TY - JOUR
T1 - Birefringence-Managed Normal-Dispersion Fiber Laser Delivering Energy-Tunable Chirp-Free Solitons
AU - Mao, Dong
AU - He, Zhiwen
AU - Gao, Qun
AU - Zeng, Chao
AU - Yun, Ling
AU - Du, Yueqing
AU - Lu, Hua
AU - Sun, Zhipei
AU - Zhao, Jianlin
N1 - Publisher Copyright:
Copyright © 2022 Dong Mao et al.
PY - 2022/1
Y1 - 2022/1
N2 - Chirp-free solitons have been mainly achieved with anomalous-dispersion fiber lasers by the balance of dispersive and nonlinear effects, and the single-pulse energy is constrained within a relatively small range. Here, we report a class of chirp-free pulse in normal-dispersion erbium-doped fiber lasers, termed birefringence-managed soliton, in which the birefringence-related phasematching effect dominates the soliton evolution. Controllable harmonic mode locking from 5 order to 85 order is obtained at the same pump level of ~10mW with soliton energy fully tunable beyond ten times, which indicates a new birefringencerelated soliton energy law, which fundamentally differs from the conventional soliton energy theorem. The unique transformation behavior between birefringence-managed solitons and dissipative solitons is directly visualized via the singleshot spectroscopy. The results demonstrate a novel approach of engineering fiber birefringence to create energy-tunable chirpfree solitons in normal-dispersion regime and open new research directions in fields of optical solitons, ultrafast lasers, and their applications.
AB - Chirp-free solitons have been mainly achieved with anomalous-dispersion fiber lasers by the balance of dispersive and nonlinear effects, and the single-pulse energy is constrained within a relatively small range. Here, we report a class of chirp-free pulse in normal-dispersion erbium-doped fiber lasers, termed birefringence-managed soliton, in which the birefringence-related phasematching effect dominates the soliton evolution. Controllable harmonic mode locking from 5 order to 85 order is obtained at the same pump level of ~10mW with soliton energy fully tunable beyond ten times, which indicates a new birefringencerelated soliton energy law, which fundamentally differs from the conventional soliton energy theorem. The unique transformation behavior between birefringence-managed solitons and dissipative solitons is directly visualized via the singleshot spectroscopy. The results demonstrate a novel approach of engineering fiber birefringence to create energy-tunable chirpfree solitons in normal-dispersion regime and open new research directions in fields of optical solitons, ultrafast lasers, and their applications.
UR - http://www.scopus.com/inward/record.url?scp=85139399859&partnerID=8YFLogxK
U2 - 10.34133/2022/9760631
DO - 10.34133/2022/9760631
M3 - 文章
AN - SCOPUS:85139399859
SN - 2765-8791
VL - 2022
JO - Ultrafast Science
JF - Ultrafast Science
M1 - 9760631
ER -