Modeling scalar fields consistent with positive mass
Abstract
This paper explores the conditions under which modified gravitational theories admit the positive mass. Following Witten's spinor argument, it is argued that a single condition should be imposed upon a gauge connection in the super-covariant derivative. Under this condition, we present a simple formula for the divergence of the Nester tensor in Einstein's gravity with general source. Applying this prescription to the Einstein-scalar system, we find that for a certain class of the gauge connection, a special kind of non-canonical scalar-field theory admits the positivity property in addition to the ordinary canonical scalar-field system. In both cases the scalar potential can be written in terms of a superpotential. In the non-canonical case we obtain the most general "BPS" solutions which preserve at least half of the supersymmetry.
Cite
@article{arxiv.1310.1663,
title = {Modeling scalar fields consistent with positive mass},
author = {Masato Nozawa and Tetsuya Shiromizu},
journal= {arXiv preprint arXiv:1310.1663},
year = {2014}
}
Comments
8 pages. v2: minor modifications, to appear in PRD