Derives a refraction law for vortices at tilted SN interfaces, confirmed by proximity-effect simulations that also reveal low-mass trapping and viscosity-driven displacements under transport current.
Title resolution pending
3 Pith papers cite this work. Polarity classification is still indexing.
verdicts
UNVERDICTED 3representative citing papers
Introduces spinor pairing orders with half-integer monopole charges from odd Chern number differences between paired Fermi surfaces, shown in tight-binding models with single gap nodes and fractional Mermin-Ho relations.
Numerical study demonstrates controlled transport of Z4 parafermion edge states in a ladder model and quantifies the adiabatic speed limit under realistic conditions.
citing papers explorer
-
Vortex Refraction at Tilted Superconductor-Normal Metal Interfaces
Derives a refraction law for vortices at tilted SN interfaces, confirmed by proximity-effect simulations that also reveal low-mass trapping and viscosity-driven displacements under transport current.
-
Berry Phase Enforced Spinor Pairing Order
Introduces spinor pairing orders with half-integer monopole charges from odd Chern number differences between paired Fermi surfaces, shown in tight-binding models with single gap nodes and fractional Mermin-Ho relations.
-
Shuttling of $\mathbb{Z}_4$ parafermions in an electronic ladder model
Numerical study demonstrates controlled transport of Z4 parafermion edge states in a ladder model and quantifies the adiabatic speed limit under realistic conditions.