Lin Hung-Yu, Kuo Yang, Liao Cheng-Yuan, Yang C C, Kiang Yean-Woei
Institute of Photonics and Optoelectronics, Department of Electrical Engineering, National Taiwan University, Roosevelt Road, Section 4, Taipei, 10617, Taiwan.
Opt Express. 2012 Jan 2;20(1):A104-18. doi: 10.1364/oe.20.00a104.
The authors numerically investigate the absorption enhancement of an amorphous Si solar cell, in which a periodical one-dimensional nanowall or two-dimensional nanopillar structure of the Ag back-reflector is fabricated such that a dome-shaped grating geometry is formed after Si deposition and indium-tin-oxide coating. In this investigation, the effects of surface plasmon (SP) interaction in such a metal nanostructure are of major concern. Absorption enhancement in most of the solar spectral range of significant amorphous Si absorption (320-800 nm) is observed in a grating solar cell. In the short-wavelength range of high amorphous Si absorption, the weakly wavelength-dependent absorption enhancement is mainly caused by the broadband anti-reflection effect, which is produced through the surface nano-grating structures. In the long-wavelength range of diminishing amorphous Si absorption, the highly wavelength-sensitive absorption enhancement is mainly caused by Fabry-Perot resonance and SP interaction. The SP interaction includes the contributions of surface plasmon polariton and localized surface plasmon.
作者对非晶硅太阳能电池的吸收增强进行了数值研究,其中在银背反射器上制备了周期性的一维纳米壁或二维纳米柱结构,使得在硅沉积和铟锡氧化物涂层之后形成圆顶形光栅几何结构。在该研究中,主要关注这种金属纳米结构中表面等离子体(SP)相互作用的影响。在光栅太阳能电池中观察到在非晶硅显著吸收的大部分太阳光谱范围(320 - 800 nm)内吸收增强。在非晶硅高吸收的短波长范围内,弱波长依赖性吸收增强主要由表面纳米光栅结构产生的宽带抗反射效应引起。在非晶硅吸收逐渐减弱的长波长范围内,高度波长敏感的吸收增强主要由法布里 - 珀罗共振和SP相互作用引起。SP相互作用包括表面等离子体激元和局域表面等离子体的贡献。