Self-Decelerating Bright Exciton-Polariton Solitons in Bound-State-in-Continuum Microcavities

Fuente: arXiv
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Main Authors: Xu, Xingran, Jia, Chunyu
Format: Preprint
Published: 2026
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author Xu, Xingran
Jia, Chunyu
author_facet Xu, Xingran
Jia, Chunyu
contents We theoretically investigate the formation and dynamics of bright exciton-polariton solitons within systems engineered to support Bound States in the Continuum. By employing a driven-dissipative Gross-Pitaevskii equation coupled with a rate equation for the excitonic reservoir, we demonstrate that BICs provide a robust platform for stabilizing the condensate against radiative decay. Utilizing a Lagrangian variational approach, we derive analytical expressions describing the trajectory and velocity of these bright solitonic excitations. Notably, we find that the propagation of these BIC-engineered solitons exhibits a distinct self-deceleration, eventually bringing them to a halt at a final position dictated by the initial conditions and intrinsic system parameters. Furthermore, we analyze the dynamical stability of these solitons. Our findings offer valuable insights into the manipulation of polaritonic flows in non-Hermitian systems.
format Preprint
id arxiv_https___arxiv_org_abs_2605_19913
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Self-Decelerating Bright Exciton-Polariton Solitons in Bound-State-in-Continuum Microcavities
Xu, Xingran
Jia, Chunyu
Other Condensed Matter
We theoretically investigate the formation and dynamics of bright exciton-polariton solitons within systems engineered to support Bound States in the Continuum. By employing a driven-dissipative Gross-Pitaevskii equation coupled with a rate equation for the excitonic reservoir, we demonstrate that BICs provide a robust platform for stabilizing the condensate against radiative decay. Utilizing a Lagrangian variational approach, we derive analytical expressions describing the trajectory and velocity of these bright solitonic excitations. Notably, we find that the propagation of these BIC-engineered solitons exhibits a distinct self-deceleration, eventually bringing them to a halt at a final position dictated by the initial conditions and intrinsic system parameters. Furthermore, we analyze the dynamical stability of these solitons. Our findings offer valuable insights into the manipulation of polaritonic flows in non-Hermitian systems.
title Self-Decelerating Bright Exciton-Polariton Solitons in Bound-State-in-Continuum Microcavities
topic Other Condensed Matter
url https://arxiv.org/abs/2605.19913