Title :
Light confinement for silicon solar cells with thin substrate
Author :
Wuchang Ding ; Rui Jia ; Dongmeng Cui ; Xiumei Qiao ; Shijian Wang ; Yun Sun ; Chen Chen ; Zhi Jin ; Xinyu Liu ; Tianchun Ye
Author_Institution :
Inst. of Microelectron., Beijing, China
Abstract :
Thinner silicon substrate are expected to be used in silicon solar cells for cost reduction. In this contribution, we numerically discussed a series antireflection structure for light confinement design that may be applied to silicon solar cells with thin substrates. The results show that nano-pillar-array with silicon nitride coating has a very low reflectance over the whole response region of silicon solar cells. The average reflectance could reach 2.34%, which is fundamentally coincident with reported experimental results. Planar reflection at the back surface of the cell was investigated for light confinement application. Enhanced light absorption of the cell has achieved with high reflectance of the back surface, while the front surface reflectance also increased prominently. Based on the simulation results, back surface scattering with high reflectance were proposed for better light confinement in silicon solar cells with thin substrates.
Keywords :
elemental semiconductors; light absorption; silicon; solar cells; Si; back surface scattering; light absorption; light confinement design; nano-pillar-array; planar reflection; series antireflection structure; silicon substrate; solar cells; Coatings; Optical surface waves; Photovoltaic cells; Reflectivity; Silicon; Surface treatment; Surface waves; antireflection; light confinement; photovoltaic cells; silicon;
Conference_Titel :
Photovoltaic Specialists Conference (PVSC), 2013 IEEE 39th
Conference_Location :
Tampa, FL
DOI :
10.1109/PVSC.2013.6745014