The aim of the paper is to study a gradient constrained problem associated with a linear operator. Two types of problems are investigated. The first one is the equivalence between a non-constant gradient constrained problem and a suitable obstacle problem, where the obstacle solves a Hamilton-Jacobi equation in the viscosity sense. The equivalence result is obtained under a condition on the gradient constraint. The second problem is the existence of Lagrange multipliers. We prove that the non-constant gradient constrained problem admits a Lagrange multiplier, which is a Radon measure if the free term of the equation f ∈ L^p, p > 1. If f is a positive constant, we regularize the result, namely we prove that the Lagrange multipliers belong to L^2.

Lagrange multipliers and non-constant gradient constrained problem / Giuffre, Sofia. - In: JOURNAL OF DIFFERENTIAL EQUATIONS. - ISSN 0022-0396. - 269:1(2020), pp. 542-562. [10.1016/j.jde.2019.12.013]

Lagrange multipliers and non-constant gradient constrained problem

Sofia Giuffre
2020-01-01

Abstract

The aim of the paper is to study a gradient constrained problem associated with a linear operator. Two types of problems are investigated. The first one is the equivalence between a non-constant gradient constrained problem and a suitable obstacle problem, where the obstacle solves a Hamilton-Jacobi equation in the viscosity sense. The equivalence result is obtained under a condition on the gradient constraint. The second problem is the existence of Lagrange multipliers. We prove that the non-constant gradient constrained problem admits a Lagrange multiplier, which is a Radon measure if the free term of the equation f ∈ L^p, p > 1. If f is a positive constant, we regularize the result, namely we prove that the Lagrange multipliers belong to L^2.
2020
Non-constant gradient constraints; Lagrange multipliers; Obstacle problem
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.12318/58893
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