论文标题

衍射束分裂器的伴随方法和逆设计

Adjoint method and inverse design for diffractive beam splitters

论文作者

Kim, Dong Cheon, Hermerschmidt, Andreas, Dyachenko, Pavel, Scharf, Toralf

论文摘要

具有较大衍射角的衍射光学元件需要特征大小降低到子波长度,这需要一个严格的电磁计算模型来计算。但是,这些衍射元素的计算优化通常受到大量设计参数的限制,因此由于较大的计算时间,参数优化几乎不可能。伴随方法允许仅使用两个电磁模拟来计算所有设计变量的目标函数的梯度,从而实现梯度优化。在这里,我们提出了建模广角衍射光学元件(例如7x7梁拆分器,最大53°衍射角和非平方5x7阵列生成束分离器)的伴随方法。优化后,我们获得了梁分离器的设计,其均匀性误差分别为16.35%(7x7)和6.98%(5x7)。在根据我们的设计中回顾了从制造元素获得的实验结果之后,我们发现伴随优化方法是设计广角衍射型风扇散布的一种出色而快速的方法。

Diffractive optical elements with a large diffraction angle require feature sizes down to sub-wavelength dimensions, which require a rigorous electromagnetic computational model for calculation. However, the computational optimization of these diffractive elements is often limited by the large number of design parameters, making parametric optimization practically impossible due to large computation times. The adjoint method allows calculating the gradient of the target function with respect to all design variables with only two electromagnetic simulations, thus enabling gradient optimization. Here, we present the adjoint method for modeling wide-angle diffractive optical elements like 7x7 beam splitters with a maximum 53° diffraction angle and a non-square 5x7 array generating beam splitter. After optimization we obtained beam splitter designs with a uniformity error of 16.35% (7x7) and 6.98% (5x7), respectively. After reviewing the experimental results obtained from fabricated elements based on our designs, we found that the adjoint optimization method is an excellent and fast method to design wide-angle diffractive fan-out beam-splitters.

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