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High-Resolution Terahertz Spectrometer

机译:高分辨率太赫兹光谱仪

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摘要

Terahertz time-domain spectroscopy (THz-TDS) based on high-speed asynchronous optical sampling (ASOPS) with two offset-locked GHz femtosecond lasers requires no mechanical time-delay scanner. Consequently, measurements with 1-GHz frequency resolution are performed at intrinsically high scan rates in the multikilohertz range. This is at least one order, in most cases several orders of magnitude faster than conventional approaches employing mechanical time-delay scanners. We report a system offering a unique combination of high-frequency resolution (1 GHz) and high scan rate (2 kHz) with a spectral coverage of more than 6 THz. Its capabilities for high-precision spectroscopy are demonstrated by measuring the absorption spectrum of a mixture of $hbox{H}_{2}hbox{O}$, D$_2$O, and hydrogen deuterium oxide (HDO) vapor. $hbox{H}_{2}hbox{O}$ and HDO vapor absorption spectra are accurately tabulated in databases. However, D$_2$ O absorption data are rare, because of residual $hbox{H}_{2}hbox{O}$ and HDO often present when measuring pure D$_2$O. Here, we present a high-resolution absorption spectrum of D$_2$O vapor numerically extracted from the absorption spectrum of the three-component mixture. In addition, we show that the high spectral resolution of the ASOPS THz-TDS system provides benefits in the analysis of frequency-selective surface sensors, which are promising candidates for biosensing applications in the THz regime.
机译:太赫兹时域光谱(THz-TDS)基于带有两个偏移锁定GHz飞秒激光器的高速异步光学采样(ASOPS),不需要机械时延扫描仪。因此,可以在几千赫兹范围内以固有的高扫描速率执行具有1-GHz频率分辨率的测量。这比采用机械时延扫描仪的常规方法至少快一个数量级,在大多数情况下要快几个数量级。我们报告了一个系统,该系统提供了高频分辨率(1 GHz)和高扫描速率(2 kHz)的独特组合,频谱覆盖超过6 THz。通过测量$ hbox {H} _ {2} hbox {O} $,D $ _2 $ O和氢氧化氘(HDO)蒸气的混合物的吸收光谱,证明了其用于高精度光谱的能力。 $ hbox {H} _ {2} hbox {O} $和HDO蒸气吸收光谱已在数据库中准确制成表格。但是,D $ _2 $ O的吸收数据很少,因为在测量纯D $ _2 $ O时经常会残留$ hbox {H} _ {2} hbox {O} $和HDO。在这里,我们提出了从三组分混合物的吸收光谱中数值提取的D $ _2 $ O蒸气的高分辨率吸收光谱。此外,我们表明,ASOPS THz-TDS系统的高光谱分辨率可为频率选择性表面传感器的分析带来好处,这是在THz体制下进行生物传感应用的有希望的候选者。

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