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;
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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.
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