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A vector diffraction model of wave propagation in a coronagraphic terrestrial planet finder

机译:血管结陆地行星发现者中波传播的矢量衍射模型

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In this work we study vector electromagnetic wave propagation in a visible-light coronagraph for applications to the design and analysis of Terrestrial Planet Finder (TPF). A visible light coronagraph in TPF requires detection of a terrestrial planet which is ~1010 dimmer than the central stellar source. Consequently, any theory used to design and analyze TPF requires accuracy better than 10-10 in intensity or 10-5 in electric field. Current coronagraphic approaches to TPF have relied on scalar diffraction theory. However, the vector nature of light requires a vector approach to the problem. In this study we employ a time-harmonic vector theory to study the electromagnetic field propagation through metallic focal plane occulting mask on dielectric substrate. We use parallelized edge-based vector finite element model to compute the wave propagation in a three-dimensional tetrahedral grid representing the geometry of the coronagraph. The edge-based finite element method overcomes the problem of modal propagation and rigorously enforces the field divergence to be zero. The reflectivity and transmittivity in the geometry are computed through the gold metal in various shapes using a planar incident beam. Subsequently, the near-field beam diffraction around the mask is investigated.
机译:在这项工作中,我们研究了矢量电磁波繁殖,在陆地行星发现器(TPF)的设计和分析中的应用中的应用。 TPF的可见光凝纹结构需要检测陆地行星,该地球比中央恒星源〜1010调光。因此,用于设计和分析TPF的任何理论需要精确度超过10-10强度或电场10-5。 TPF的目前的僵尸方法依赖于标量衍射理论。然而,光的矢量性质需要对问题的矢量方法。在这项研究中,我们采用时谐波矢量理论来研究通过在介电基板上的金属焦平面覆盖掩模的电磁场传播。我们使用并行化边缘的矢量有限元模型来计算表示调节件的几何形状的三维四面体网格中的波传播。基于边缘的有限元方法克服了模态传播的问题,严格强制执行场发散为零。几何形状中的反射率和透射率通过使用平面入射光束以各种形状计算的金属。随后,研究了掩模周围的近场束衍射。

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