arXiv Analytics

Sign in

arXiv:2104.04833 [math.AP]AbstractReferencesReviewsResources

Quasiconvexity in the fractional calculus of variations: Characterization of lower semicontinuity and relaxation

Carolin Kreisbeck, Hidde Schönberger

Published 2021-04-10Version 1

Based on recent developments in the theory of fractional Sobolev spaces, an interesting new class of nonlocal variational problems has emerged in the literature. These problems, which are the focus of this work, involve integral functionals that depend on Riesz fractional gradients instead of ordinary gradients and are considered subject to a complementary-value condition. With the goal of establishing a comprehensive existence theory, we provide a full characterization for the weak lower semicontinuity of these functionals under suitable growth assumptions on the integrands. In doing so, we surprisingly identify quasiconvexity, which is intrinsic to the standard vectorial calculus of variations, as the natural notion also in the fractional setting. In the absence of quasiconvexity, we determine a representation formula for the corresponding relaxed functionals, obtained via partial quasiconvexification outside the region where complementary values are prescribed. Thus, in contrast to classical results, the relaxation process induces a structural change in the functional, turning the integrand from a homogeneous into an inhomogeneous one. Our proofs rely crucially on an inherent relation between classical and fractional gradients, which we extend to Sobolev spaces, enabling us to transition between the two settings.

Comments: 25 pages
Categories: math.AP
Subjects: 49J45, 35R11
Related articles: Most relevant | Search more
arXiv:2107.04134 [math.AP] (Published 2021-07-08)
On a New Class of Fractional Calculus of Variations and Related Fractional Differential Equations
arXiv:1308.3377 [math.AP] (Published 2013-08-15, updated 2014-11-24)
Characterization of gradient Young measures generated by homeomorphisms in the plane
arXiv:1409.4103 [math.AP] (Published 2014-09-14)
A paradigm for the characterization of artifacts in tomography