-pairing superfluid in periodically-driven fermionic Hubbard model with strong attraction
arXiv:1511.07890 · doi:10.1103/PhysRevB.94.174503
Abstract
We propose a novel possibility of dynamically changing the pairing of superconductors from wave to pairing (where the pairs condense at the Brillouin-zone corner momenta) by driving the system with ac fields. We consider a periodically-driven attractive Hubbard model in the strong-coupling regime, and show that the pair-hopping and pair-repulsion terms in the effective Hamiltonian in the Floquet formalism are drastically renormalized in different manners between the two terms, which can change the ground states from an -wave superconductivity to an -pairing superconductivity or a charge-ordered phase. While in isolated systems such as cold atoms a simple quench scheme would not realize the dynamical phase transition into pairing, we show that there are pathways that realize the dynamical transition, where the field amplitude is varied via a charge-ordered phase as an intermediate state.
10 pages, 9 figures
References in corpus (9)
- Photovoltaic Hall effect in graphene
- Equilibrium states of generic quantum systems subject to periodic driving
- Field-induced superconducting phase of FeSe in the BCS-BEC cross-over
- Brillouin-Wigner theory for high-frequency expansion in periodically driven systems: Application to Floquet topological insulators
- Calorimetric Evidence for a Fulde-Ferrell-Larkin-Ovchinnikov Superconducting State in the Layered Organic Superconductor κ_2_2$
- Correlated electron systems periodically driven out of equilibrium: Floquet + DMFT formalism
- Dynamical band flipping in fermionic lattice systems: An ac-field-driven change of the interaction from repulsive to attractive
- Metastable superfluidity of repulsive fermionic atoms in optical lattices
- Floquet FFLO superfluids and Majorana fermions in a shaken fermionic optical lattice
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