S0003-6951(00)04022-5].
机译:已证明,通过简单地将图案化成SQUID的解毒剂排列,可以大大降低环境磁场中高温超导量子干涉装置(SQUID)中涡旋运动引起的低频噪声。在约瑟夫森结附近的解毒剂图案化之前和之后,对具有阶梯边缘结的溅射沉积YBa2Cu3O7-delta射频SQUID(rf-SQUID)进行表征。由于引入了解毒剂,无法检测到rf-SQUID的劣化。相反,外加磁场中低频噪声增加的开始时间从裸SQUID的10μT变为rf-SQUID的40(磁场冷却)和18μT(零场冷却)与解毒剂。通过解毒剂捕获涡流可以解释环境磁场中低频噪声的减少。零场和场冷实验的比较表明,只要涡流均匀分布且通量正确固定在结点附近,穿过垫圈的通量就不会影响低频噪声。 (C)2000美国物理研究所。 [S0003-6951(00)04022-5]。

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    Selders P.; Wördenweber R.;

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