Sha Wei E I, Choy Wallace C H, Chew Weng Cho
Department of Electrical and Electronic Engineering, the University of Hong Kong, Pokfulam Road, Hong Kong, China.
Opt Express. 2010 Mar 15;18(6):5993-6007. doi: 10.1364/OE.18.005993.
A comprehensive study of the plasmonic thin-film solar cell with the periodic strip structure is presented in this paper. The finite-difference frequency-domain method is employed to discretize the inhomogeneous wave function for modeling the solar cell. In particular, the hybrid absorbing boundary condition and the one-sided difference scheme are adopted. The parameter extraction methods for the zeroth-order reflectance and the absorbed power density are also discussed, which is important for testing and optimizing the solar cell design. For the numerical results, the physics of the absorption peaks of the amorphous silicon thin-film solar cell are explained by electromagnetic theory; these peaks correspond to the waveguide mode, Floquet mode, surface plasmon resonance, and the constructively interference between adjacent metal strips. The work is therefore important for the theoretical study and optimized design of the plasmonic thin-film solar cell.
本文对具有周期性带状结构的等离子体薄膜太阳能电池进行了全面研究。采用有限差分频域法离散非均匀波函数以对太阳能电池进行建模。特别地,采用了混合吸收边界条件和单边差分格式。还讨论了零阶反射率和吸收功率密度的参数提取方法,这对于测试和优化太阳能电池设计很重要。对于数值结果,用电磁理论解释了非晶硅薄膜太阳能电池吸收峰的物理机制;这些峰对应于波导模式、弗洛凯模式、表面等离子体共振以及相邻金属条之间的相长干涉。因此,这项工作对于等离子体薄膜太阳能电池的理论研究和优化设计具有重要意义。