首站-论文投稿智能助手
典型文献
Soliton fusion and fission for the high-order coupled nonlinear Schr(o)dinger system in fiber lasers
文献摘要:
With the rapid development of communication technology,optical fiber communication has become a key research area in communications.When there are two signals in the optical fiber,the transmission of them can be abstracted as a high-order coupled nonlinear Schr(o)dinger system.In this paper,by using the Hirota's method,we construct the bilinear forms,and study the analytical solution of three solitons in the case of focusing interactions.In addition,by adjusting different wave numbers for phase control,we further discuss the influence of wave numbers on soliton transmissions.It is verified that wave numbers kll,k21,k31,k22,and k32 can control the fusion and fission of solitons.The results are beneficial to the study of all-optical switches and fiber lasers in nonlinear optics.
文献关键词:
作者姓名:
Tian-Yi Wang;Qin Zhou;Wen-Jun Liu
作者机构:
State Key Laboratory of Information Photonics and Optical Communications,School of Science,Beijing University of Posts and Telecommunications,Beijing 100876,China;Mathematical Modeling and Applied Computation (MMAC) Research Group,Department of Mathematics,King Abdulaziz University,Jeddah 21589,Saudi Arabia
引用格式:
[1]Tian-Yi Wang;Qin Zhou;Wen-Jun Liu-.Soliton fusion and fission for the high-order coupled nonlinear Schr(o)dinger system in fiber lasers)[J].中国物理B(英文版),2022(02):279-284
A类:
abstracted,kll,k21,k31,k22,k32
B类:
Soliton,fusion,fission,high,order,coupled,nonlinear,Schr,dinger,system,fiber,lasers,With,rapid,development,technology,optical,become,key,research,area,communications,When,there,two,signals,them,can,In,this,paper,by,Hirota,method,we,construct,bilinear,forms,study,analytical,solution,three,solitons,case,focusing,interactions,addition,adjusting,different,wave,numbers,phase,control,further,discuss,influence,transmissions,It,verified,that,results,beneficial,all,switches,optics
AB值:
0.501892
相似文献
Soliton formation and spectral translation into visible on CMOS-compatible 4H-silicon-carbide-on-insulator platform
Chengli Wang;Jin Li;Ailun Yi;Zhiwei Fang;Liping Zhou;Zhe Wang;Rui Niu;Yang Chen;Jiaxiang Zhang;Ya Cheng;Junqiu Liu;Chun-Hua Dong;Xin Ou-State Key Laboratory of Functional Materials for Informatics,Shanghai Institute of Microsystem and Information Technology,Chinese Academy of Sciences,200050 Shanghai,China;The Center of Materials Science and Optoelectronics Engineering,University of Chinese Academy of Sciences,100049 Beijing,China;CAS Key Laboratory of Quantum Information,University of Science and Technology of China,230026 Hefei,China;CAS Center for Excellence in Quantum Information and Quantum Physics,University of Science and Technology of China,230026 Hefei,China;The Extreme Optoelectromechanics Laboratory(XXL),School of Physics and Electronic Science,East China Normal University,200241 Shanghai,China;State Key Laboratory of High Field Laser Physics and CAS Center for Excellence in Ultra-intense Laser Science,Shanghai Institute of Optics and Fine Mechanics,Chinese Academy of Sciences,201800 Shanghai,China;International Quantum Academy,518048 Shenzhen,China;Hefei National Laboratory,University of Science and Technology of China,Hefei 230026,China
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。