Chiang Po-Jui, Chiang Yen-Chung, Sun Nai-Hsiang, Hong Shi-Xi
Department of Electronic Engineering, National Kaohsiung University of Applied Sciences, Kaohsiung, Taiwan.
Opt Express. 2011 Feb 28;19(5):4324-36. doi: 10.1364/OE.19.004324.
Analysis of optical waveguides with thin metal films is studied by the multidomain pseudospectral frequency-domain (PSFD) method. Calculated results for both guiding and leaky modes are precise by means of the PSFD based on Chebyshev-Lagrange interpolating polynomials with modified perfectly matched layer (MPML). By introducing a suitable boundary condition for the dielectric-metallic interface, the stability and the spectrum convergence characteristic of the PSFD-MPML method can be sustained. The comparison of exact solutions of highly sensitive surface plasmon modes in 1D dielectric-metal waveguides and those calculated by our PSFD-MPML demonstrates the validity and usefulness of the proposed method. We also apply the method to calculate the effective refractive indices of an integrated optical waveguide with deposition of the finite gold metal layer which induces the hybrid surface plasmon modes. Furthermore, the 2-D optical structures with gold films are investigated to exhibit hybrid surface plasmon modes of wide variations. We then apply hybrid surface plasmon modes to design novel optical components-mode selective devices and the polarizing beam splitter.
采用多域伪谱频域(PSFD)方法研究了带有薄金属膜的光波导。基于具有改进的完全匹配层(MPML)的切比雪夫 - 拉格朗日插值多项式的PSFD方法,对于导模和泄漏模的计算结果都是精确的。通过为介质 - 金属界面引入合适的边界条件,可以维持PSFD - MPML方法的稳定性和频谱收敛特性。一维介质 - 金属波导中高灵敏度表面等离子体激元模式的精确解与我们的PSFD - MPML计算结果的比较证明了该方法的有效性和实用性。我们还应用该方法计算了具有有限金金属层沉积的集成光波导的有效折射率,该金属层会诱导混合表面等离子体激元模式。此外,对带有金膜的二维光学结构进行了研究,以展示具有广泛变化的混合表面等离子体激元模式。然后,我们将混合表面等离子体激元模式应用于设计新型光学元件——模式选择器件和偏振分束器。