Chiral-Extended Photon-Emitter Dressed States in Non-Hermitian Topological Baths
Abstract
The interplay of quantum emitters and non-Hermitian structured baths has received increasing attention in recent years. Here, we predict unconventional quantum optical behaviors of quantum emitters coupled to a non-Hermitian topological bath, which is realized in a 1D Su-Schrieffer-Heeger photonic chain subjected to nonlocal dissipation. In addition to the Hermitian-like chiral bound states in the middle line gap and skin-mode-like hidden bound states inside the point gap, we identify peculiar in-gap chiral and extended photon-emitter dressed states. This is due to the competition of topological-edge localization and non-Hermitian skin-mode localization in combination with the non-Bloch bulk-boundary correspondence. Strikingly, dissipation can shape the wavefunction profile of the dressed state. Furthermore, when two emitters are coupled to the same bath, such in-gap dressed states can mediate the nonreciprocal long-range emitter-emitter interactions, with the interaction range limited only by the dissipation of the bath. Our work opens the door to further study rich quantum optical phenomena and exotic many-body physics utilizing quantum emitters coupled to non-Hermitian baths.
Keywords
Cite
@article{arxiv.2408.07603,
title = {Chiral-Extended Photon-Emitter Dressed States in Non-Hermitian Topological Baths},
author = {Zhao-Fan Cai and Xin Wang and Zi-Xuan Liang and Tao Liu and Franco Nori},
journal= {arXiv preprint arXiv:2408.07603},
year = {2025}
}
Comments
23 pages, 10 figures; Published Version in PRA Letters