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Surface patterning of monocrystalline silicon induced by spot laser melting, , , and . Journal of Applied Physics, 124 (16): 163104 (2018)Reply to Sinha, P.; Wade, A. Comment on “Nover et al. Leaching via Weak Spots in Photovoltaic Modules. Energies 2021, 14, 692”, , , and . Energies, 14 (11): 3208 (2021)Reply to: https://doi.org/10.3390/en14113150.Fourier spotting : a novel setup for single-color reflectometry, , , , , and . Analytical and bioanalytical chemistry, 414 (5): 1787-1796 (2022)Quantitative Prediction of Power Loss for Damaged Photovoltaic Modules Using Electroluminescence, , and . Energies, 11 (5): 1172 (2018)23.2% laser processed back contact solar cell: fabrication, characterization and modeling, , , , and . Progress in photovoltaics, 25 (2): 192-200 (2017)Unified Model for Laser Doping of Silicon from Precursors, , , , and . Materials, 14 (9): 2322 (2021)Leaching via Weak Spots in Photovoltaic Modules, , , , and . Energies, 14 (3): 692 (2021)Laser Induced Crystal Defects in Monocrystalline Silicon, , , , , , and . Laser Applications in Microelectronic and Optoelectronic Manufacturing (LAMOM) XXIV, page 109050X. SPIE, (2019)Signatures of self-interstitials in laser-melted and regrown silicon, , and . AIP Advances, 11 (5): 055212 (2021)Self-scaling minority carrier lifetime imaging using periodically modulated electroluminescence, , and . Journal of applied physics, 122 (18): 183105 (2017)