Nonlinear regime of propagation of femtosecond optical pulses in single-mode fiber

被引:0
|
作者
Dakova, A. M. [1 ]
Dakova, D. I. [1 ]
机构
[1] Univ Plovdiv Paisii Hilendarski, Fac Phys & Engn Technol, Plovdiv 4000, Bulgaria
来源
17TH INTERNATIONAL SCHOOL ON QUANTUM ELECTRONICS: LASER PHYSICS AND APPLICATIONS | 2013年 / 8770卷
关键词
single-mode fiber; femtosecond optical pulses; nonlinear amplitude equation; soliton-like pulses; filamentation; coherent THz generation; AIR; FILAMENTATION;
D O I
10.1117/12.2013448
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
In the present work is being reviewed the evolution of one-dimensional femtosecond optical pulses with large spectral bandwidth in a single-mode fiber. The corresponding scalar nonlinear amplitude equation is used which describes the propagation of such pulses. It significantly differs from the ordinary Nonlinear Schrodinger equation. It appears that nonlinear term oscillates at a frequency proportional to the difference between the group and phase velocity of the pulse. This equation includes a term containing the first order of dispersion of the group velocity and the second derivatives of the coordinate z and the time t. It is assumed that the losses in the fiber are not significant and they will not be counted. An accurate analytical solution of this equation is found. It describes the evolution of soliton-like pulses in single-mode fiber. This soliton has different characteristics from those of the soliton obtained by solving the nonlinear Schrodinger equation.
引用
收藏
页数:7
相关论文
共 50 条
  • [31] Loss analysis of single-mode fiber/photonic-crystal fiber splice
    Hoo, YL
    Jin, W
    Ju, J
    Ho, HL
    MICROWAVE AND OPTICAL TECHNOLOGY LETTERS, 2004, 40 (05) : 378 - 380
  • [32] Single-mode large-mode-area Er-Yb fiber
    Khudyakov, Maxim M.
    Lobanov, Aleksey S.
    Lipatov, Denis S.
    Bobkov, Konstantin K.
    Aleshkina, Svetlana S.
    Kochergina, Tatyana A.
    Bubnov, Mikhail M.
    Abramov, Alexey N.
    Vechkanov, Nikolay N.
    Guryanov, Aleksey N.
    Likhachev, Mikhail E.
    OPTICAL COMPONENTS AND MATERIALS XVI, 2019, 10914
  • [33] The Influence of Single-Mode Fiber Parameters on the Threshold for Brillouin Scattering
    Wang, Juwei
    Hou, Shanglin
    Xue, Lemei
    Zhang, Baoxia
    Liu, Yanjun
    Xu, Yongzhao
    AEIT 2012: 2012 2ND INTERNATIONAL CONFERENCE ON AEROSPACE ENGINEERING AND INFORMATION TECHNOLOGY, VOL 1, 2012, : 239 - 245
  • [34] Time-frequency characteristics of single-mode fiber dispersion
    Ai-Huang, G
    Jun-Mei, F
    Eng-Xin, F
    MICROWAVE AND OPTICAL TECHNOLOGY LETTERS, 2001, 31 (04) : 299 - 302
  • [35] Single-mode fiber auto-coupling system with wedges
    Cao, Bingsong
    Qiu, Zhifang
    Huang, Kaikai
    Lu, Desheng
    Zhang, Xian
    Lu, Xuanhui
    OPTICAL FIBER TECHNOLOGY, 2021, 61
  • [36] Performance Evaluation of Single-mode and Multimode Fiber in LAN Environment
    Rahman, Farah Diyana Abdul
    Al-Khateeb, Wajdi
    Hashim, Aisha Hassan Abdalla
    PROCEEDINGS OF WORLD ACADEMY OF SCIENCE, ENGINEERING AND TECHNOLOGY, VOL 6, 2005, : 257 - 259
  • [37] Digital holographic endoscopy with a single-mode fiber as a reference channel
    Burmak, Liudmila
    Zykova, Lidia
    SARATOV FALL MEETING 2019: LASER PHYSICS, PHOTONIC TECHNOLOGIES, AND MOLECULAR MODELING, 2020, 11458
  • [38] Effect of single-mode fiber on the contrast of chirped-pulse
    Sun M.
    Kang J.
    Guo A.
    Zhang F.
    Yang Q.
    Bi Q.
    Xie X.
    Lin Z.
    Guangxue Xuebao/Acta Optica Sinica, 2010, 30 (05): : 1234 - 1237
  • [39] Temperature Response Properties of Macrobending Loss of Single-mode Fiber
    Peng Xing-ling
    Cha Ying-peng
    Zhang Hua
    Li Yu-long
    ACTA PHOTONICA SINICA, 2018, 47 (11)
  • [40] Temperature characteristic of stimulated brillouin scattering in single-mode fiber
    Li, X. (lixuechun@siom.ac.cn), 1600, Science Press (40):