On the numerical solution of the far field refractor problem

Author:

De Leo Roberto,Gutiérrez Cristian E.,Mawi Henok

Funder

NSF

Publisher

Elsevier BV

Subject

Applied Mathematics,Analysis

Reference13 articles.

1. Principles of Optics, Electromagnetic Theory, Propagation, Onterference and Diffraction of Light;Born,1959

2. Designing illumination lenses and mirrors by the numerical solution of Monge–Ampère equations;Brix;J. Opt. Soc. Amer. A,2015

3. Solving the Monge–Ampere equations for the inverse reflector problem;Brix;Math. Models Methods Appl. Sci.,2015

4. On the numerical solution of the problem of reflector design with given far-field scattering data;Caffarelli;Contemp. Math.,1999

5. Far-field reflector problem and intersection of paraboloids;Castro;Numer. Math.,2015

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1. Introduction;Springer Tracts in Modern Physics;2024

2. Solution of the Far Field Refractor Problem $$ \kappa <1$$;SpringerBriefs on PDEs and Data Science;2023

3. On the generalized $$L_q$$-reflector inverse problem with variational methods;Geometriae Dedicata;2022-06-29

4. Monotone discretization of the Monge–Ampère equation of optimal transport;ESAIM: Mathematical Modelling and Numerical Analysis;2022-04-25

5. On the L q -reflector problem in ℝ n with non-Euclidean norm;Advanced Nonlinear Studies;2022-01-01

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