论文标题

400 kHz的重复率THZ-TD具有由紧凑型工业YB-LASER驱动的24 MW的平均功率

400 kHz repetition rate THz-TDS with 24 mW of average power driven by a compact industrial Yb-laser

论文作者

Millon, Celia, Houver, Sarah, Saraceno, Clara J.

论文摘要

我们证明,基于室温下二孔脉冲前几何的光学整流的倾斜脉冲前几何形状的光学整流型terahertz时域(THZ-TDS)光谱仪,由室温下,由商业,工业的fomtsecond激光器驱动,由40 kHz-400 kHz之间的灵活重复速率运行。驾驶激光器在310 fs的脉冲持续时间内为所有重复率提供41 UJ的脉冲能,使我们能够探索TDS中的重复率依赖性效果。以400 kHz的最大重复速率,可以使用高达16.5 W的平均功率来驱动我们的THZ来源,最多可达到24 MW的THZ平均功率,转化效率约为0.15%,电场强度为几十kV/cm。在其他可用的较低的重复率下,我们表明我们的TDS的脉冲强度和带宽没有变化,这表明THZ的产生不受数十瓦的平均功率区域的热效应影响。高电场强度与柔性和高重复速率的结合对光谱非常有吸引力,特别是因为该系统是由工业,紧凑的激光驱动的,而无需外部压缩机或其他专业的脉冲操纵。

We demonstrate a high average power terahertz time-domain (THZ-TDS) spectrometer based on optical rectification in the tilted-pulse front geometry in lithium niobate at room temperature, driven by a commercial, industrial femtosecond-laser operating with flexible repetition rate between 40 kHz - 400 kHz. The driving laser provides a pulse energy of 41 uJ for all repetition rates, at a pulse duration of 310 fs, allowing us to explore repetition rate dependent effects in our TDS. At the maximum repetition rate of 400 kHz, up to 16.5 W of average power are available to drive our THz source, resulting in a maximum of 24 mW of THz average power with a conversion efficiency of ~ 0.15 % and electric field strength of several tens of kV/cm. At the other available lower repetition rates, we show that the pulse strength and bandwidth of our TDS is unchanged, showing that the THz generation is not affected by thermal effects in this average power region of several tens of watts. The resulting combination of high electric field strength with flexible and high repetition rate is very attractive for spectroscopy, in particular since the system is driven by an industrial, compact laser without the need for external compressors or other specialized pulse manipulation.

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