Current Rectification in Junctions with Spin-Split Superconductors
Ilić, S., Virtanen, P., Heikkilä, T. T., & Bergeret, F. S. (2022). Current Rectification in Junctions with Spin-Split Superconductors. Physical Review Applied, 17(3), Article 034049. https://doi.org/10.1103/PhysRevApplied.17.034049
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Physical Review AppliedDate
2022Copyright
© 2022 American Physical Society
Spin-split superconductors exhibit an electron-hole asymmetric spin-resolved density of states, but the symmetry is restored upon averaging over spin. On the other hand, asymmetry appears again in tunneling junctions of spin-split superconductors with a spin-polarized barrier. As demonstrated recently in both theory and experiment, this fact leads to a particularly strong thermoelectric effect in superconductor-ferromagnet structures. In this work we show another important effect stemming from the electron-hole asymmetry: current rectification. We calculate the charge current in spin-polarized tunnel junctions of a normal metal and a spin-split superconductor with ac and dc voltage bias. In the dc case, the I-V curve is not fully antisymmetric and has a voltage-symmetric component due to spin polarization. This translates to the existence of a rectified current in the ac case, which is proportional to the spin polarization of the junction and strongly depends on the frequency of the applied bias. We discuss possible applications of the rectification effect, including a diode for superconducting electronics and radiation detectors. The analysis of the rectified charge current is supplemented by the discussion of heat current and relevant noise correlators, where electron-hole asymmetry also plays an important role, and which are useful for applications in detectors.
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American Physical Society (APS)ISSN Search the Publication Forum
2331-7019Publication in research information system
https://converis.jyu.fi/converis/portal/detail/Publication/146521155
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Related funder(s)
European Commission; Research Council of FinlandFunding program(s)
FET Future and Emerging Technologies, H2020; Academy Project, AoF
The content of the publication reflects only the author’s view. The funder is not responsible for any use that may be made of the information it contains.
Additional information about funding
This project has received funding from the European Union’s Horizon 2020 research and innovation program under Grant Agreement No. 800923 (SUPERTED). It was also supported by the Academy of Finland (project number 317118), and the Spanish Ministerio de Ciencia e Innovación through project PID2020-114252GB-I00 (SPIRIT).License
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