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Single-frequency pulsed fiber lasers at ~1.5 μm and fiber-based

机译:单频脉冲光纤激光器在〜1.5μm和基于光纤

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We have implemented monolithic narrow linewidth single-mode single-frequency pulsed fiber lasers in master oscillator and power amplifier (MOPA) configuration based on highly Er/Yb co-doped phosphate fiber with core size of 25 μm. The narrow linewidth pulsed fiber laser seed has been achieved by directly modulating single-frequency CW fiber laser. An arbitrary waveform generator (AWG) was used to pre-shape the pulse shapes in order to avoid the pulse distortion and the dynamic gain saturation in the cascade fiber amplifiers. Based on the newly developed large core single-mode highly Er/Yb co-doped phosphate fiber in the power amplifier stage, the peak power of single-mode pulses can be scaled to more than 100 kW with transform-limited linewidth and diffraction-limited beam quality. These high power narrow linewidth single-mode fiber laser pulses have been successfully used to generate coherent THz waves based on difference-frequency generation (DFG) in GaSe crystal. The single-pass generated THz peak power can reach 0.12 W. Moreover, we have observed the external cavity enhancement of DFG THz generation by using ZnGeP_2 for the first time, and implemented a high spectral resolution THz spectrometer based on the developed fiber-based tunable narrow linewidth THz source.
机译:我们已经在主振荡器和功率放大器(MOPA)配置中实施了单片窄线宽单模单频脉冲光纤激光器,基于高度ER / YB共掺杂的磷酸纤维,核心尺寸为25μm。通过直接调制单频CW光纤激光来实现窄线宽脉冲光纤激光种子。任意波形发生器(AWG)用于预先塑造脉冲形状,以避免级联光纤放大器中的脉冲失真和动态增益饱和度。基于新开发的大型核心单模高度ER / YB共掺杂磷酸纤维在功率放大器级,单模脉冲的峰值功率可以缩放到较大100kW的变换限制线宽和衍射限制光束质量。这些高功率窄线宽单模光纤激光脉冲已成功地用于基于Gase晶体中的差频生成(DFG)产生相干的THz波。单通式生成的THz峰值功率可以达到0.12W。此外,我们首次使用ZnGep_2通过使用ZnGep_2来观察到DFG THz生成的外腔增强,并基于所开发的基于光纤可调的高频分辨率THz光谱仪窄线宽THZ源。

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