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Solution box: SOLBOX-06

机译:解决方案箱:SOLBOX-06

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The topic of this issue is an optimization problem (SOLBOX-06), involving nanocubes at optical frequencies. This type of array arrangement (namely, a nanoarray) is useful for controlling and directing optical waves in numerous applications, such as optical links, sensing, and energy harvesting [1–6]. A particular aim in SOLBOX-06 is to maximize the scattering or radiation of a given array structure in desired directions. Despite the number of unknowns being relatively small, the main challenge is the size of the optimization space, which is grows exponentially with the number of nanocubes. In addition, the nanocubes are made of silver (Ag). They must therefore be modeled as penetrable objects with negative real permittivity, at optical frequencies. The sample solutions also included in this issue use genetic algorithms, combined with a solver based on surface integral equations, and the Multilevel Fast Multipole algorithm. Alternative solutions of the same problems with other solvers, possibly using different and more-efficient optimization tools (heuristic or gradient-based) and solution methods (e.g., volume integral equations, other types of acceleration algorithms, iterative solvers, and discretization techniques), are welcome. Please submit your solutions to ozergul@metu.edu.tr.
机译:此问题的主题是一个优化问题(SOLBOX-06),涉及光频率下的纳米立方体。这种类型的阵列布置(即纳米阵列)可用于控制和引导光波在众多应用中使用,例如光链路,传感和能量收集[1-6]。 SOLBOX-06的特定目标是使给定阵列结构在所需方向上的散射或辐射最大化。尽管未知数相对较少,但主要挑战是优化空间的大小,而优化空间的大小却随着纳米立方体的数量呈指数增长。另外,纳米立方体由银(Ag)制成。因此,必须将它们建模为在光频率下具有负实介电常数的可穿透物体。本期还包括的样本解决方案使用遗传算法,基于表面积分方程的求解器和Multilevel Fast Multipole算法相结合。与其他求解器一起解决相同问题的替代解决方案,可能使用其他更有效的优化工具(基于启发式或基于梯度)和求解方法(例如,体积积分方程,其他类型的加速算法,迭代求解器和离散化技术),受欢迎的。请将您的解决方案发送到ozergul@metu.edu.tr。

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