Frequency-domain performance of a femtosecond laser with carrier-envelope phase stabilized by the direct locking method

被引:0
|
作者
J.-h. Lee
E. B. Kim
T. T. Luu
W.-K. Lee
D.-H. Yu
J. Park
C. Y. Park
T. J. Yu
C. H. Nam
机构
[1] KAIST,Dept. of Physics and Coherent X
[2] Korea Research Institute of Standards and Science,ray Research Center
[3] Gwangju Institute of Science and Technology,Advanced Photonics Research Institute
来源
Applied Physics B | 2011年 / 104卷
关键词
Photonic Crystal; Femtosecond Laser; Phase Noise; Gate Time; Beating Signal;
D O I
暂无
中图分类号
学科分类号
摘要
We analyzed frequency-domain characteristics of a femtosecond laser whose carrier-envelope phase (CEP) was stabilized by the direct locking method (DLM). To evaluate the CEP-stabilized laser with zero carrier-envelope-offset frequency (fceo), as imposed by DLM, a self-referencing f-to-2f interferometer with a shifted frequency comb by an acousto-optic modulator was employed in an out-of-loop. The measurement of the square root of triangle variance confirmed that DLM is a phase-locking method. The tight locking was verified from a narrow bandwidth of fceo, measured using the out-of-loop interferometer, and from a small frequency jitter measured with a frequency counter referenced to a Rb-clock. The femtosecond laser with CEP stabilized by DLM is, thus, well suited for applications in the frequency domain as well as in the time domain.
引用
收藏
相关论文
共 50 条
  • [41] Implementation of the direct locking method for long-term carrier-envelope-phase stabilization of a grating-based kHz femtosecond laser
    J.-H. Lee
    Y. S. Lee
    J. Park
    J. J. Park
    D. S. Kim
    T. J. Yu
    C. H. Nam
    Applied Physics B, 2009, 96 : 287 - 291
  • [42] Frequency measurement of acetylene-stabilized lasers using a femtosecond optical comb without carrier-envelope offset frequency control
    Jiang, J
    Onae, A
    Matsumoto, H
    Hong, FL
    OPTICS EXPRESS, 2005, 13 (06): : 1958 - 1965
  • [43] Carrier-envelope stabilized few-cycle infrared laser system
    Song Li-Wei
    Li Chuang
    Wang Ding
    Xu Can-Hua
    Leng Yu-Xin
    Li Ru-Xin
    ACTA PHYSICA SINICA, 2011, 60 (05)
  • [44] Using the phase coherence of carrier-envelope phase-stabilized fs lasers
    Jones, DJ
    Holman, KW
    Hudson, D
    Marian, A
    Ye, J
    Schlager, JB
    Ippen, EP
    2003 IEEE LEOS ANNUAL MEETING CONFERENCE PROCEEDINGS, VOLS 1 AND 2, 2003, : 393 - 394
  • [45] Carrier-envelope offset frequency stabilization of an ultrafast semiconductor laser
    Jornod, Nayara
    Guerel, Kutan
    Wittwer, Valentin J.
    Brochard, Pierre
    Hakobyan, Sargis
    Schilt, Stephane
    Waldburger, Dominik
    Keller, Ursula
    Suedmeyer, Thomas
    VERTICAL EXTERNAL CAVITY SURFACE EMITTING LASERS (VECSELS) VIII, 2018, 10515
  • [46] Harmonic mode locking with reduced carrier-envelope phase noise in ytterbium-doped fiber laser
    Yan, Ming
    Li, Wenxue
    Yang, Kangwen
    Bai, Dongbi
    Zhao, Jian
    Shen, Xuling
    Ru, Qitian
    Zeng, Heping
    OPTICS LETTERS, 2012, 37 (15) : 3021 - 3023
  • [47] Spontaneous emergence of pulses with constant carrier-envelope phase in femtosecond filamentation
    Faccio, D.
    Lotti, A.
    Kolesik, M.
    Moloney, J. V.
    Tzortzakis, S.
    Couairon, A.
    Di Trapani, P.
    OPTICS EXPRESS, 2008, 16 (15): : 11103 - 11114
  • [48] Carrier-envelope phase stabilized 5.6 fs, 1.2 mJ pulses
    Mashiko, Hiroki
    Nakamura, Christopher M.
    Li, Chengquan
    Moon, Eric
    Wang, He
    Tackett, Jason
    Chang, Zenghu
    APPLIED PHYSICS LETTERS, 2007, 90 (16)
  • [49] Carrier-envelope phase stabilized 5.6 fs, 1.2 mJ pulses
    Mashiko, Hiroki
    Nakamura, Christopher M.
    Li, Chengquan
    Moon, Eric
    Wang, He
    Tackett, Jason
    Chang, Zenghu
    2007 CONFERENCE ON LASERS & ELECTRO-OPTICS/QUANTUM ELECTRONICS AND LASER SCIENCE CONFERENCE (CLEO/QELS 2007), VOLS 1-5, 2007, : 1349 - 1350
  • [50] Carrier-envelope phase measurement using a non phase stable laser
    K. O’Keeffe
    P. Jöchl
    H. Drexel
    V. Grill
    F. Krausz
    M. Lezius
    Applied Physics B, 2004, 78 : 583 - 587