Massless collective excitations in frustrated multi-band superconductors
arXiv:1310.0906 · doi:10.1103/PhysRevB.88.224516
Abstract
We study collective excitations in three- and four-band superconductors with inter-band frustration, which causes neither 0 nor inter-band phases in the superconducting state. Using a low-energy spin-Hamiltonian originating from a multi-band tight-binding model, we find that a massless Leggett mode occurs in a wide parameter region of this four-band system. This massless mode is related to the fact that the mean-field energy does not depend on a continuous superconducting phase. In other words, we find a link of the massless mode with a degeneracy between a time-reversal-symmetry-breaking state (neither 0 nor phases) and a time-reversal-symmetric state (either 0 or phases). Therefore, the mass of this collective mode characterizes well the time-reversal symmetry in frustrated multi-band superconductors.
4 pages, 4 figures
References in corpus (11)
- High-temperature superconductivity in iron-based materials
- To What Extent Iron-Pnictide New Superconductors Have Been Clarified: A Progress Report
- Orbital superfluidity in the -band of a bipartite optical square lattice
- State preparation and dynamics of ultracold atoms in higher lattice orbitals
- Observation of Leggett's collective mode in a multi-band MgB2 superconductor
- BCS-BEC crossover on the two-dimensional honeycomb lattice
- Quasi-Nambu-Goldstone Modes in Bose-Einstein Condensates
- Collective modes in multiband superfluids and superconductors: Multiple dynamical classes
- Massless modes and abelian gauge fields in multi-band superconductors
- Leggett mode in a strong-coupling model of iron arsenide superconductors
- Frustrated Bose-Einstein condensates with non-collinear orbital ordering
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