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首页> 外文期刊>Journal of Applied Physics >Silicon photovoltaic cells coupled with solar-pumped fiber lasers emitting at 1064 nm
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Silicon photovoltaic cells coupled with solar-pumped fiber lasers emitting at 1064 nm

机译:硅光伏电池与发射1064 nm的太阳泵浦光纤激光器耦合

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摘要

We have designed silicon (Si) photovoltaic (PV) cells coupled with solar-pumped fiber lasers (SPFLs), by considering the unique illumination conditions for PV cells: (1) monochromatic (1064 nm) and normal incidence, (2) large intensity, and (3) small area. We have revealed that a multilayered bandpass filter formed on the front surface of a PV cell equipped with a diffuse reflector on the back surface sufficiently traps the illumination. This, in turn, allows us to use a thin Si wafer to eliminate the detrimental effect of the series resistance in the cell under intense illumination, along with a small lateral size that is suitable for direct connection with an SPFL. Simulated conversion efficiency of the newly designed 20 μm-thick Si PV cell with the 14-layerd bandpass filter and Lambertian back reflector is 61% under normally incident 1064 nm illumination at 1 kW/cm2, which is twice as high as that of a conventional surface-textured Si solar cell of 75 μm in thickness.
机译:考虑到PV电池的独特照明条件,我们设计了与太阳能泵浦光纤激光器(SPFL)耦合的硅(Si)光伏(PV)电池:(1)单色(1064 nm)和法向入射,(2)大强度,以及(3)小面积。我们已经揭示出,在光伏电池的前表面上形成的多层带通滤光片在后表面上配备了漫反射器,足以捕获照明。反过来,这又使我们可以使用薄的硅晶片来消除强光照射下电池中串联电阻的有害影响,以及适合于直接与SPFL直接连接的较小横向尺寸。在1 kW / cm 2 的垂直入射1064 nm照明下,新设计的具有14层带通滤波器和Lambertian背反射器的20μm厚Si PV电池的模拟转换效率为61%。是厚度为75μm的传统表面纹理化Si太阳能电池的两倍高。

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