Spectrum on demand light source (SOLS) for advanced photovoltaic characterization.

Miquel Casademont-Viñas, Martí Gibert-Roca, M. Campoy‐Quiles, A. Goñi
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Abstract

We report a multi-purpose spectrum-on-demand light source (SOLS), conceived primarily but not exclusively for the multiple and advanced characterization of photovoltaic (PV) materials and devices. The apparatus is a spectral shaper illumination device, providing a tunable and spectrally shaped light beam produced by modulating the intensity and/or wavelength range of a primary light source. SOLS stands out from the state of the art because it produces almost any spectrum on demand and delivers two types of output: a spectrally shaped and spatially homogeneous beam over its cross section for areal illumination or a spatially and spectrally split beam into its wavelength components, a unique capability suited to characterize lateral-tandem (Rainbow) solar cells. The tuneability from broadband to narrowband illumination enables two characterization devices into one, namely, a solar simulator for the determination of the power conversion efficiency and an external quantum efficiency measuring system. We expect the SOLS setup to accelerate material screening, enabling the discovery and optimization of novel multi-component materials and devices, in particular for emergent PV technologies like organic, metal halide perovskites, or multi-junction geometries, as well as novel PV applications such as indoors, building integrated, or agrivoltaics, among others.
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光谱随需光源(SOLS)用于先进的光伏表征。
我们报告了一种多用途的按需光谱光源(SOLS),主要用于但不限于光伏(PV)材料和器件的多重和高级表征。该装置是一种光谱成形照明装置,提供通过调制一次光源的强度和/或波长范围产生的可调谐和光谱成形光束。SOLS从目前的技术中脱颖而出,因为它可以根据需要产生几乎任何光谱,并提供两种类型的输出:光谱形状和空间均匀的光束在其横截面上进行区域照明,或者空间和光谱分裂光束进入其波长组件,这是一种适合表征横向串联(彩虹)太阳能电池的独特能力。从宽带到窄带照明的可调谐性使两个表征装置合二为一,即用于确定功率转换效率的太阳模拟器和外部量子效率测量系统。我们希望SOLS的设置能够加速材料筛选,使新型多组分材料和器件的发现和优化成为可能,特别是对于新兴的光伏技术,如有机、金属卤化物钙钛矿或多结几何形状,以及新型光伏应用,如室内、建筑集成或农业光伏等。
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