磁约瑟夫森结中约瑟夫森超电流的非常规磁滞现象

R. Satariano, L. Parlato, R. Caruso, H. G. Ahmad, A. Miano, L. Di Palma, D. Salvoni, D. Montemurro, F. Tafuri, G. Pepe, D. Massarotti, G. Ausanio, A. Vettoliere, C. Granata, G. Lamura
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引用次数: 0

摘要

在基于超导体-绝缘体-超导体-铁磁-超导体(SIS 'FS)的磁约瑟夫森结(MJJs)中,我们提供了一个非常规磁场行为的证据,该临界电流的特征是反向磁滞,即整个磁场模式在扫过外场时发生倒转。通过对S/F/S三层膜的热性能测量,我们排除了这种不寻常的行为可能与F杂散场有关。原则上,这一发现可能对可扩展低温存储器的设计和正常运作起着至关重要的作用。
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Unconventional magnetic hysteresis of the Josephson supercurrent in magnetic Josephson Junctions
In Magnetic Josephson Junctions (MJJs) based on Superconductor-Insulator-Superconductor-Ferromagnet-Superconductor (SIS’FS), we provide evidence of an unconventional magnetic field behavior of the critical current characterized by an inverted magnetic hysteresis, i.e., an inverted shift of the whole magnetic field pattern when sweeping the external field. By thermoremanence measurements of S/F/S trilayers, we have ruled out that this uncommon behavior could be related to the F-stray fields. In principle, this finding could have a crucial role in the design and proper functioning of scalable cryogenic memories.
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