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Analytical design of an achromatic double grating coupler for microwave and millimeter-wave regions of the spectrum

机译:用于光谱微波和毫米波区域的消色差双光栅耦合器的分析设计

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Abstract: Diffractive elements have several distinct advantages over conventional refractive elements. They are lighter and more compact and can be manufactured easily and quickly. These elements are usually used as optical elements, but they can also be used in other regions of the spectrum. An example of a diffractive element which is used for millimeter waves is a grating coupler (GC), which couples a guided wave out of a waveguide into free space. In most applications, the preferred direction of the output wave is normal to the waveguide plane. Unfortunately, as the imaging properties of diffractive elements depend strongly upon the wavelength of the readout wave, it is difficult to use GCs when the input source of the system is polychromatic or when it suffers from wavelength variations. In this paper, we present a method to design a double grating coupler (DGC), which couples a polychromatic wave out of a waveguide with only negligible angular dispersion. The aim of the design is to construct two grating functions in such a way that the chromatic dispersions of the two gratings will mutually compensate each other. In order to achieve this, we use an iterative method, whereby the main ides is to design a double grating which deflects two different wavelengths, with no dispersion, resulting in negligible dispersion within the band. !8
机译:摘要:衍射元件与常规折射元件相比具有几个明显的优势。它们更轻,更紧凑,并且可以轻松,快速地制造。这些元素通常用作光学元素,但也可以在光谱的其他区域使用。用于毫米波的衍射元件的一个示例是光栅耦合器(GC),该光栅耦合器将导波从波导中耦合到自由空间中。在大多数应用中,输出波的首选方向垂直于波导平面。不幸的是,由于衍射元件的成像特性在很大程度上取决于读出波的波长,因此当系统的输入源是多色的或遭受波长变化时,很难使用GC。在本文中,我们提出了一种设计双光栅耦合器(DGC)的方法,该方法将多色波从波导中耦合出来,并且角散射可以忽略不计。该设计的目的是以这种方式构造两个光栅功能,使得两个光栅的色散将相互补偿。为了实现这一点,我们使用了一种迭代方法,其中主要思想是设计一个双光栅,它可以偏转两个不同的波长,并且没有色散,从而使频带内的色散可以忽略不计。 !8

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