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Terahertz frequency comb by multifrequency-heterodyning photoconductive detection for high-accuracy, high-resolution terahertz spectroscopy

机译:太赫兹频率梳通过多频外差光电导检测实现高精度,高分辨率太赫兹光谱

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摘要

We report a terahertz spectroscopy technique based on a stable terahertz frequency comb from a photoconductive terahertz emitter driven by a stabilized femtosecond laser. To this end, a photocurrent frequency comb is induced in a photoconductive terahertz detector by instantaneous photogating with another detuned femtosecond laser and is applied to read out the terahertz frequency comb. The detailed structure of the terahertz frequency comb was clearly observed with frequency accuracy of 2.5 X 10~(-7) and resolution of 81.8 MHz using multifrequency-heterodyning photoconductive detection, which in turn is caused by the slightly mismatched frequency spacing between terahertz and photocurrent frequency combs.
机译:我们报告了基于由稳定飞秒激光驱动的光导太赫兹发射器的稳定太赫兹频率梳的太赫兹光谱技术。为此,通过用另一个失谐的飞秒激光器进行瞬时光选通,在光导太赫兹检测器中感应出光电流频率梳,并将其应用于读出太赫兹频率梳。通过多频外差光电导检测,可以清楚地观察到太赫兹频率梳的详细结构,频率精度为2.5 X 10〜(-7),分辨率为81.8 MHz,这又是由于太赫兹与光电流之间的频率间隔略有不匹配引起的频率梳。

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