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Synthesized spatiotemporal mode-locking and photonic flywheel in multimode mesoresonators
by
Xie, Yijun
, Xie, Zhenda
, Zhu, Shining
, Jia, Kunpeng
, Nie, Mingming
, Huang, Shu-Wei
in
142/126
/ 639/624/1111/1112
/ 639/624/400/1118
/ 639/624/400/385
/ 639/624/400/584
/ Analog computers
/ Computers
/ Cross-fertilization
/ Dissipation
/ Fertilization
/ Flywheels
/ Humanities and Social Sciences
/ Mode locking
/ multidisciplinary
/ Nonlinear dynamics
/ Photonics
/ Science
/ Science (multidisciplinary)
/ Solitary waves
/ Timing jitter
/ Ultrafast lasers
2022
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Synthesized spatiotemporal mode-locking and photonic flywheel in multimode mesoresonators
by
Xie, Yijun
, Xie, Zhenda
, Zhu, Shining
, Jia, Kunpeng
, Nie, Mingming
, Huang, Shu-Wei
in
142/126
/ 639/624/1111/1112
/ 639/624/400/1118
/ 639/624/400/385
/ 639/624/400/584
/ Analog computers
/ Computers
/ Cross-fertilization
/ Dissipation
/ Fertilization
/ Flywheels
/ Humanities and Social Sciences
/ Mode locking
/ multidisciplinary
/ Nonlinear dynamics
/ Photonics
/ Science
/ Science (multidisciplinary)
/ Solitary waves
/ Timing jitter
/ Ultrafast lasers
2022
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
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Synthesized spatiotemporal mode-locking and photonic flywheel in multimode mesoresonators
by
Xie, Yijun
, Xie, Zhenda
, Zhu, Shining
, Jia, Kunpeng
, Nie, Mingming
, Huang, Shu-Wei
in
142/126
/ 639/624/1111/1112
/ 639/624/400/1118
/ 639/624/400/385
/ 639/624/400/584
/ Analog computers
/ Computers
/ Cross-fertilization
/ Dissipation
/ Fertilization
/ Flywheels
/ Humanities and Social Sciences
/ Mode locking
/ multidisciplinary
/ Nonlinear dynamics
/ Photonics
/ Science
/ Science (multidisciplinary)
/ Solitary waves
/ Timing jitter
/ Ultrafast lasers
2022
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Synthesized spatiotemporal mode-locking and photonic flywheel in multimode mesoresonators
Journal Article
Synthesized spatiotemporal mode-locking and photonic flywheel in multimode mesoresonators
2022
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Overview
Dissipative Kerr soliton (DKS) frequency combs—also known as microcombs—have arguably created a new field in cavity nonlinear photonics, with a strong cross-fertilization between theoretical, experimental, and technological research. Spatiotemporal mode-locking (STML) not only adds new degrees of freedom to ultrafast laser technology, but also provides new insights for implementing analogue computers and heuristic optimizers with photonics. Here, we combine the principles of DKS and STML to demonstrate the STML DKS by developing an unexplored ultrahigh-quality-factor Fabry–Pérot (FP) mesoresonator based on graded index multimode fiber (GRIN-MMF). Complementing the two-step pumping scheme with a cavity stress tuning method, we can selectively excite either the eigenmode DKS or the STML DKS. Furthermore, we demonstrate an ultralow noise microcomb that enhances the photonic flywheel performance in both the fundamental comb linewidth and DKS timing jitter. The demonstrated fundamental comb linewidth of 400 mHz and DKS timing jitter of 500 attosecond (averaging times up to 25 μs) represent improvements of 25× and 2.5×, respectively, from the state-of-the-art. Our results show the potential of GRIN-MMF FP mesoresonators as an ideal testbed for high-dimensional nonlinear cavity dynamics and photonic flywheel with ultrahigh coherence and ultralow timing jitter.
Here the authors demonstrate spatiotemporal mode-locked dissipative Kerr soliton and enhanced photonic flywheel performances in both the fundamental comb linewidth and DKS timing jitter.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
Subject
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