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December 5, 2025Physical Review Research4 citationsOpen Access

Controlled manipulation of solitons in a recirculating fiber loop using external potentials

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FCFrançois CopiePSPierre SuretSRStéphane Randoux

Key Points

  • Soliton dynamics were precisely manipulated using programmable external potentials, enhancing control.
  • Demonstrations included soliton trapping and parametric excitation, revealing particle-like interactions.
  • The approach utilized a recirculating optical fiber loop with synchronous phase modulation for soliton manipulation.
  • Findings highlight potential applications in nonlinear wave dynamics and engineered soliton studies.

Abstract

Optical solitons are self-sustained wave packets that propagate without distortion due to a balance between dispersion and nonlinearity. Their unique stability underpins key photonic applications while also playing a central role in nonlinear wave physics. However, real-time control over soliton dynamics in nondissipative systems remains a major challenge, limiting their practical applications in photonic systems. Here, we introduce a fiber-based platform for soliton manipulation, by creating programmable external potentials through synchronous arbitrary phase modulation in a recirculating optical fiber loop. We demonstrate precise soliton trapping, parametric excitation, and coupled multisoliton interactions, revealing particle-like behavior in excellent agreement with a Hamiltonian description in which solitons are treated as interacting particles. The strong analogy with matter-wave solitons in Bose-Einstein condensates highlights the broader implications of our approach, which provides a versatile experimental tool for the study of nonlinear wave dynamics and engineered soliton manipulation.

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Cite This Study

Copie et al. (2025) studied this question.

synapsesocial.com/papers/693231288e51979591dce66dhttps://doi.org/10.1103/qcts-whtp
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