4.7 Article

Stimulated generation of deterministic platicon frequency microcombs

期刊

PHOTONICS RESEARCH
卷 10, 期 8, 页码 1877-1885

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CHINESE LASER PRESS
DOI: 10.1364/PRJ.459403

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资金

  1. National Science Foundation [1741707, 1810506, 1824568]
  2. Office of Naval Research [N00014-161-2094]
  3. Air Force Office of Scientific Research [FA955015-1-0081]
  4. Directorate For Engineering [1741707] Funding Source: National Science Foundation
  5. Directorate For Engineering
  6. Div Of Electrical, Commun & Cyber Sys [1810506] Funding Source: National Science Foundation
  7. Emerging Frontiers & Multidisciplinary Activities [1741707] Funding Source: National Science Foundation

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Significant progress has been made in the generation of dissipative Kerr solitons in chip-scale nonlinear resonators, offering a wide range of applications. In this study, square pulse formation in the normal dispersion regime is achieved, and its tuning is demonstrated through modulation frequency. Experimental and modeling results confirm the observation of platicon pulses with different widths.
Dissipative Kerr soliton generation in chip-scale nonlinear resonators has recently observed remarkable advances, spanning from massively parallel communications, to self-referenced oscillators, and to dual-comb spectroscopy. Often working in the anomalous dispersion regime, unique driving protocols and dispersion in these nonlinear resonators have been examined to achieve the soliton and soliton-like temporal pulse shapes and coherent frequency comb generation. The normal dispersion regime provides a complementary approach to bridge the nonlinear dynamical studies, including the possibility of square pulse formation with flattop plateaus, or platicons. Here we report observations of square pulse formation in chip-scale frequency combs through stimulated pumping at one free spectral range and in silicon nitride rings with +55 fs(2)/mm normal group velocity dispersion. Tuning of the platicon frequency comb via a varied sideband modulation frequency is examined in both spectral and temporal measurements. Determined by second-harmonic autocorrelation and cross correlation, we observe bright square platicon pulse of 17 ps pulse width on a 19 GHz flat frequency comb. With auxiliary-laser-assisted thermal stabilization, we surpass the thermal bistable dragging and extend the mode-locking access to narrower 2 ps platicon pulse states, supported by nonlinear dynamical modeling and boundary limit discussions. (C) 2022 Chinese Laser Press

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