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Tunable THz pulse generation by optical rectification of ultrashort laser pulses with tilted pulse fronts

机译:通过对具有短脉冲前沿的超短激光脉冲进行光整流来产生可调的THz脉冲

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Optical rectification of ultrashort near-IR laser pulses with tilted pulse fronts and pulse energies of a few muJ in Mg-doped stoichiometric LiNbO3 cooled to low temperature is a powerful technique for efficient generation of THz pulses. The pulse energy critically depends on the Mg doping (necessary for preventing photorefractive damage) and can be easily increased by a factor of three if the MgO content is reduced. Pulse energies up to 400 pJ at repetition rates of 200 kHz and 3.4% quantum conversion efficiency are achieved at 77 K. At 10 K, changing the tilt angle of the pump pulse front results in continuous tuning of the frequency across the 1.0-4.4 THz range. The temporal pulse shapes measured by electro-optic sampling are in good agreement with the signal calculated by a simple theory. This model predicts tunability on a considerably broader range and narrower spectra even at room temperature if GaSe is used instead of LiNbO3. The advantages of the velocity matching technique utilizing tilted pulse fronts are analyzed in comparison with quasi-phase-matching in periodically poled LiNbO3 crystals. The first method provides a ten times higher pulse energy conversion efficiency. [References: 29]
机译:在冷却至低温的掺Mg的化学计量LiNbO3中,具有倾斜的脉冲前沿和几微焦耳的脉冲能量的超短近红外激光脉冲的光学整流是有效产生THz脉冲的强大技术。脉冲能量主要取决于Mg的掺杂(防止光折变损坏所必需),如果MgO含量降低,则脉冲能量很容易增加三倍。在77 K时,以200 kHz的重复频率获得高达400 pJ的脉冲能量,并实现3.4%的量子转换效率。在10 K时,改变泵浦脉冲前沿的倾斜角度可在1.0-4.4 THz范围内连续调节频率范围。通过电光采样测量的时间脉冲形状与通过简单理论计算出的信号高度吻合。如果使用GaSe代替LiNbO3,该模型可预测在相当宽的范围和更窄的光谱范围内的可调性。与周期性极化的LiNbO3晶体中的准相位匹配相比,分析了利用倾斜脉冲前沿的速度匹配技术的优势。第一种方法提供了十倍的脉冲能量转换效率。 [参考:29]

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