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Development of Magnetization Measurement Devices Using Micro-dc-SQUIDs and a SrRuO Microplate

机译:使用微型dc-SQUID和SrRuO微孔板的磁化测量设备的开发

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摘要

We developed high-sensitivity magnetization measurement devices composed of micro-dc-SQUIDs and a superconducting SrRuO microplate, aiming to investigate novel magnetic properties related to a spin-triplet chiral p-wave superconductor with a mesoscopic size. Micron-sized dc-SQUID was fabricated by thin Al electrodes, and the SQUID structure was improved to prevent magnetic fluxes from intruding into SQUID electrodes. A SrRuO superconducting microplate was fabricated into the size as small as the SQUID loop using a focused ion beam and directly mounted on the SQUID with precise positioning for high-sensitivity magnetization measurements. In the preliminary magnetization measurements of this device, we observed vortices trapped into the plate and thus the lower critical field. The improved magnetization measurement device developed to exclude undesirable flux intrusion successfully enabled high-sensitivity detection of quantized vortex.
机译:我们开发了由微直流SQUID和超导SrRuO微孔板组成的高灵敏度磁化测量设备,旨在研究与具有介观尺寸的自旋三重手征p波超导体有关的新型磁性。用薄的铝电极制造微米级的dc-SQUID,并改进了SQUID结构以防止磁通量侵入SQUID电极。使用聚焦离子束将SrRuO超导微孔板制成与SQUID环一样小的尺寸,并通过精确定位直接安装在SQUID上,以进行高灵敏度的磁化强度测量。在该设备的初步磁化测量中,我们观察到涡流被困在板中,从而观察到较低的临界场。改进的磁化测量设备可以排除不希望的通量侵入,从而成功实现了高灵敏度的量化涡流检测。

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