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采用聚焦氦离子束制造的带有Y-Ba-Cu-O纳米狭缝超导量子干涉器件的直接耦合微磁强计。

Direct-coupled micro-magnetometer with Y-Ba-Cu-O nano-slit SQUID fabricated with a focused helium ion beam.

作者信息

Cho Ethan Y, Li Hao, LeFebvre Jay C, Zhou Yuchao W, Dynes R C, Cybart Shane A

机构信息

Department of Mechanical Engineering, University of California, Riverside, 900 University Ave., Riverside, California 92521, USA.

Department of Physics, University of California, Riverside, 900 University Ave., Riverside, California 92521, USA.

出版信息

Appl Phys Lett. 2018 Oct 15;113(16):162602. doi: 10.1063/1.5048776.

Abstract

Direct write patterning of high-transition temperature (high- ) superconducting oxide thin films with a focused helium ion beam is a formidable approach for the scaling of high- circuit feature sizes down to the nanoscale. In this letter, we report using this technique to create a sensitive micro superconducting quantum interference device (SQUID) magnetometer with a sensing area of about 100 × 100 m. The device is fabricated from a single 35-nm thick YBaCuO film. A flux concentrating pick-up loop is directly coupled to a 10 nm × 20 m nano-slit SQUID. The SQUID is defined entirely by helium ion irradiation from a gas field ion source. The irradiation converts the superconductor to an insulator, and no material is milled away or etched. In this manner, a very narrow non-superconducting nano-slit is created entirely within the plane of the film. The narrow slit dimension allows for maximization of the coupling to the field concentrator. Electrical measurements reveal a large 0.35 mV modulation with a magnetic field. We measure a white noise level of 2 Φ/Hz. The field noise of the magnetometer is 4 pT/Hz at 4.2 K.

摘要

用聚焦氦离子束对高转变温度(高温)超导氧化物薄膜进行直接写入图案化,是将高温超导电路特征尺寸缩小至纳米级的一种强大方法。在本信函中,我们报告了使用该技术制作出一种灵敏的微型超导量子干涉器件(SQUID)磁力计,其传感面积约为100×100微米。该器件由单个35纳米厚的钇钡铜氧(YBaCuO)薄膜制成。一个磁通集中拾取环直接耦合到一个10纳米×20微米的纳米狭缝SQUID上。该SQUID完全由来自气体场离子源的氦离子辐照定义。辐照将超导体转变为绝缘体,且没有材料被铣削掉或蚀刻掉。通过这种方式,在薄膜平面内完全形成了一个非常窄的非超导纳米狭缝。狭窄的狭缝尺寸使得与场集中器的耦合最大化。电学测量显示在磁场作用下有0.35毫伏的大幅调制。我们测得白噪声水平为2磁通量子/赫兹。该磁力计在4.2开尔文时的场噪声为4皮特斯拉/赫兹。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d81b/6188902/7edb022e7a26/APPLAB-000113-162602_1-g001.jpg

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