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One industrially relevant fabrication method for CuInSe2 absorber layers begins with electrodeposition, which is highly resource efficient and easily up-scalable, followed by a high temperature annealing step. Commonly a furnace is used for annealing, although it is possible to reduce the duration of this step by 2–3 orders of magnitude using laser heating. Past work demonstrated that rastering a...
Light scattering spectroscopy, mainly developed for Cu(In,Ga)Se2 thin films growth, has been demonstrated to be an efficient in-situ monitoring tool. It consists of illuminating the substrate surface using a light source and collecting the diffused light with a spectrometer. The on-line information allows monitoring the point of stoichiometry of the grown layer. In this work, we propose an alternative...
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