Takida Yuma, Nawata Kouji, Minamide Hiroaki
Opt Express. 2021 Jan 18;29(2):2529-2537. doi: 10.1364/OE.413201.
Tunable terahertz (THz)-wave absorption spectroscopy is a promising technique to detect trace gases suspended in ambient air owing to their strong absorption fingerprints in the THz-wave spectral region. Here, we present a THz-wave spectroscopic gas detection platform based on a frequency-tunable injection-seeded THz-wave parametric generator and compact multipass gas absorption cells. Using a 1.8-m-path-length multipass cell, we detected gas-phase methanol (CHOH) down to a trace concentration of 0.2 ppm at the 1.48-THz transparent atmospheric window. We also developed a transportable walk-through screening prototype using a 6-m-path-length multipass cell to identify suspicious subjects. Our results demonstrate the potential of the proposed system for security screening applications.
可调谐太赫兹(THz)波吸收光谱技术是一种很有前景的检测悬浮在环境空气中痕量气体的技术,因为这些气体在太赫兹波谱区域有很强的吸收特征峰。在此,我们展示了一种基于频率可调谐注入种子太赫兹波参量发生器和紧凑型多程气体吸收池的太赫兹波光谱气体检测平台。使用路径长度为1.8米的多程吸收池,我们在1.48太赫兹的大气透明窗口检测到了痕量浓度低至0.2 ppm的气相甲醇(CH₃OH)。我们还使用路径长度为6米的多程吸收池开发了一种可移动的通过式筛查原型,用于识别可疑人员。我们的结果证明了所提出的系统在安全筛查应用中的潜力。