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Sub-fT/Hz ~(1/2) resolution and field-stable SQUID magnetometer based on low parasitic capacitance sub-micrometer cross-type Josephson tunnel junctions

机译:基于低寄生电容亚微米十字型约瑟夫森隧道结的亚fT / Hz〜(1/2)分辨率和场稳定SQUID磁力计

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We review the development of low parasitic capacitance sub-micrometer cross-type Josephson tunnel junctions for their use in highly sensitive and field-stable SQUID magnetometers. The potential of such junctions is shown on I-V characteristics as well as on Fraunhofer diffraction patterns. The evaluation of Fiske steps lead to a specific junction capacitance of about 62 fF/μm ~2 for a critical current density of about 1.7 kA/cm ~2. The avoidance of any idle-region - the undesired overlap between superconducting electrodes around the junction - due to a self-aligned junction definition process lead to highly sensitive SQUIDs; multiloop SQUID magnetometers exhibiting exceptionally low magnetic field noise levels as low as 0.3 fT/Hz ~(1/2,) as well as large usable voltage swings of more than 150 μVpp. Furthermore, junction dimensions in the sub-micrometer range allowed for very high tolerable background fields during cool-down of up to 6.5 mT. In operation mode, the SQUID magnetometers recovered completely from magnetization pulses of up to 76 mT. With respect to their easy and reliable usage as well as their high sensitivity, the presented SQUID sensors are adequate for many applications, like in geophysics, biomagnetism or low-field magnetic resonance imaging.
机译:我们回顾了低寄生电容亚微米十字型约瑟夫森隧道结的发展,将其用于高灵敏度和场稳定的SQUID磁力计中。 I-V特性以及Fraunhofer衍射图显示了此类结的电位。对于大约1.7 kA / cm〜2的临界电流密度,Fiske步骤的评估会导致大约62 fF /μm〜2的比结电容。避免任何空闲区域-结周围的超导电极之间不希望的重叠-由于自对准结定义过程而导致高度敏感的SQUID;多回路SQUID磁力计表现出低至0.3 fT / Hz〜(1/2,)的异常低的磁场噪声水平,以及超过150μVpp的大可用电压摆幅​​。此外,亚微米范围内的结尺寸允许在高达6.5 mT的冷却期间具有非常高的可容忍背景场。在运行模式下,SQUID磁力计从高达76 mT的磁化脉冲中完全恢复。考虑到其简单可靠的用法以及高灵敏度,提出的SQUID传感器适用于许多应用,例如地球物理学,生物磁性或低场磁共振成像。

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