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首页> 外文期刊>Laser Physics: An International Journal devoted to Theoretical and Experimental Laser Research and Application >Q-switching and mode locking pulse generation from an all-fiber ring laser by intermodal acousto-optic bandpass modulation
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Q-switching and mode locking pulse generation from an all-fiber ring laser by intermodal acousto-optic bandpass modulation

机译:Q开关和模式锁定脉冲从多光纤环激光通过多式声学声光带通量调制产生

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摘要

Q-switched and mode-locked (QML) pulse generation from an all-fiber ring laser based on intermodal acousto-optic bandpass modulation is reported. The modulator relies on full-acousto-optic mode re-coupling cycle induced by a standing flexural acoustic wave, with a transmission response that is controlled by amplitude modulation of the acoustic wave signal. The Q factor of the cavity is controlled by a rectangular pulse wave with variable frequency and duty cycle, whereas mode locking is achieved by amplitude modulation derived from a standing flexural acoustic wave. The best QML pulses were obtained at 0.5 kHz repetition rate, with a pump power of 549.2 mW, at the optical wavelength of 1568.2 nm. A maximum overall energy of 2.14 mu J at an average output power of 1.07 mW was achieved, corresponding to a burst of mode-locked sub-pulses of 100 ps pulse duration within a QML envelope of 3.5 mu s.
机译:报告了基于多相声光带通量调制的来自全光纤环激光的Q开关和模式锁定(QML)脉冲。 调制器依赖于由驻留弯曲声波引起的全声波光学模式重新耦合循环,其具有由声波信号的幅度调制控制的传输响应。 腔的Q系数由具有可变频率和占空比的矩形脉冲波来控制,而模式锁定是通过从驻留弯曲声波的幅度调制来实现的。 在0.5kHz重复速率下获得最佳QML脉冲,泵浦功率为549.2mW,光波长为1568.2nm。 实现了2.14μm的最大整体能量,在1.07mW的平均输出功率下实现,对应于3.5μs的QML包络内的100 ps脉冲持续时间的模式锁定子脉冲的突发。

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