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Highly effective method for temporal terahertz spectroscopy under the condition of random probe signals

机译:随机探针信号条件下的时间太赫兹光谱的高效方法

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As it is well known, terahertz time-domain spectroscopy is very perspective method for identification of molecules. The main difficulty of its application, on our opinion, is an absent of high effective method for temporal analysis of the medium response spectrum. According to [13] methods, using in time-domain spectroscopy for treatment of experimental results, have some bad features, which lead to absurd results sometimes. In [14,15,20,21] we developed two possible ways to create effective algorithms for the analysis of instantaneous spectral intensities of medium responce under the e action of pulse with a few cycles. It should be stressed that in the first algorithm we used the Gabor-Fourier window transform, investigated its efficiency and formulated requirements to its parameters for reconstruction of spectral dynamics of medium response with high quality. The second algorithm, based on application of SVD method, allows to obtain an information about many spectral lines simultaneously from one series of measurements of medium response characteristics. In both algorithms, their parameters were ideal ones without any random fluctuations. This paper deals with the more realistic situation: we investigate possibility to get dynamics of any spectral lines of medium response when parameters of measurements are random. Our investigation demonstrates the high efficiency of using method based on SVD algorithm. We apply it as for ideal medium response constructed on the base of some ideal oscillators, as for results of physical experiments. Also below the new approach to finding of instantaneous spectral amplitudes for requiring frequencies under the action of terahertz pulse is proposed. It allows to investigate a frequency dynamics due to using of integral measurements of optical signal.
机译:众所周知,Terahertz时域光谱是用于鉴定分子的非常透视方法。在我们看来,其应用的主要困难是缺乏对媒体响应谱的时间分析的高有效方法。根据[13]方法,使用时间域光谱检查进行实验结果,具有一些不良的功能,有时会导致荒谬的结果。在[14,15,20,21]中,我们开发了两种可能的方法来创建有效算法,用于分析脉冲的E作用下脉冲的瞬时谱强度,几个循环。应强调,在我们使用Gabor-Fourier窗口变换的第一算法中,将其效率和配方要求调查了其参数,以重建高质量的中等响应的光谱动态。基于SVD方法的应用,第二算法允许从媒体响应特性的一系列测量同时获得关于许多频谱线的信息。在这两种算法中,它们的参数是理想的,没有任何随机波动。本文涉及更现实的情况:当测量参数随机时,我们调查了在媒体响应的任何光谱线路的动态。我们的调查展示了基于SVD算法的使用方法的高效率。我们将其应用为在一些理想振荡器的基础上构建的理想中响应,如物理实验的结果。还提出了在提出了用于在太赫兹脉冲作用下需要频率的瞬时光谱振幅的新方法。它允许通过使用光信号的整体测量来研究频率动态。

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