RT Journal Article T1 Design and numerical analysis of metallic Ronchi diffraction gratings acting as reflective beam-splitter A1 Torcal Milla, Francisco José A1 Sánchez Brea, Luis Miguel AB In this work, a reflective beam-splitter based on a metallic Ronchi diffraction grating normally illuminated is designed and analysed. This kind of beam-splitter could have potential applications in photonics and optical technologies in which robustness is necessary since it may be manufactured over malleable metallic substrates.Methods: The main idea under the design is as simple as obligating the zero-th diffraction order to be null. Firstly, scalar approach is performed, showing an approximation to the parameters of the grating necessary to cancel zero-th diffraction order. After that, a more rigorous approach such as Rigorous Coupled Waves Analysis (TE and TM polarization) is used to evaluate the proposed diffraction gratings as reflective beam-splitters.Results: Beam-splitting is demonstrated for TE and TM polarization with slightly different dimensional parameters of the diffraction grating. Besides, we show how physical height of the grating grooves that allows cancelling zero-th diffraction order for a certain illumination wave-length depends on the metals used to manufacture the grating and its period. The dependence of the grooves height on the period is exponentially decreasing. To complete the analysis, we demonstrate how for a given grating period, the grooves height also depends on the illumination wavelength. PB Gustav Fischer Verlag SN 0030-4026 YR 2022 FD 2022-12 LK https://hdl.handle.net/20.500.14352/72763 UL https://hdl.handle.net/20.500.14352/72763 LA eng NO © 2022 The Author(s). Published by Elsevier GmbH.We would like to thank Alexander Cuadrado and Mahmoud Hamdy Elshorbagy for their valuable comments about this manuscript. This work has been partially supported by Gobierno de Arag´on-Fondo Social Europeo-Grupo de Tecnología ´Optica L´aser (Project E44_20R), Ministerio de Economía y Competitividad (Spain) and the European funds for regional development (EU), project Nanorooms PID2019-105918 GB-I00. NO Ministerio de Economía y Competitividad (MINECO)/ FEDER NO Gobierno de Aragon-Fondo Social Europeo DS Docta Complutense RD 30 abr 2024