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Theory of soliton self-frequency shift in silica optical microresonators with a modified Raman response by the Boson peak.

作者信息

Hu Malong, Xu Shuyi, Ding Shulin, He Bing, Xiao Min, Jiang Xiaoshun

出版信息

Opt Express. 2024 Jan 29;32(3):4062-4071. doi: 10.1364/OE.507726.

DOI:10.1364/OE.507726
PMID:38297614
Abstract

We theoretically study the Raman-induced self-frequency shift of dissipative Kerr soliton in silica optical resonators by taking into consideration the Boson peak. We find that the Boson peak will greatly increase the soliton self-frequency shift and contribute even more than the shift induced by the Lorentzian response for certain pulse durations. We also show that the revised Raman shock time is associated with the pulse width even for a relatively long pulse. Moreover, we demonstrate that the background continuous wave decreases the self-frequency shift of the soliton via the interference with the soliton. Our theoretical and simulated results display excellent agreement with the previous experimental values in the silica-based Kerr-soliton microcomb.

摘要

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