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Colloquium: Spin-orbit effects in superconducting hybrid structures
Spin-orbit coupling (SOC) relates to the interaction between an electron's motion and its spin
and is ubiquitous in solid-state systems. Although the effect of SOC in normal-state …
and is ubiquitous in solid-state systems. Although the effect of SOC in normal-state …
Microscopic study of the Josephson supercurrent diode effect in Josephson junctions based on two-dimensional electron gas
Superconducting systems that simultaneously lack space-inversion and time-reversal
symmetries have recently been the subject of a flurry of experimental and theoretical …
symmetries have recently been the subject of a flurry of experimental and theoretical …
Superconducting triplet pairings and anisotropic magnetoresistance effects in ferromagnet/superconductor/ferromagnet double-barrier junctions
Ferromagnetic spin valves offer the key building blocks to integrate giant-and tunneling-
magnetoresistance effects into spintronics devices. Starting from a generalized Blonder …
magnetoresistance effects into spintronics devices. Starting from a generalized Blonder …
Transport signatures of radial Rashba spin-orbit coupling at ferromagnet/superconductor interfaces
Spin-orbit coupling (SOC) emerging at the interfaces of superconducting magnetic tunnel
junctions is at the heart of multiple unprecedented physical phenomena, covering triplet …
junctions is at the heart of multiple unprecedented physical phenomena, covering triplet …
Inducing topology in twisted nodal superconductors
Twisted nodal superconductors have been shown to exhibit chiral topological
superconductivity under broken time-reversal symmetry. Here we show how a time-reversal …
superconductivity under broken time-reversal symmetry. Here we show how a time-reversal …
Planar Josephson Hall effect in topological Josephson junctions
Josephson junctions based on three-dimensional topological insulators offer intriguing
possibilities to realize unconventional p-wave pairing and Majorana modes. Here, we …
possibilities to realize unconventional p-wave pairing and Majorana modes. Here, we …
Spin Relaxation in -Wave Superconductors in the Presence of Resonant Spin-Flip Scatterers
Employing analytical methods and quantum transport simulations we investigate the
relaxation of quasiparticle spins in graphene proximitized by an s-wave superconductor in …
relaxation of quasiparticle spins in graphene proximitized by an s-wave superconductor in …
Anomalous Josephson effect between d-wave superconductors through a two-dimensional electron gas with both Rashba spin–orbit coupling and Zeeman splitting
BH Du, M Yang, LB Hu - Chinese Physics B, 2023 - iopscience.iop.org
Based on the Bogoliubov–de Gennes equation and the extended McMillan's Green's
function formalism, we study theoretically the Josephson effect between two d-wave …
function formalism, we study theoretically the Josephson effect between two d-wave …
Supergap and subgap enhanced currents in asymmetric Josephson junctions
M Alidoust, K Halterman - Physical Review B, 2020 - APS
We have theoretically studied the supercurrent profiles in three-dimensional normal metal
and ferromagnetic Josephson configurations, where the magnitude of the superconducting …
and ferromagnetic Josephson configurations, where the magnitude of the superconducting …
Anomalous Josephson Hall effect in doped topological insulators with nematic superconductivity
RS Akzyanov, AL Rakhmanov - Physical Review B, 2022 - APS
We study the physics of the Josephson effect in the odd-parity nematic superconductors
within the Ginzburg-Landau approach. The order parameter is a two-component vector that …
within the Ginzburg-Landau approach. The order parameter is a two-component vector that …