Quiroga Mellado, Juan AntonioVargas Balbuena, JavierGonzález Fernández, Luis M.Belenguer Dávila, Tomás2023-06-202023-06-202010-06-011. D. N. Neal, J. Copland, and D. Neal, Proc. SPIE 4779, 148 (2002). 2. J. Pfund, N. Lindlein, and J. Schwider, Appl. Opt. 37, 22 (1998). 3. D. O’Shea, T. J. Suleski, A. D. Kathman, and D. W. Prather, Diffractive Optics: Design, Fabrication, and Test (SPIE, 2004). 4. R. Hartley and A. Zisserman, Multiple View Geometry in Computer Vision (Cambridge U. Press, 2004).0146-959210.1364/OL.35.001762https://hdl.handle.net/20.500.14352/43968© 2010 Optical Society of America.We demonstrate a method to calibrate a Shack-Hartmann sensor as an orthographic camera. This calibration method permits us to obtain the distance, the rotation matrix between the microlens array and CCD imaging planes, and the projection matrix, which models the projection of the incoming rays to the CCD imaging plane. The proposed calibration method introduces a very compact matrix notation and allows wavefront reconstruction without an explicit centroid search between the reference and distorted spot diagrams. We show a set of simulations in code V that prove the effectiveness of the proposed method.engCalibration of a Shack-Hartmann wavefront sensor as an orthographic camerajournal articlehttp://dx.doi.org/10.1364/OL.35.001762http://www.opticsinfobase.org/open access535OpticsÓptica (Física)2209.19 Óptica Física