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Titlebook: Adjoint Topology Optimization Theory for Nano-Optics; Yongbo Deng Book 2022 The Editor(s) (if applicable) and The Author(s), under exclusi

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Dielectric Material-Based Topology Optimization for Nano-Optics,voided. Derivatives were evaluated using finite differences or, more recently, using symbolic manipulation packages. The first has the disadvantage of limited accuracy. The second has disadvantages of being expensive and requiring considerable computer memory. The recent developments described in th
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Metal Material-Based Topology Optimization for Nano-Optics,zation procedures are becoming more and more important for lightweight design, where weight reduction can, for example in the case of automotive or aerospace industry, lead to lower fuel consumption and a corresponding reduction in operational costs as well as beneficial effects on the environment.
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Extension of Design Space: Topology Optimization on Two-Dimensional Manifolds for Wave Optics,presented by Tsitsiklis in [205]. The fast marching method was extended to triangulated surfaces by Kimmel and Sethian in [112]. The extended method solves eikonal equations on flat rectangular or curved triangulated domains in . steps, where . is the number of vertices. In other words, the computat
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https://doi.org/10.1007/978-981-16-7969-8Topology optimization; Inverse design; Nano-optics; Electromagnetics; Adjoint method; Wave equations; Diel
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978-981-16-7971-1The Editor(s) (if applicable) and The Author(s), under exclusive license to Springer Nature Singapor
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Jürgen Weber,Volker Hafkesbrinkfor the three-dimensional optical waves, where the magnetic and electric field-based description of the wave propagation are included. In contrast to the two-dimensional cases, three-dimensional optical waves must include an additional divergence-free condition for the field variables. The edge elem
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