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March 3, 2026Optics Letters0 citations

Flat-top solitons and anomalous interactions in media with even-order dispersions and competing nonlinearities

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XHxueqing heSHShijie HaoLXLijing Xing

Key Points

  • Interactions between flat-top solitons exhibit both repulsive and attractive behaviors, expanding their dynamics.
  • High-even-order dispersion supports stable solitons that feature unique oscillatory tails, which differ from traditional models.
  • Flat-top solitons are the result of balancing dispersion with self-phase modulation in nonlinear media.
  • The study constructs families of solitons based on higher-order dispersive effects, pushing the boundaries of current understanding.

Abstract

Flat-top (FT) solitons are optical pulses that arise from the balance of dispersion and self-phase modulation in media with the competing cubic-quintic nonlinearity. Previously, FT solitons were studied only in the case of the second-order dispersion (m=2). Following the recent observation of pure-quartic solitons (corresponding to m=4), we here construct families of FT solitons in the setting with pure-high-even-order dispersion (PHEOD), including m=4,6,8, and 10, and address interactions between them. The PHEOD solitons are completely stable and, unlike the conventional solitons, they feature oscillatory tails. Interactions between the PHEOD solitons are anomalous, featuring repulsion and attraction between in- and out-of-phase solitons, respectively. These results expand the variety of optical solitons maintained by diverse dispersive nonlinear media.

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Cite This Study

he et al. (2026) studied this question.

synapsesocial.com/papers/69a761a7c6e9836116a2fb3ehttps://doi.org/10.1364/ol.591266
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