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首页> 外文期刊>Physica, C. Superconductivity and its applications >Vortex lattice matching effects and 1/f-noise reduction in HTS films and devices equipped with regular arrays of artificial defects
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Vortex lattice matching effects and 1/f-noise reduction in HTS films and devices equipped with regular arrays of artificial defects

机译:HTS薄膜和配备有常规人工缺陷阵列的设备中的涡旋晶格匹配效应和1 / f降噪

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In this contribution, we report (i) on the observation of commensurability effects between regular arrays of artificial defects and the vortex lattice in high-temperature superconductor (HTS) films and (ii) on the reduction of low-frequency 1/f noise in high-T-c superconducting quantum interference devices (SQUIDs) caused by these regular arrays of artificial defects. Arrays of submicrometer holes (antidots) with periodicity down to 0.5 mu m were patterned into YBCO thin films without deterioration of superconducting properties. Commensurability effects between the antidot and vortex lattice were observed via resistive and inductive measurements, which clearly prove the presence of an attractive interaction between vortices and antidots and the existence of multiquanta vortices. Consequently, the attractive interaction between antidots and vortices was used to reduce the vortex motion in superconducting devices, thus leading to a strong reduction of 1/f noise. For a proof of the principle, YBCO films with antidot lattices (5 mu m spacing) were mounted in flip-chip configuration onto bicrystal rf-SQUIDs. Commensurability between vortex lattice in film, fluxons in the bicrystal boundary and the antidot array was observed in the form of a strong reduction and increase of the 1/f noise at discrete magnetic inductions, which are predicted by simple geometric considerations. The transfer of this very promising technology for 1/f noise reduction to standard HTS SQUIDs used in applications (e.g., NDE, MGC) is presently under way. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 26]
机译:在此贡献中,我们报告(i)观察高温超导体(HTS)膜中常规缺陷阵列与涡流晶格之间的可比性效应,以及(ii)降低低频1 / f噪声由这些规则的人工缺陷阵列引起的高Tc超导量子干涉装置(SQUID)。将周期低至0.5微米的亚微米孔阵列(解毒剂)图案化为YBCO薄膜,而不会降低超导性能。通过电阻和电感测量观察到解毒剂和涡旋晶格之间的可比性效应,这清楚地证明了漩涡和解毒剂之间存在有吸引力的相互作用以及多量子涡旋的存在。因此,解毒剂与涡旋之间的吸引作用被用来减少超导装置中的涡旋运动,从而导致1 / f噪声的强烈降低。为了证明该原理,将具有解毒点阵(5微米间距)的YBCO膜以倒装芯片配置安装在双晶rf-SQUID上。观察到膜中的涡旋晶格,双晶边界的通量和解毒剂阵列之间的可比性,其形式为在离散磁感应强度下1 / f噪声的强烈降低和增加,这是通过简单的几何考虑而预测的。目前正在将这种非常有希望的技术用于降低1 / f噪声,并将其转移到应用中使用的标准HTS SQUID(例如NDE,MGC)。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:26]

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