Higgs Mechanism, Phase Transitions, and Anomalous Hall Effect in Three-Dimensional Topological Superconductors
arXiv:1504.07993 · doi:10.1103/PhysRevB.92.224507
Abstract
We demonstrate that the Higgs mechanism in three-dimensional topological superconductors exhibits unique features with experimentally observable consequences. The Higgs model we discuss has two superconducting components and an axion-like magnetoelectric term with the phase difference of the superconducting order parameters playing the role of the axion field. Due to this additional term, quantum electromagnetic and phase fluctuations lead to a robust topologically non-trivial state that holds also in the presence of interactions. In this sense, we show that the renormalization flow of the topologically nontrivial phase cannot be continuously deformed into a topologically non-trivial one. One consequence of our analysis of quantum critical fluctuations, is the possibility of having a first-order phase transition in the bulk and a second-order phase transition on the surface. We also explore another consequence of the axionic Higgs electrodynamics, namely, the anomalous Hall effect. In the low frequency London regime an anomalous Hall effect is induced in the presence of an applied electric field parallel to the surface. This anomalous Hall current is induced by a Lorentz-like force arising from the axion term, and it involves the relative superfluid velocity of the superconducting components. The anomalous Hall current has a negative sign, a situation reminiscent of, but quite distinct in physical origin from the anomalous Hall effect observed in high- superconductors. In contrast to the latter, the anomalous Hall effect in topological superconductors is non-dissipative and occurs in the absence of vortices.
v1: 5 pages, 2 figures; v2: 9 pages, 2 figures, extended revised version including new results
References in corpus (13)
- Quantum Spin Hall Effect and Topological Phase Transition in HgTe Quantum Wells
- Quantum Spin Hall Insulator State in HgTe Quantum Wells
- Topological Insulators with Inversion Symmetry
- Signatures of Majorana fermions in hybrid superconductor-semiconductor nanowire devices
- Discovery (theoretical prediction and experimental observation) of a large-gap topological-insulator class with spin-polarized single-Dirac-cone on the surface
- A topological Dirac insulator in a quantum spin Hall phase : Experimental observation of first strong topological insulator
- Classification of topological insulators and superconductors in three spatial dimensions
- Topological Field Theory of Time-Reversal Invariant Insulators
- Observation of Majorana Fermions in Ferromagnetic Atomic Chains on a Superconductor
- Observation of topological surface state quantum Hall effect in an intrinsic three-dimensional topological insulator
- Interacting fermionic topological insulators/superconductors in three dimensions
- Axion topological field theory of topological superconductors
- Field- and temperature induced topological phase transitions in the three-dimensional -component London superconductor
Cited by in corpus (6)
- Global phase diagram of a three dimensional dirty topological superconductor
- Spontaneous breaking of time-reversal symmetry in topological superconductors
- Duality of a compact topological superconductor model and the Witten effect
- D topological superconductors: screening and confinement in presence of external fields
- Strong photon coupling to high-frequency antiferromagnetic magnons via topological surface states
- Interplay of Tilt and Axion Fields in Topological Superconductors: Anisotropy in the Meissner Effect