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March 13, 2026Light Science & Applications4 citationsOpen Access

Multicolor interband solitons in microcombs

QJQing-Xin JiHHHanfei HouJGJinhao Ge

Key Points

  • This research aims to explore the generation of multicolor solitons in microcombs and the underlying mechanisms involved.
  • Experimental observation of multicolor solitons using a single optical pump
  • Investigation of dispersion conditions in optical microresonators
  • Analysis of Kerr-induced pulse interactions
  • Observation of multicolor soliton pulses generated from one pump source
  • Individual soliton pulses maintain the same repetition rate
  • Potential for full phase-locking among constituent solitons

Abstract

Abstract In microcombs, solitons can drive non-soliton-forming modes to induce optical gain. Under specific conditions, a regenerative secondary temporal pulse coinciding in time and space with the exciting soliton pulse will form at a new spectral location. A mechanism involving Kerr-induced pulse interactions has been proposed theoretically, leading to multicolor solitons containing constituent phase-locked pulses. However, the occurrence of this phenomenon requires dispersion conditions that are not naturally satisfied in conventional optical microresonators. Here, we report the experimental observation of multicolor pulses from a single optical pump in a way that is closely related to the concept of multicolor solitons. The individual soliton pulses share the same repetition rate and could potentially be fully phase-locked. They are generated using interband coupling in a compound resonator.

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Cite This Study

Ji et al. (2026) studied this question.

synapsesocial.com/papers/69b3ab6e02a1e69014ccc4aehttps://doi.org/10.1038/s41377-026-02200-0
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