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Dark Polaron Theory for High Intensity Laser Cooling

Quantum Physics 2026-07-24 v1

Abstract

Conventional laser control schemes for cooling and gate operation of trapped ions are limited to the regime of weak laser intensities and small Lamb-Dicke parameters. To overcome this limitation, we present the concept of dark polarons: spatially extended states of pseudospin polarization that are fully decoupled from a lambda laser configuration. In this picture, all high-order Lamb-Dicke terms collapse into a single linear coupling independent of laser intensity. We apply it to definitively elucidate the reasons behind cooling rate limitations observed in recent experimental implementations of electromagnetically induced transparency with high-intensity lasers.

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Cite

@article{arxiv.2607.22243,
  title  = {Dark Polaron Theory for High Intensity Laser Cooling},
  author = {Marcel Morillas-Rozas and Alberto López-García and Enamul Haque and Gonzalo Reina Rivero and Javier Cerrillo},
  journal= {arXiv preprint arXiv:2607.22243},
  year   = {2026}
}

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