arXiv · 2503.15115
Superconducting diode effect in Ising superconductors
Abstract
We study the superconducting diode effect (SDE) in an Ising superconductor with broken basal mirror symmetry in a parallel magnetic field. We show that in the presence of a small Rashba spin splitting, $Δ_R$, the dominant Ising spin-orbit coupling ($Δ_I >> Δ_R$) dramatically enhances the SDE efficiency compared to a Rashba superconductor with $Δ_I = 0$ and the same $Δ_R$. The suppression of the SDE for $Δ_I = 0$ at $Δ_R$ much larger than the critical temperature ($T_c$) is accidental. At $Δ_R << T_c$, the SDE efficiency is small because, to linear order, $Δ_R$ can be removed by a gauge transformation. These two factors -- the accidental suppression of the SDE at large $Δ_R$ and the systematic suppression at small $Δ_R$ -- are eliminated by Ising spin-orbit coupling. As a result, SDE efficiency is substantially enhanced for $Δ_I >> Δ_R \neq 0$.
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Itai Bankier, Lotan Attias, Alex Levchenko, Maxim Khodas. 2025-05-13. Superconducting diode effect in Ising superconductors. https://doi.org/10.1103/physrevb.111.l180505
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