Kekatpure Rohan D, Hryciw Aaron C, Barnard Edward S, Brongersma Mark L
Geballe Laboratory for Advanced Materials, Stanford University, Stanford, CA 94305, USA.
Opt Express. 2009 Dec 21;17(26):24112-29. doi: 10.1364/OE.17.024112.
We present a robust iterative technique for solving complex transcendental dispersion equations routinely encountered in integrated optics. Our method especially befits the multilayer dielectric and plasmonic waveguides forming the basis structures for a host of contemporary nanophotonic devices. The solution algorithm ports seamlessly from the real to the complex domain--i.e., no extra complexity results when dealing with leaky structures or those with material/metal loss. Unlike several existing numerical approaches, our algorithm exhibits markedly-reduced sensitivity to the initial guess and allows for straightforward implementation on a pocket calculator.
我们提出了一种强大的迭代技术,用于求解集成光学中经常遇到的复杂超越色散方程。我们的方法特别适用于构成许多当代纳米光子器件基础结构的多层介质和等离子体波导。该求解算法可无缝地从实域转换到复域——也就是说,在处理泄漏结构或存在材料/金属损耗的结构时不会产生额外的复杂性。与现有的几种数值方法不同,我们的算法对初始猜测的敏感性显著降低,并且可以在袖珍计算器上直接实现。