首页> 外文期刊>Journal of Infrared, Millimeter and Terahertz Waves >Real-Time Determination of Absolute Frequency in Continuous-Wave Terahertz Radiation with a Photocarrier Terahertz Frequency Comb Induced by an Unstabilized Femtosecond Laser
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Real-Time Determination of Absolute Frequency in Continuous-Wave Terahertz Radiation with a Photocarrier Terahertz Frequency Comb Induced by an Unstabilized Femtosecond Laser

机译:飞秒激光不稳定引起的光子载波太赫兹频率梳实时检测连续波太赫兹辐射中的绝对频率

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摘要

A practical method for the absolute frequency measurement of continuous-wave terahertz (CW-THz) radiation uses a photocarrier terahertz frequency comb (PC-THz comb) because of its ability to realize real-time, precise measurement without the need for cryogenic cooling. However, the requirement for precise stabilization of the repetition frequency (f (rep)) and/or use of dual femtosecond lasers hinders its practical use. In this article, based on the fact that an equal interval between PC-THz comb modes is always maintained regardless of the fluctuation in f (rep), the PC-THz comb induced by an unstabilized laser was used to determine the absolute frequency f (THz) of CW-THz radiation. Using an f (rep)-free-running PC-THz comb, the f (THz) of the frequency-fixed or frequency-fluctuated active frequency multiplier chain CW-THz source was determined at a measurement rate of 10 Hz with a relative accuracy of 8.2 x 10(-13) and a relative precision of 8.8 x 10(-12) to a rubidium frequency standard. Furthermore, f (THz) was correctly determined even when fluctuating over a range of 20 GHz. The proposed method enables the use of any commercial femtosecond laser for the absolute frequency measurement of CW-THz radiation.
机译:连续波太赫兹(CW-THz)辐射的绝对频率测量的实用方法是使用光电载频太赫兹频率梳(PC-THz梳),因为它能够实现实时,精确的测量,而无需进行低温冷却。但是,要求精确稳定重复频率(f(rep))和/或使用双飞秒激光器会阻碍其实际应用。在本文中,基于这样一个事实,即无论f(rep)的波动如何,都始终保持PC-THz梳齿模式之间的等距间隔,因此使用不稳定激光诱导的PC-THz梳齿来确定绝对频率f( THz)的CW-THz辐射。使用无f(rep)运行的PC-THz梳,以10 Hz的测量速率相对固定地确定了固定频率或频率波动的有源倍频链CW-THz源的f(THz) a频率标准为8.2 x 10(-13),相对精度为8.8 x 10(-12)。此外,即使在20 GHz范围内波动,也可以正确确定f(THz)。所提出的方法使得可以使用任何商用飞秒激光器进行CW-THz辐射的绝对频率测量。

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