Conformally invariant bending energy for hypersurfaces
Abstract
The most general conformally invariant bending energy of a closed four-dimensional surface, polynomial in the extrinsic curvature and its derivatives, is constructed. This invariance manifests itself as a set of constraints on the corresponding stress tensor. If the topology is fixed, there are three independent polynomial invariants: two of these are the straighforward quartic analogues of the quadratic Willmore energy for a two-dimensional surface; one is intrinsic (the Weyl invariant), the other extrinsic; the third invariant involves a sum of a quadratic in gradients of the extrinsic curvature -- which is not itself invariant -- and a quartic in the curvature. The four-dimensional energy quadratic in extrinsic curvature plays a central role in this construction.
Cite
@article{arxiv.cond-mat/0507320,
title = {Conformally invariant bending energy for hypersurfaces},
author = {Jemal Guven},
journal= {arXiv preprint arXiv:cond-mat/0507320},
year = {2009}
}
Comments
16 pages