English

Universal Bright-Bright Integrated Soliton Molecule via Parametric Binding

Optics 2026-02-09 v1

Abstract

Dissipative Kerr solitons (DKSs) have emerged as the preferred solution for on-chip integrated optical frequency comb (OFC) generation in metrology. A multi-pumped DKS enables either all-optical trapping in the Kerr-induced synchronization regime, or a multi-component OFC with \greg{a locked repetition rate yet with constant frequency offsets between the components} in the multi-color DKS regime. The multi-color DKS regime is of particular interest since nonlinear mixing between the DKS and the secondary pumped component generates idler waves at different frequencies that are useful for spectral extension of the DKS comb. Here, we explore multi-color idler generation at frequencies in which the resonator free spectral range matches that at the DKS. We demonstrate theoretically and experimentally that without phase matching, the idler forms a bright pulse fundamentally bound to the bright DKS through parametric interaction, despite occurring in normal dispersion. Our work can enable new applications in metrology and spectroscopy of quantum systems toward visible wavelengths, as the parametric nature of our bright-bright state eliminates dependence on dispersion regime or visible wavelength pumping.

Cite

@article{arxiv.2602.06711,
  title  = {Universal Bright-Bright Integrated Soliton Molecule via Parametric Binding},
  author = {Pradyoth Shandilya and Shao-Chien Ou and Alioune Niang and Gary Carter and Curtis R. Menyuk and Kartik Srinivasan and Grégory Moille},
  journal= {arXiv preprint arXiv:2602.06711},
  year   = {2026}
}

Comments

To appear in APL photonics

R2 v1 2026-07-01T10:24:27.131Z