Dynamics of interacting cavity solitons

Fuente: arXiv
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Auteurs principaux: Leshem, Amir, Akter, Sanzida, Courtright, Logan, Shandilya, Pradyoth, Menyuk, Curtis R., Gat, Omri
Format: Preprint
Publié: 2025
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author Leshem, Amir
Akter, Sanzida
Courtright, Logan
Shandilya, Pradyoth
Menyuk, Curtis R.
Gat, Omri
author_facet Leshem, Amir
Akter, Sanzida
Courtright, Logan
Shandilya, Pradyoth
Menyuk, Curtis R.
Gat, Omri
contents We derive the equations governing the motion of Kerr solitons in pair waveforms. Recent experiments in microresonators have studied a variety of interaction effects in multisoliton waveforms, including collisions and formation of soliton molecules and crystals. Here we analyze the effective interaction that arises from the coupling of soliton-tail overlap nonlinearity with global soliton variables associated with the breaking of translation symmetry. The interaction is either purely repulsive, or alternates between attraction and repulsion, according to whether the decay of soliton tails is monotone or oscillatory. In the latter case, stable fixed points of the effective dynamical system signify stable soliton molecule configuration, but the exponential weakening of the interaction with increasing inter-soliton separation may prevent the molecule from forming in experimentally accessible time scales. Our theory becomes asymptotically exact in the large-separation limit, and we verify the theoretical calculations using soliton trajectories extracted from direct numerical solutions of the wave equation.
format Preprint
id arxiv_https___arxiv_org_abs_2507_07851
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Dynamics of interacting cavity solitons
Leshem, Amir
Akter, Sanzida
Courtright, Logan
Shandilya, Pradyoth
Menyuk, Curtis R.
Gat, Omri
Pattern Formation and Solitons
Optics
We derive the equations governing the motion of Kerr solitons in pair waveforms. Recent experiments in microresonators have studied a variety of interaction effects in multisoliton waveforms, including collisions and formation of soliton molecules and crystals. Here we analyze the effective interaction that arises from the coupling of soliton-tail overlap nonlinearity with global soliton variables associated with the breaking of translation symmetry. The interaction is either purely repulsive, or alternates between attraction and repulsion, according to whether the decay of soliton tails is monotone or oscillatory. In the latter case, stable fixed points of the effective dynamical system signify stable soliton molecule configuration, but the exponential weakening of the interaction with increasing inter-soliton separation may prevent the molecule from forming in experimentally accessible time scales. Our theory becomes asymptotically exact in the large-separation limit, and we verify the theoretical calculations using soliton trajectories extracted from direct numerical solutions of the wave equation.
title Dynamics of interacting cavity solitons
topic Pattern Formation and Solitons
Optics
url https://arxiv.org/abs/2507.07851