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Meissner effect measurement of single indium particle using a customized on-chip nano-scale superconducting quantum interference device system

机译:使用定制的片上纳米级超导量子干涉装置系统测量单个铟粒子的Meissner效应

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摘要

As many emergent phenomena of superconductivity appear on a smaller scale and at lower dimension, commercial magnetic property measurement systems (MPMSs) no longer provide the sensitivity necessary to study the Meissner effect of small superconductors. The nano-scale superconducting quantum interference device (nano-SQUID) is considered one of the most sensitive magnetic sensors for the magnetic characterization of mesoscopic or microscopic samples. Here, we develop a customized on-chip nano-SQUID measurement system based on a pulsed current biasing method. The noise performance of our system is approximately 4.6 × 10−17 emu/Hz1/2, representing an improvement of 9 orders of magnitude compared with that of a commercial MPMS (~10−8 emu/Hz1/2). Furthermore, we demonstrate the measurement of the Meissner effect of a single indium (In) particle (of 47 μm in diameter) using our on-chip nano-SQUID system. The system enables the observation of the prompt superconducting transition of the Meissner effect of a single In particle, thereby providing more accurate characterization of the critical field Hc and temperature Tc. In addition, the retrapping field Hre as a function of temperature T of single In particle shows disparate behavior from that of a large ensemble.
机译:随着许多超导现象的出现以较小的规模和较小的尺寸出现,商业磁性能测量系统(MPMS)不再提供研究小型超导体的迈斯纳效应所必需的灵敏度。纳米级超导量子干涉装置(nano-SQUID)被认为是对介观或微观样品进行磁学表征的最灵敏的磁传感器之一。在这里,我们基于脉冲电流偏置方法开发了定制的片上纳米SQUID测量系统。我们系统的噪声性能约为4.6×10 −17 emu / Hz 1/2 ,与商用MPMS相比,提高了9个数量级( 〜10 −8 emu / Hz 1/2 )。此外,我们演示了使用我们的片上纳米SQUID系统测量单个铟(In)粒子(直径47μm)的Meissner效应的方法。该系统能够观察单个In粒子的Meissner效应的迅速超导转变,从而提供对临界场Hc和温度Tc的更精确表征。此外,作为单个In粒子温度T的函数的重新捕获场Hre显示出与大集合体不同的行为。

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