An augmented Lagrangian approach to the numerical solution of the Dirichlet problem for the elliptic Monge-Ampère equation in two dimensions
Electronic transactions on numerical analysis, Tome 22 (2006), pp. 71-96.

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Summary: In this article, we discuss the numerical solution of the Dirichlet problem for the real elliptic Monge- Amp`ere equation, in two dimensions, by an augmented Lagrangian based iterative method. To derive the above algorithm, we take advantage of a reformulation of the Monge-Amp`ere problem as a saddle-point one, for a wellchosen augmented Lagrangian functional over the product of appropriate primal and dual sets. The convergence of the finite element approximation and of the iterative methods described in this article still has to be proved, however, on the basis of numerical experiments reported in this article, it is safe to say that: (i) The augmented Lagrangian methodology discussed here provides a sequence converging to a solution of the Monge-Amp`ere problem under consideration, if such a solution exists in the space . (ii) If, despite the smoothness of its data, the above $\sterling $########$${\S}$$###$\copyright \ddot $ problem has no solution, the above augmented Lagrangian method solves it in a least-squares sense, to be precisely defined in this article.
Classification : 35J60, 65F10, 65N30
Keywords: elliptic Monge-Ampère equation, augmented Lagrangian algorithms, mixed finite element approximations
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     author = {Dean, E.J. and Glowinski, R.},
     title = {An augmented {Lagrangian} approach to the numerical solution of the {Dirichlet} problem for the elliptic {Monge-Amp\`ere} equation in two dimensions},
     journal = {Electronic transactions on numerical analysis},
     pages = {71--96},
     publisher = {mathdoc},
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     year = {2006},
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Dean, E.J.; Glowinski, R. An augmented Lagrangian approach to the numerical solution of the Dirichlet problem for the elliptic Monge-Ampère equation in two dimensions. Electronic transactions on numerical analysis, Tome 22 (2006), pp. 71-96. http://geodesic.mathdoc.fr/item/ETNA_2006__22__a5/