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Large Absorption Enhancement in Ultrathin Solar Cells Patterned by Metallic Nanocavity Arrays.


ABSTRACT: A new type of light trapping structure utilizing ring-shaped metallic nanocavity arrays is proposed for the absorption enhancement in ultrathin solar cells with few photonic waveguide modes. Dozens of times of broadband absorption enhancement in the spectral range of 700 to 1100?nm is demonstrated in an ultrathin Si3N4/c-Si/Ag prototype solar cell by means of finite-difference time-domain (FDTD) simulation, and this dramatic absorption enhancement can be attributed to the excitation of plasmonic cavity modes in these nanocavity arrays. The cavity modes optimally compensate for the lack of resonances in the longer wavelength range for ultrathin solar cells, and eventually a maximum Jsc enhancement factor of 2.15 is achieved under AM 1.5G solar illumination. This study opens a new perspective for light management in thin film solar cells and other optoelectronic devices.

SUBMITTER: Wang W 

PROVIDER: S-EPMC5050426 | biostudies-literature | 2016 Oct

REPOSITORIES: biostudies-literature

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Large Absorption Enhancement in Ultrathin Solar Cells Patterned by Metallic Nanocavity Arrays.

Wang Wei W   Zhang Jiasen J   Che Xiaozhou X   Qin Guogang G  

Scientific reports 20161005


A new type of light trapping structure utilizing ring-shaped metallic nanocavity arrays is proposed for the absorption enhancement in ultrathin solar cells with few photonic waveguide modes. Dozens of times of broadband absorption enhancement in the spectral range of 700 to 1100 nm is demonstrated in an ultrathin Si<sub>3</sub>N<sub>4</sub>/c-Si/Ag prototype solar cell by means of finite-difference time-domain (FDTD) simulation, and this dramatic absorption enhancement can be attributed to the e  ...[more]

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