Topological phase transitions in superconductors with chiral symmetry
arXiv:2502.19882 · doi:10.1103/PhysRevB.111.184501
Abstract
We study topological transitions in one dimensional superconductors that can harbor multiple edge Majorana bound states protected by chiral symmetry. The chiral symmetry arises due to the structure of the internal spin degrees of freedom of the superconductor and it can be guided by the coupling of the superconductor with sources of time-reversal symmetry breaking. We then consider distinct regions of the phase diagram in the parameters space that are marked by gapless excitations in the spectrum and evaluate the conditions for inducing a topological transition. We show that for gapless chiral symmetric superconductors one can identify a class of physical perturbations that enable a gap opening in the spectrum, without breaking chirality, and turn the system into a topological state. This type of superconductor is dubbed marginal topological superconductor because an infinitesimally small perturbation is able to induce a transition into a topological nontrivial phase. To explicitly demonstrate and evaluate the character of the transitions from gapless to topological gapfull phases we explore different physical cases including p-wave superconductor in the presence of an applied magnetic field or proximity-coupled to a ferromagnet, and s-wave superconductor in a noncollinear magnetic ordering.
15 pages; 13 figures
References in corpus (20)
- Non-Abelian Anyons and Topological Quantum Computation
- Superconducting proximity effect and Majorana fermions at the surface of a topological insulator
- Majorana Fermions and a Topological Phase Transition in Semiconductor-Superconductor Heterostructures
- Non-Abelian Topological Orders and Majorana Fermions in Spin-Singlet Superconductors
- Topological Superconductivity induced by Ferromagnetic Metal Chains
- Topological Yu-Shiba-Rusinov chain from spin-orbit coupling
- Theory of Majorana zero modes in unconventional superconductors
- Skyrmion-(Anti)Vortex Coupling in a Chiral Magnet-Superconductor Heterostructure
- Interplay of topological phases in magnetic adatom-chains on top of a Rashba superconducting surface
- Topological properties of chains of magnetic impurities on a superconducting substrate: Interplay between the Shiba band and ferromagnetic wire limits
- Majorana Bound States Induced by Antiferromagnetic Skyrmion Textures
- Aspects of topological superconductivity in 2D systems: noncollinear magnetism, skyrmions, and higher-order topology
- Magnetic-Field-Induced Topological Reorganization of a P-wave Superconductor
- Majorana quasiparticles in atomic spin chains on superconductors
- Controllable odd-frequency Cooper pairs in multi-superconductor Josephson junctions
- Topological superconductivity mediated by magnons of helical magnetic states
- High orbital-moment Cooper pairs by crystalline symmetry breaking
- Mechanisms for Magnetic Skyrmion Catalysis and Topological Superconductivity
- Odd-frequency pairing in a nonunitary p-wave superconductor with multiple Majorana fermions
- One-dimensional topological superconductor