Geometric Asymmetry-Enhanced Nonreciprocal Supercurrent Transport Revealed by Second-Harmonic Response
arXiv:2503.03441 · doi:10.1002/adfm.202505766
Abstract
Nonreciprocal transport in superconducting systems serves as a powerful probe of symmetry-breaking mechanisms, with the superconducting diode effect emerging as a key manifestation enabling cryogenic rectification. While theoretical models have extensively explored superconducting nonreciprocity, experimental verification remains challenging, as conventional transport measurements struggle to disentangle intrinsic and extrinsic contributions. Nonlinear transport analysis, particularly second-harmonic response, offers an alternative approach by providing a sensitive probe for detecting spatial inversion symmetry breaking in the presence of time-reversal symmetry violation. Here, we systematically investigate the influence of geometric symmetry on nonreciprocal transport by comparing two triangular-extended Hall bar configurations with a symmetric Hall bar control. Second-harmonic nonlinear transport measurements reveal that the triangular extension significantly enhances nonreciprocal response, exhibiting a clear dependence on the base angle of the extension. These findings establish a direct connection between mesoscopic geometry and macroscopic nonreciprocity, demonstrating how spatial symmetry and vortex dynamics govern nonlinear transport. This insight offers a guiding principle for designing superconducting rectification architectures.
17 pages, 4 figures, v2
References in corpus (17)
- Realization of the field-free Josephson Diode
- Supercurrent diode effect and finite momentum superconductivity
- A phenomenological theory of superconductor diodes
- Ubiquitous Superconducting Diode Effect in Superconductor Thin Films
- Theory of the supercurrent diode effect in Rashba superconductors with arbitrary disorder
- Rearrangement of the vortex lattice due to instabilities of vortex flow
- Direct Observation of a Superconducting Vortex Diode
- Non-reciprocity of Vortex-limited Critical Current in Conventional Superconducting Micro-bridges
- Superconducting Diode Effects: Mechanisms, Materials and Applications
- Universal spin superconducting diode effect from spin-orbit coupling
- Supercurrent diode effect in thin film Nb tracks
- Superconducting diode effect in diffusive superconductors and Josephson junctions with Rashba spin-orbit coupling
- Superconducting Diode Effect in Two-dimensional Topological Insulator Edges and Josephson Junctions
- Superconducting nanowire diode
- Flux-flow instability across Berezinskii Kosterlitz Thouless phase transition in KTaO (111) based superconductor
- Harnessing the superconducting diode effect through inhomogeneous magnetic fields
- Spontaneous voltage peaks in superconducting Nb channels without engineered asymmetry