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    Nonlinear propagation of subcycle pulses in a nonequilibrium multilevel medium

    Anton Pakhomov*

    • *Contact author: antpakhom@gmail.com

    Phys. Rev. A 112, 043540 – Published 24 October, 2025

    DOI: https://doi.org/10.1103/5ch5-wvy2

    Abstract

    The ultrabroad spectrum of few-cycle and especially subcycle pulses requires multiple energy levels in a medium to be properly considered in order to describe the pulse propagation effects. In this paper we go beyond the standard two-level or related few-level approximations and theoretically analyze the propagation of subcycle pulses in a nonequilibrium multilevel resonant medium. We specifically address the case of pulse durations, smaller than the periods of resonant transitions in a medium, where the appropriate analytical models can be provided, and assume accordingly a slow dissipation in the medium. We demonstrate a number of nonlinear phenomena, arising under such conditions, in particular the formation of stable subcycle dissipative solitons of various profiles in a nonequilibrium medium, including superluminal ones, as well as study possible scenarios of their collision.

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    See Also

    Half-cycle dissipative solitons in a multilevel resonant medium

    Anton Pakhomov
    Phys. Rev. A 111, 013522 (2025)

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