Driven Dissipative Soliton Resonance

Fuente: arXiv
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Autori principali: Kalashnikov, Vladimir L., Rudenkov, Alexander, Sorokin, Evgeni, Sorokina, Irina T.
Natura: Preprint
Pubblicazione: 2025
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author Kalashnikov, Vladimir L.
Rudenkov, Alexander
Sorokin, Evgeni
Sorokina, Irina T.
author_facet Kalashnikov, Vladimir L.
Rudenkov, Alexander
Sorokin, Evgeni
Sorokina, Irina T.
contents We investigate the enhancement of the dissipative soliton energy scalability by the injection of a low-power single-mode seed synchronized with a chirped-pulse oscillator round-trip. It is demonstrated that a threshold-like transition to multiple-pulse generation limits the maximum energies of dissipative solitons, in agreement with the thermodynamic interpretation of a strongly chirped pulse stability. We show that there are ``islands'' of instability within a stability range of energies which result from stochastic resonance between ``internal modes'' of soliton and quantum noise of the ``basin''. The transition to multiple-pulsing can be suppressed in a system driven by a comparatively low-power seed. However, seed power growth increases the mode-locking energy threshold and produces ``islands'' of instability as the dissipative soliton energy rises.
format Preprint
id arxiv_https___arxiv_org_abs_2509_24503
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Driven Dissipative Soliton Resonance
Kalashnikov, Vladimir L.
Rudenkov, Alexander
Sorokin, Evgeni
Sorokina, Irina T.
Optics
Pattern Formation and Solitons
We investigate the enhancement of the dissipative soliton energy scalability by the injection of a low-power single-mode seed synchronized with a chirped-pulse oscillator round-trip. It is demonstrated that a threshold-like transition to multiple-pulse generation limits the maximum energies of dissipative solitons, in agreement with the thermodynamic interpretation of a strongly chirped pulse stability. We show that there are ``islands'' of instability within a stability range of energies which result from stochastic resonance between ``internal modes'' of soliton and quantum noise of the ``basin''. The transition to multiple-pulsing can be suppressed in a system driven by a comparatively low-power seed. However, seed power growth increases the mode-locking energy threshold and produces ``islands'' of instability as the dissipative soliton energy rises.
title Driven Dissipative Soliton Resonance
topic Optics
Pattern Formation and Solitons
url https://arxiv.org/abs/2509.24503