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An azimuthally-modified linear phase grating: Generation of varied radial carpet beams over different diffraction orders with controlled intensity sharing among the generated beams

机译:方位角修正的线性相位光栅:产生不同衍射级的变化的径向地毯光束并在所产生的光束之间控制强度共享

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摘要

Diffraction gratings are important optical components and are used in many areas of optics such as in spectroscopy. A diffraction grating is a periodic structure that splits and diffracts the impinging light beam into several beams travelling in different directions. The diffracted beams from a grating are commonly called diffraction orders. The directions of the diffraction orders depend on the grating period and the wavelength of the impinging light beam so that a grating can be used as a dispersive element. In the diffraction of a plane wave from a conventional grating, the intensities of diffracted beams decrease with increasing order of diffraction. Here, we introduce a new type of grating where in the diffraction of a plane wave, the intensity of a given higher order diffracted beam can be higher than the intensity of the lower orders. We construct these gratings by adding an azimuthal periodic dependency to the argument of the transmission function of a linear phase grating that has a sinusoidal profile and we call them azimuthally-modified linear phase gratings (AMLPGs). In this work, in addition to introducing AMLPGs, we present the generation of varied radial carpet beams over different diffraction orders of an AMLPG with controlled intensity sharing among the generated beams. A radial carpet beam is generated in the diffraction of a plane wave from a radial phase grating. We show that for a given value of the phase amplitude over the host linear phase grating, one of the diffraction orders is predominant and by increasing the value of the phase amplitude, the intensity sharing changes in favor of the higher orders. The theory of the work and experimental results are presented. In comparison with the diffraction of a plane wave from radial phase gratings, the use of AMLPGs provides high contrast diffraction patterns and presents varied radial carpet beams over the different diffraction orders of the host linear phase grating. The resulting patterns over different diffraction orders are specified and their differences are determined. The diffraction grating introduced with controlled intensity sharing among different diffraction orders might find wide applications in many areas of optics such as optical switches. We show that AMLPG-based radial carpet beams can be engineered in which they acquire sheet-like spokes. This feature nominates them for potential applications in light sheet microscopy. In addition, a detailed analysis of the multiplication of the diffraction pattern of an AMLPG by the 2D structure of a spatial light modulator is presented. The presented theory is confirmed by respective experiments.
机译:衍射光栅是重要的光学组件,并用于光学的许多领域,例如光谱学。衍射光栅是一种周期性结构,将入射光束分裂并衍射为沿不同方向传播的几束光。来自光栅的衍射光束通常称为衍射级。衍射级的方向取决于光栅周期和入射光束的波长,使得光栅可以用作色散元件。在来自常规光栅的平面波的衍射中,衍射光束的强度随着衍射级次的增加而降低。在这里,我们介绍一种新型的光栅,其中在平面波的衍射中,给定的高阶衍射光束的强度可能高于低阶衍射光束的强度。我们通过向具有正弦曲线轮廓的线性相位光栅的传输函数的参数添加一个方位角周期性依存关系来构造这些光栅,我们将它们称为方位角修正线性相位光栅(AMLPG)。在这项工作中,除了介绍AMLPG之外,我们还介绍了在AMLPG的不同衍射级上生成不同的径向毛毯光束,并在生成的光束之间控制了强度共享。在来自径向相位光栅的平面波的衍射中产生了径向毛毯束。我们表明,对于主机线性相位光栅上的给定相位振幅值,衍射级之一是主要的,并且通过增加相位振幅值,强度共享发生变化,而偏向更高阶。介绍了工作原理和实验结果。与来自径向相位光栅的平面波的衍射相比,AMLPG的使用提供了高对比度的衍射图,并在主体线性相位光栅的不同衍射级上呈现出变化的径向毛毯光束。指定了不同衍射级的所得图案,并确定了它们之间的差异。在不同衍射级之间以受控的强度共享引入的衍射光栅可能会在光学的许多领域(例如光学开关)中找到广泛的应用。我们显示,可以设计基于AMLPG的径向地毯横梁,在其中它们可以获取片状辐条。此功能提名它们在光片显微镜中的潜在应用。另外,详细分析了AMLPG的衍射图与​​空间光调制器的2D结构的乘积。提出的理论通过各自的实验得到证实。

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