Lochbihler H, Depine R
Appl Opt. 1993 Jul 1;32(19):3459-65. doi: 10.1364/AO.32.003459.
We present a theoretical approach for calculating the fields diffracted by gratings made of highlyconducting wires that have a rectangular shape. The fields between the wires are represented in terms of modal expansions that satisfy the approximated impedance boundary condition. Our results show thatthis procedure is particularly suited to dealing with gold gratings used in the infrared range, a spectral region where the assumption of a perfect conductor does not hold, and where the rigorous modal method assuming penetrable wires exhibits numerical instabilities linked with the high conductivity of gold. Numerical results are presented, and the theory is used to determine wire parameters by fitting theoretical and experimental data.
我们提出了一种理论方法,用于计算由具有矩形形状的高导线制成的光栅所衍射的场。导线之间的场用满足近似阻抗边界条件的模态展开来表示。我们的结果表明,该方法特别适用于处理红外波段使用的金光栅,在这个光谱区域,理想导体的假设不成立,并且假设导线可穿透的严格模态方法会出现与金的高电导率相关的数值不稳定性。给出了数值结果,并通过拟合理论和实验数据,利用该理论来确定导线参数。