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Coherent excitation of a two-state system by a Lorentzian field

Quantum Physics 2026-07-29 v1

Abstract

We study the coherent excitation of a two-state quantum system by a field with a Lorentzian temporal envelope and constant carrier frequency. The associated differential equation admits an exact local representation in terms of confluent Heun functions. For the transition probability we develop a Dykhne-Davis-Pechukas (DDP) description based on the two relevant complex transition points and their interference. The DDP action is analyzed directly in the weak- and strong-coupling limits, yielding explicit asymptotic expressions for the oscillation phase, oscillation envelope, far-detuned line shape, and near-resonant behavior. In particular, the strong-coupling asymptotics imply a linewidth proportional to the inverse peak Rabi frequency for resonant odd-π\pi pulses, thereby exhibiting the power-narrowing characteristic of the Lorentzian pulse.

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Cite

@article{arxiv.2607.27466,
  title  = {Coherent excitation of a two-state system by a Lorentzian field},
  author = {Aida Shiroyan and Genko S. Vasilev and Nikolay V. Vitanov},
  journal= {arXiv preprint arXiv:2607.27466},
  year   = {2026}
}

Comments

14 pages, 5 figures