Wavelength conversion in distributed-feedback lasers

被引:6
|
作者
Minch, JR
Chang, CS
Chuang, SL
机构
[1] Univ. Illinois at Urbana-Champaign, Dept. of Elec. and Comp. Engineering, Urbana
[2] Cornell University, Ithaca, NY
[3] University of Illinois, Urbana, IL
[4] National Taiwan University, Taipei
[5] Dept. of Elec. and Comp. Engineering, University of Illinois, Urbana-Champaign, IL
[6] AT and T Bell Laboratories, Holmdel, NJ
[7] Bellcore, Polaroid
[8] Center for Advanced Study, University of Illinois
基金
美国国家科学基金会;
关键词
amplified spontaneous emission; distributed-feedback lasers; optical frequency conversion; optical mixing; wavelength-division multiplexing;
D O I
10.1109/2944.605708
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
We present both theoretical and experimental studies of four-wave mixing in a distributed-feedback (DFB) laser. The measured amplified spontaneous emission and probe gain spectra are also used to extract the DFB laser parameters. We use mean-field theory to investigate both nearly degenerate and nondegenerate four-wave mixings. For small pump-probe detunings, the dependence of multiple conjugate waves on the pump and probe powers is measured. For larger detunings, the gain of the probe signal and the conversion efficiency are measured in great detail up to a detuning of +/-550 GHz. The measured conversion efficiencies as a function of the pump-probe detuning and the power scaling laws are compared with those of the theoretical results. We also demonstrate the DFB cavity effects on the conversion efficiency spectrum.
引用
收藏
页码:569 / 576
页数:8
相关论文
共 50 条
  • [1] Lasing wavelength in dielectric distributed-feedback lasers with a distributed phase shift
    Kores, C. C.
    Ismail, N.
    Bernhardi, E. H.
    Laurell, F.
    Pollnau, M.
    SOLID STATE LASERS XXVIII: TECHNOLOGY AND DEVICES, 2019, 10896
  • [2] DISTRIBUTED-FEEDBACK LASERS
    LUKYANOV, VN
    SEMENOV, AT
    SHELKOV, NV
    YAKUBOVICH, SD
    KVANTOVAYA ELEKTRONIKA, 1975, 2 (11): : 2373 - 2398
  • [3] DISTRIBUTED-FEEDBACK LASERS AND SOLITONS
    KNEUBUHL, FK
    FENG, J
    INFRARED PHYSICS & TECHNOLOGY, 1995, 36 (01) : 237 - 243
  • [4] MULTIPLY RESONANT DISTRIBUTED-FEEDBACK LASERS
    STOLL, HM
    SEIB, DH
    IEEE JOURNAL OF QUANTUM ELECTRONICS, 1976, 12 (01) : 53 - 57
  • [5] DISTRIBUTED-FEEDBACK LASERS IN CHIRAL MEDIA
    FLOOD, KM
    JAGGARD, DL
    IEEE JOURNAL OF QUANTUM ELECTRONICS, 1994, 30 (02) : 339 - 345
  • [6] DYNAMIC AND STOCHASTIC DISTRIBUTED-FEEDBACK IN LASERS
    LYAKHOV, GA
    SVIRKO, YP
    SUYAZOV, NV
    KVANTOVAYA ELEKTRONIKA, 1993, 20 (10): : 941 - 968
  • [7] Wavelength shift enhancement in quantum-well intermixed distributed-feedback lasers
    Zhan, L
    Chan, KS
    Pun, EYB
    Ho, HP
    IEEE PHOTONICS TECHNOLOGY LETTERS, 2002, 14 (06) : 744 - 746
  • [8] Interband cascade distributed-feedback lasers
    Meyer, J. R.
    Kim, C. S.
    Kim, M.
    Canedy, C. L.
    Bewley, W. W.
    Lindle, J. R.
    Vurgaftman, I.
    QUANTUM SENSING AND NANOPHOTONIC DEVICES IV, 2007, 6479
  • [9] ANALYSIS OF RING DISTRIBUTED-FEEDBACK LASERS
    WANG, S
    TSANG, WT
    JOURNAL OF APPLIED PHYSICS, 1974, 45 (09) : 3978 - 3980
  • [10] DISTRIBUTED-FEEDBACK GAS-LASERS
    PREISWERK, HP
    GNEPF, S
    ROZKWITALSKI, ZN
    KNEUBUHL, FK
    HELVETICA PHYSICA ACTA, 1982, 55 (02): : 197 - 200