Non-Hermitian superconducting diode effect
arXiv:2508.05101 · doi:10.1103/n51c-17pn
Abstract
The study of non-reciprocal phenomena has long captivated interest in both Hermitian and non-Hermitian systems. The superconducting diode effect (SDE) is a non-reciprocal phenomenon characterized by unequal critical charge supercurrents flowing in opposite directions in Hermitian superconducting systems. In this study, we introduce an SDE driven by non-Hermiticity in a superconducting quantum interference device (SQUID) under an external magnetic flux, which we refer to as the non-Hermitian SDE. Non-Hermiticity is introduced by coupling one of the two Josephson junctions to a gapless electron reservoir, introducing phase decoherence. Remarkably, we find that an emergent non-Hermitian Fermi-Dirac distribution can give rise to SDE in the non-Hermitian SQUID. We analyze the behavior of the SDE under both direct current (dc) and alternating current (ac) biases, highlighting the appearance of direction-dependent critical currents and asymmetric Shapiro steps as hallmarks of the SDE. Our findings not only reveal an experimentally accessible mechanism for non-Hermitian SDE but also open new avenues for investigating non-reciprocal phenomena in non-Hermitian systems.
References in corpus (13)
- Making Sense of Non-Hermitian Hamiltonians
- The physics of exceptional points
- Direct coupling between magnetism and superconducting current in Josephson Phi junction
- New topological invariants in non-Hermitian systems
- Anomalous Josephson effect induced by spin-orbit interaction and Zeeman effect in semiconductor nanowires
- Anomalous Josephson Current in Junctions with Spin-Polarizing Quantum Point Contacts
- Josephson Diode Effect in High Mobility InSb Nanoflags
- Field-free Josephson diode effect in altermagnet/normal metal/altermagnet junctions
- Lévy noise effects on Josephson junctions
- Josephson diode based on conventional superconductors and a chiral quantum dot
- Half-Integer Shapiro Steps in a Short Ballistic InAs Nanowire Josephson Junction
- Influences of the dissipative topological edge state on quantized transport in MnBi2Te4
- Voltage staircase in a current-biased quantum-dot Josephson junction