A Quantum Mechanical Model of Spherical Supermembranes
High Energy Physics - Theory
2010-12-03 v2
Abstract
We present a quantum mechanical model of spherical supermembranes. Using superfields to represent the cartesian coordinates of the membrane, we are able to exactly determine its supersymmetric vacua. We find there are two classical vacua, one corresponding to an extended membrane and one corresponding to a point-like membrane. For the case, instanton effects then lift these vacua to massive states. For the case, there is no instanton tunneling, and the vacua remain massless. Similarities to spherical supermembranes as giant gravitons and in Matrix theory on pp-waves is discussed.
Keywords
Cite
@article{arxiv.hep-th/0210049,
title = {A Quantum Mechanical Model of Spherical Supermembranes},
author = {John Conley and Ben Geller and Mark G. Jackson and Laura Pomerance and Sharad Shrivastava},
journal= {arXiv preprint arXiv:hep-th/0210049},
year = {2010}
}
Comments
9 pages