首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Improved absorption efficiency of silicon (Si) solar cells through Resonant Waveguide Gratings (RWGs) - A hybrid design of RWG and Si solar cell
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Improved absorption efficiency of silicon (Si) solar cells through Resonant Waveguide Gratings (RWGs) - A hybrid design of RWG and Si solar cell

机译:通过谐振波导光栅(RWG)改善硅(Si)太阳能电池的吸收效率 - RWG和Si太阳能电池的混合设计

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摘要

This research work focuses on the improved performance of a Si solar cell by increasing solar absorption. The silicon solar cell is designed with a hybrid photonic structure of Resonant Waveguide Gratings (RWGs) to enhance absorption efficiency. The Waveguide Gratings have been designed in Fourier Model Method (FMM) using regression algorithm. The subsequent hybrid design of RWG with Si solar cell has been carried out using Finite Difference Time Domain (FDTD) design tool. The grating corrugated layer is designed in a fused silica (SiO2) material and coated with a high index amorphous. TiO2 material. One of the possible realizable grating designed parameters are: grating period d = 316 nm, refractive index of TiO2, n(t) = 2.385, refractive index of fused silica n(s) = 1.450, duty cycle = 65%, structure line width w = 205 nm, resonance wavelength lambda(r) = 632.8 nm (Helium-Neon laser), angle of incidence theta(1) = 18 degrees, and grating grooved height h(g) = 120 nm, whereas the designed parameters for Si solar cell are: refractive index of Si N = 3.882 + i(0.019) at resonance wavelength lambda(r) = 632.8 nm, cell thickness T = 500nm. The employment of optimized grating parameters in simulations leads to efficient hybrid device performance. (C) 2016 Elsevier GmbH. All rights reserved.
机译:本研究工作侧重于通过增加太阳能吸收来改善Si太阳能电池的性能。硅太阳能电池设计有谐振波导光栅(RWG)的混合光子结构,以增强吸收效率。使用回归算法以傅立叶模型方法(FMM)设计了波导光栅。使用有限差分时间域(FDTD)设计工具进行了具有Si太阳能电池的RWG的随后的混合设计。光栅波纹层设计成熔融二氧化硅(SiO 2)材料并涂覆有高指数无定形。 TiO2材料。一个可能的实现的光栅设计参数是:光栅周期d = 316纳米,二氧化钛的折射率,n(T)= 2.385,熔融二氧化硅N(S)= 1.450,占空比= 65%,结构线宽的折射率W = 205纳米,共振波长为λ(R)= 632.8纳米(氦 - 氖激光器),入射角THETA(1)= 18度,以及光栅凹槽的高度h(克)= 120纳米,而所设计的参数对硅太阳能电池是:Si n = 3.882 + i(0.019)的折射率在共振波长λ(R)= 632.8nm,电池厚度t = 500nm。模拟中的优化光栅参数的就业导致有效的混合装置性能。 (c)2016 Elsevier GmbH。版权所有。

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