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Superconductive Digital Magnetometers with Single-Flux-Quantum Electronics

机译:具有单通量电子设备的超导数字磁力计

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Superconducting Quantum Interference Devices (SQUIDs) are known to be the most sensitive magnetometers, used in a wide range of applications like biomagnetism, geomagnetism, Non Destructive Evaluation (NDE), metrology or fundamental science. For all these applications, the SQUID sensor is used in analog mode and associated with a carefully designed room-temperature control and/or feedback electronics. Nevertheless, the use of SQUID sensors in digital mode is of high interest for several applications due to their quantum accuracy associated to high linearity, and their potentially very high slew rate and dynamic range. The concept and performances of a low-Tc digital magnetometer based on Single-Flux-Quantum (SFQ) logic, fabricated at the FLUXON-ICS Foundry located at IPHT Jena, Germany, are given after a presentation of the context of development of superconductive digital magnetometers. The sensitivity, limited to one magnetic single flux quantum, and a dynamic range of 76 dB, that corresponds to an upper limit of the magnetic field amplitude higher than 5μT, have been measured along with overnight stability. The dynamic range of about 2800 magnetic flux quanta φ_0 has been experimentally observed with an external magnetic field. First signatures of magnetic fields have been observed simultaneously with the ones of analog SQUIDs in the low noise environment of the Laboratoire Souterrain a Bas Bruit (LSBB) located in Rustrel, Provence, France.
机译:超导量子干扰设备(SQUID)是最灵敏的磁力计,广泛用于生物磁性,地磁,无损评估(NDE),计量学或基础科学等领域。对于所有这些应用,SQUID传感器均以模拟模式使用,并与精心设计的室温控制和/或反馈电子设备相关联。然而,由于SQUID传感器与高线性相关的量子精度以及潜在的非常高的转换速率和动态范围,因此在数种应用中使用SQUID传感器引起了人们的极大兴趣。在介绍了超导数字技术发展的背景之后,给出了基于单通量量子(SFQ)逻辑的低Tc数字磁力计的概念和性能,该磁力计是由位于德国耶拿的IPHT的FLUXON-ICS铸造厂制造的。磁力计。已经测量了灵敏度,该灵敏度限于一个磁单通量量子,动态范围为76 dB,对应于大于5μT的磁场幅度上限,并具有过夜稳定性。在外部磁场的作用下,已经观察到大约2800磁通量φ_0的动态范围。在法国普罗旺斯的鲁斯特雷尔的苏特兰实验室的低噪声环境中,与模拟SQUID磁场同时被观察到。

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