Orbital-angular-momentum-resolved diagnostics for tracking internal phase evolution in multi-bound solitons

  • Zhao Y
  • Fan J
  • Song Y
  • et al.
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Abstract

The generation of multi-bound solitons is a fascinating subject of investigation in many conservative and dissipative systems, such as photonics, fluid mechanics, Bose-Einstein condensates, and so on. In this study, we demonstrate the successful extraction of phase dynamics between solitons in bound multiple solitons with up to seven constituents in a mode-locked Er laser system. By mapping the internal phase motions of multi-bound solitons to the spatial phase movement of cylindrical vector beams using orbital angular momentum (OAM)-based diagnostics, different categories of internal pulsations are revealed. We show that bound state of four solitons exhibits linear drifting relative phase evolution dynamics; while for bound multiple solitons with constituents from five to seven pulses, stationary relative phase dynamics are observed. These findings highlight the possibility of the OAM-based method access to the internal motion of multi-soliton molecules with more freedom of degrees and fuel the analogy with research on chemistry molecule complex.

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Zhao, Y., Fan, J., Song, Y., & Hu, M. (2021). Orbital-angular-momentum-resolved diagnostics for tracking internal phase evolution in multi-bound solitons. Optics Express, 29(11), 16686. https://doi.org/10.1364/oe.424602

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