Waveform Analysis of a Self-Mode-Locked Laser Pulse
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概要
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The waveform of a self-mode-locked pulse is analyzed in both time and frequency domains for a xenon 3.5 μm gas laser. Knowing the amplitudes and frequencies of the oscillating axial modes, based on the power spectrum obtained by a scanning Fabry-Perot interferometer, the pulse waveform in time is calculated and compared with the experimentally observed pulse waveform in real time. Both waveforms are consistent within small difference. The experimental waveform is also evaluated in terms of the coefficients of the skewness and excess, k_1 and k_2, obtaining k_1=0.018, k_2=-0.360 for the mode-locked Xe 3.5 μm laser with nine axial modes.
- 社団法人応用物理学会の論文
- 1977-10-05
著者
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SATO Heihachi
Department of Electrical Engineering, National Defense Academy
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Sato Heihachi
Department Of Electrical Engineering National Defense Academy
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