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首页> 外文期刊>Applied optics >LIGHT SCATTERING BY SINUSOIDAL SURFACES - ILLUMINATION WINDOWS AND HARMONICS IN STANDARDS
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LIGHT SCATTERING BY SINUSOIDAL SURFACES - ILLUMINATION WINDOWS AND HARMONICS IN STANDARDS

机译:正弦表面的光散射-照明窗和标准中的谐波

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Sinusoidal surfaces can be used as material standards to help calibrate instruments that measure the angular distribution of the intensity of light scattered by arbitrary surfaces, because the power in the diffraction peaks varies over several orders of magnitude. The calculated power in the higher-order diffraction peaks from sinusoidal surfaces expressed in terms of Bessel functions is much smaller than the values determined from angular distributions that are measured or computed from measured profiles, both of which are determined mainly by the harmonic contents of the profile. The finite size of the illuminated area, represented by an illumination window, gives rise to a background that is much larger than the calculated power in the higher-order peaks. For a rectangular window of a size equal to an even number of periods of the sinusoid, a computation of the power distribution produces minima at or near the location of the diffraction angles for higher-order diffraction angles. [References: 16]
机译:正弦表面可以用作材料标准,以帮助校准测量任意表面散射的光强度角分布的仪器,因为衍射峰中的光强变化了几个数量级。从以贝塞尔函数表示的正弦表面的高阶衍射峰中计算出的功率远小于由角度分布确定的值,该角度分布是由测量轮廓或由测量轮廓计算得出的,这两个角度分布主要是由贝塞尔函数的谐波含量确定的个人资料。由照明窗口表示的照明区域的有限大小会产生一个背景,该背景比在高阶峰中计算出的功率大得多。对于大小等于正弦周期的偶数个的矩形窗口,功率分布的计算在高阶衍射角的衍射角位置处或附近产生最小值。 [参考:16]

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