Periodic dynamics of fermionic superfluids in the BCS regime
Abstract
We study the zero temperature non-equilibrium dynamics of a fermionic superfluid in the BCS limit and in the presence of a drive leading to a time dependent chemical potential . We choose a periodic driving protocol characterized by a frequency and compute the fermion density, the wavefunction overlap, and the residual energy of the system at the end of periods of the drive. We demonstrate that the BCS self-consistency condition is crucial in shaping the long-time behaviour of the fermions subjected to the drive and provide an analytical understanding of the behaviour of the fermion density (where is the Fermi momentum vector) after a drive period and for large . We also show that the momentum distribution of the excitations generated due to such a drive bears the signature of the pairing symmetry and can be used, for example, to distinguish between s- and d-wave superfluids. We propose experiments to test our theory.
Keywords
Cite
@article{arxiv.1209.4144,
title = {Periodic dynamics of fermionic superfluids in the BCS regime},
author = {Analabha Roy and Raka Dasgupta and Sanhita Modak and Arnab Das and K. Sengupta},
journal= {arXiv preprint arXiv:1209.4144},
year = {2013}
}
Comments
v1, 10+ pages, 8 figs. Cosmetic changes from the previous version