期刊
NONLINEAR DYNAMICS
卷 109, 期 4, 页码 3083-3089出版社
SPRINGER
DOI: 10.1007/s11071-022-07590-5
关键词
Solitons; Nonlinear Schrodinger equation; Amplification; High power transmission
资金
- National Natural Science Foundation of China [11975172]
This study focuses on the effective amplification of optical solitons in high-power transmission systems using a nonlinear Schrodinger equation. Three soliton solutions are analytically constructed and their interaction characteristics are analyzed. The study also examines the influence of parallel and nonparallel propagation on soliton amplification. The findings contribute to improving the transmission distance of optical solitons in high-power transmission systems.
We study the effective amplification of optical solitons in high power transmission systems based on a nonlinear Schrodinger equation with variable coefficients. Three soliton solutions to this model are constructed analytically. We analyze the characteristics of three soliton interaction and achieve the effective amplification of solitons. We analyze the influence of parallel and nonparallel propagation of optical solitons on optical soliton amplification. The conclusion of this study is beneficial to the propagation and amplification of optical solitons in high-power transmission system, so as to effectively improve the transmission distance of the system.
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