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首页> 外文期刊>Laser Physics: An International Journal devoted to Theoretical and Experimental Laser Research and Application >Review of recent efforts on efficient generation of monochromatic THz pulses based on difference-frequency generation
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Review of recent efforts on efficient generation of monochromatic THz pulses based on difference-frequency generation

机译:基于差频生成的高效生成单色太赫兹脉冲的最新研究综述

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We review our recent efforts on power scaling of THz pulses generated from several nonlinear-optical crystals. By using a high-resistivity GaP crystal, we have significally increased the output peak power to as high as 722 W. By stacking three GaP wafers, we have further increased the highest output peak power to 2.36 kW. On the other hand, by using CO_2 laser pulses, we have obtained the average output power of 260 μW. We have also used these laser pulses to scale up the output power for the THz pulses to 29.8 μW by stacking GaAs wafers. Indeed, by stacking up to ten wafers, we have increased the output power by a factor of 160. Finally, by using ultrafast laser pulses, we have achieved record-high output powers for the THz pulses generated from multi-period periodically-poled LiNbO_3 crystals based on a backward configuration. The highest output power obtained by us so far is 10.7 μW.
机译:我们回顾了我们最近对由几种非线性光学晶体产生的太赫兹脉冲功率定标的工作。通过使用高电阻率的GaP晶体,我们将输出峰值功率显着提高到了722W。通过堆叠三个GaP晶片,我们将最高输出峰值功率进一步提高到2.36 kW。另一方面,通过使用CO_2激光脉冲,我们获得了260μW的平均输出功率。我们还使用了这些激光脉冲,通过堆叠GaAs晶片将THz脉冲的输出功率放大到29.8μW。的确,通过堆叠多达十个晶片,我们将输出功率提高了160倍。最后,通过使用超快激光脉冲,对于多周期周期性极化LiNbO_3产生的太赫兹脉冲,我们实现了创纪录的高输出功率基于向后配置的晶体。到目前为止,我们获得的最高输出功率为10.7μW。

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