Liu Hai-Bo, Chen Yunqing, Bastiaans Glenn J, Zhang X-C
Opt Express. 2006 Jan 9;14(1):415-23. doi: 10.1364/opex.14.000415.
The reflection spectrum of the explosive RDX was acquired from a diffuse reflection measurement using a THz time-domain spectroscopy system in combination with a diffuse reflectance accessory. By applying the Kramers-Kronig transform to the reflection spectrum, the absorption spectrum (0.2-1.8 THz) was obtained. It agrees with the result from a transmission measurement and distinguishes RDX from other materials. The effect of the reference spectrum was examined by using both a Teflon pellet and a copper plate as references. The strong absorption of RDX at 0.82 THz allowed it to be identified by the diffuse reflection measurement even when the RDX sample was covered with certain optically opaque materials. Our investigation demonstrates that THz technique is capable of detecting and identifying hidden RDX-related explosives in a diffuse reflection mode, which is crucial for the standoff detection in the real world applications.
使用太赫兹时域光谱系统结合漫反射附件,通过漫反射测量获得了炸药黑索今(RDX)的反射光谱。对反射光谱应用克喇末-克朗尼格变换,得到了吸收光谱(0.2 - 1.8太赫兹)。该结果与透射测量结果一致,且能将黑索今与其他材料区分开来。分别使用聚四氟乙烯片和铜板作为参考,研究了参考光谱的影响。即使黑索今样品被某些光学不透明材料覆盖,其在0.8太赫兹处的强吸收也使得通过漫反射测量能够识别它。我们的研究表明,太赫兹技术能够在漫反射模式下检测和识别与黑索今相关的隐藏爆炸物,这对于实际应用中的远距离检测至关重要。