Abstract
We demonstrate theoretically all-electric control of the superconducting transition temperature using a device comprised of a conventional superconductor, a ferromagnetic insulator, and semiconducting layers with intrinsic spin-orbit coupling. By using analytical calculations and numerical simulations, we show that the transition temperature of such a device can be controlled by electric gating which alters the ratio of Rashba to Dresselhaus spin-orbit coupling. The results offer a new pathway to control superconductivity in spintronic devices.
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CITATION STYLE
Ouassou, J. A., Di Bernardo, A., Robinson, J. W. A., & Linder, J. (2016). Electric control of superconducting transition through a spin-orbit coupled interface. Scientific Reports, 6. https://doi.org/10.1038/srep29312
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