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Mode Switching Through Exceptional Points Induced by Lasing-Inversion Coupling

Optics 2026-01-30 v1

Abstract

The gain-loss coupling in optical cavities induces exceptional points (EPs), where two optical modes coalesce. The large modal overlap near an EP intensifies gain competition, favoring single-mode lasing. Recent studies further revealed self-modulation closer to the EP that transforms the lasing mode into a frequency comb. Such EP-enabled comb formation suggests a previously unaccounted-for mechanism that overcomes the strong gain competition and drives a second mode to threshold. Here, using a Bloch coupled-mode theory derived from first principles, we show that the second threshold arises from dynamical couplings among the population inversion, the lasing field, and a dark cavity mode. The lasing-inversion coupling produces extra EPs, whose spectral structure governs switching among single-mode lasing and frequency combs with different repetition rates. This above-threshold mode-switching mechanism enables new opportunities for tunable photonic systems, including adaptive optical communication links and dual-comb spectroscopy.

Keywords

Cite

@article{arxiv.2601.21907,
  title  = {Mode Switching Through Exceptional Points Induced by Lasing-Inversion Coupling},
  author = {Xingwei Gao and Cheng Guo and David Burghoff},
  journal= {arXiv preprint arXiv:2601.21907},
  year   = {2026}
}
R2 v1 2026-07-01T09:26:00.020Z