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Spread function of acousto-optic filter with high-speed spectral image analysis

机译:具有高速光谱图像分析的声光滤波器的扩展功能

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Abstract: The contradictory requirements are presented to acousto- optic tunable filters (AOF) of spectral image analysis. On the one hand AOF should have high speed. On the other hand it should have good spectral resolution and wide angular aperture. Thus when AOF is fastly tuned with chirp transients, the diffracted wave intensity at different moments of transient process can considerably diverge form its quasistatic level. It means that spread function (SF) depends on the velocity of frequency tuning, i.e., it is described by 2D function with variables - wave length and velocity of frequency tuning. In Cartesian frame this dependence is presented by some surface being dynamic SF (DSF). It characterizes speed and selectivity properties of AOF. In this work DCF mathematical model was constructed and basic properties of spectral image analysis AOF were investigated. It has been established that the greatest distortions of DSF occur if velocity of frequency tuning has exceeded some critical value connected with acousto-optic interaction geometry and aperture sizes of beams. In this case the side lobes of SF will make 'false' maxima which begin to prevail over the basic. In addition under the conditions of phase mismatch DSF loses the symmetry to position of the main maximum. These effects reduce the accuracy of spectral measurements when tuning velocity is high. !7
机译:摘要:对频谱图像分析的声光可调滤波器(AOF)提出了矛盾的要求。一方面,AOF应该具有较高的速度。另一方面,它应具有良好的光谱分辨率和宽角孔径。因此,当AOF用线性调变瞬态快速调谐时,瞬态过程不同时刻的衍射波强度可能会从准静态水平大幅度发散。这意味着扩展函数(SF)取决于频率调谐的速度,即由2D函数描述,该函数具有变量-波长和频率调谐的速度。在笛卡尔框架中,这种依赖性通过动态SF(DSF)的某个表面来表示。它表征了AOF的速度和选择性。在这项工作中,建立了DCF数学模型,并研究了光谱图像分析AOF的基本特性。已经确定,如果频率调谐的速度超过与声光相互作用的几何形状和光束的孔径有关的某个临界值,则DSF会出现最大的畸变。在这种情况下,SF的旁瓣将使“假”极大值开始占优。另外,在相位失配的条件下,DSF失去了与主要最大值位置的对称性。当调谐速度较高时,这些影响会降低频谱测量的准确性。 !7

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