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Detection and identification of substances using noisy THz signal

机译:使用嘈杂的THz信号检测和识别物质

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We discuss an effective method for the detection and identification of substances using a high noisy THz signal. In order to model such a noisy signal, we add to the THz signal transmitted through a pure substance, a noisy THz signal obtained in real conditions at a long distance (more than 3.5 m) from the receiver in air. The insufficiency of the standard THz-TDS method is demonstrated. The method discussed in the paper is based on time-dependent integral correlation criteria calculated using spectral dynamics of medium response. A new type of the integral correlation criterion, which is less dependent on spectral characteristics of the noisy signal under investigation, is used for the substance identification. To demonstrate the possibilities of the integral correlation criteria in real experiment, they are applied for the identification of explosive HMX in the reflection mode. To explain the physical mechanism for the false absorption frequencies appearance in the signal we make a computer simulation using 1D Maxwell's equations and density matrix formalism. We propose also new method for the substance identification by using the THz pulse frequency up-conversion and discuss an application of the cascade mechanism of molecules high energy levels excitation for the substance identification.
机译:我们讨论了使用高噪声THz信号检测和识别物质的有效方法。为了对这样的噪声信号建模,我们将通过纯物质传输的太赫兹信号添加到在真实条件下与空气中的接收器相距很远(大于3.5 m)的真实太赫兹信号。证明了标准THz-TDS方法的不足。本文讨论的方法基于使用介质响应的光谱动力学计算的时间相关积分相关标准。一种新的积分相关标准,用于较少程度地依赖于所研究的噪声信号的频谱特性,可用于物质识别。为了证明在实际实验中积分相关标准的可能性,将其用于反射模式下爆炸性HMX的识别。为了解释信号中虚假吸收频率出现的物理机制,我们使用一维麦克斯韦方程和密度矩阵形式主义进行了计算机仿真。我们还提出了一种利用太赫兹脉冲频率上变频进行物质鉴定的新方法,并讨论了分子高能级激发的级联机制在物质鉴定中的应用。

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