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Subradiant emission from regular atomic arrays: universal scaling of decay rates from the generalized Bloch theorem

Quantum Physics 2020-12-15 v2

Abstract

The Hermitian part of the dipole-dipole interaction in infinite periodic arrays of two-level atoms yields an energy band of singly excited states. In this Letter, we show that a dispersion relation, ωkωk\ex(kk\ex)s\omega_k-\omega_{k_\ex} \propto (k-k_{\ex})^s, near the band edge of the infinite system leads to the existence of subradiant states of finite one-dimensional arrays of NN atoms with decay rates scaling as N(s+1)N^{-(s+1)}. This explains the recently discovered N3N^{-3} scaling and it leads to the prediction of power law scaling with higher power for special values of the lattice period. For the quantum optical implementation of the Su-Schrieffer-Heeger (SSH) topological model in a dimerized emitter array, the band-gap-closing inherent to topological transitions changes the value of ss in the dispersion relation and alters the decay rates of the subradiant states by many orders of magnitude.

Keywords

Cite

@article{arxiv.2006.06329,
  title  = {Subradiant emission from regular atomic arrays: universal scaling of decay rates from the generalized Bloch theorem},
  author = {Yu-Xiang Zhang and Klaus Mølmer},
  journal= {arXiv preprint arXiv:2006.06329},
  year   = {2020}
}

Comments

6+7 pages, 3 figures. Comments are welcome