Finite Temperature Time-Dependent Effective Theory for the Phase Field in two-dimensional d-wave Neutral Superconductor
arXiv:cond-mat/0012511 · doi:10.1103/PhysRevB.64.134519
Abstract
We derive finite temperature time-dependent effective actions for the phase of the pairing field, which are appropriate for a 2D electron system with both non-retarded d- and s-wave attraction. As for s-wave pairing the d-wave effective action contains terms with Landau damping, but their structure appears to be different from the s-wave case due to the fact that the Landau damping is determined by the quasiparticle group velocity v_{g}, which for d-wave pairing does not have the same direction as the non-interacting Fermi velocity v_{F}. We show that for d-wave pairing the Landau term has a linear low temperature dependence and in contrast to the s-wave case are important for all finite temperatures. A possible experimental observation of the phase excitations is discussed.
23 pages, RevTeX4, 10 EPS figures; final version to appear in PRB
References in corpus (1)
Cited by in corpus (22)
- Leggett modes in iron-based superconductors as a probe of Time Reversal Symmetry Breaking
- The low-energy phase-only action in a superconductor: a comparison with the XY model
- Gauge-invariant electromagnetic response of a chiral px+ipy superconductor
- Theory of fluctuation conductivity from interband pairing in pnictide superconductors
- Theory of Macroscopic Quantum Tunneling in High-T_c c-Axis Josephson Junctions
- Coherence length in superconductors from weak to strong coupling
- Leggett mode in a strong-coupling model of iron arsenide superconductors
- Phase diagram of underdoped cuprate superconductors: effect of Cooper-pair phase fluctuations
- Berezinskii-Kosterlitz-Thouless transition and BCS-Bose crossover in the two-dimensional attractive Hubbard model
- Effective action approach and Carlson-Goldman mode in d-wave superconductors
- Disordered XY model: effective medium theory and beyond
- Hybridization of Higgs modes in a bond-density-wave state in cuprates
- Hole pairing from attraction of opposite chirality spin vortices: Non-BCS superconductivity in Underdoped Cuprates
- A gauge approach to the "pseudogap" phenomenology of the spectral weight in high Tc cuprates
- Electromagnetic response of superconductors in the presence of multiple collective modes
- Josephson lattice model for phase fluctuations of local pairs in copper-oxide superconductors
- An effective Hamiltonian for phase fluctuations on a lattice: an extended XY model
- Nonequilibrium relaxation in neutral BCS superconductors: Ginzburg-Landau approach with Landau damping in real time
- Non-equilibrium properties of the S=1/2 Heisenberg model in a time-dependent magnetic field
- Temperature-doping phase diagram of layered superconductors
- Superconductivity and superconducting order parameter phase fluctuations in a weakly doped antiferromagnet
- Phase fluctuations of s-wave superconductors on a lattice