English

Power of Supersymmetry in D-particle Dynamics

High Energy Physics - Theory 2011-07-19 v2

Abstract

A new systematic method is developed to study to what extent the symmetry requirements alone, above all the invariance under 16 supersymmetries (SUSY), determine the completely off-shell effective action Γ\Gamma of a D-particle, i.e. without imposing any restrictions on its position rm(τ)r^m(\tau) and spin θα(τ)\theta_\alpha(\tau). Our method consists of (i) writing down the proper closure relations for general SUSY transformations δϵ\delta_\epsilon (which necessarily involves Γ\Gamma itself) together with the invariance condition δϵΓ=0\delta_\epsilon\Gamma=0 (ii) and solving this coupled system of functional differential equations for δϵ\delta_\epsilon and Γ\Gamma simultaneously, modulo field redefinitions, in a consistent derivative expansion scheme. Our analysis is facilitated by a novel classification scheme introduced for the terms in Γ\Gamma. At order 2 and 4, although no assumption is made on the underlying theory, we reproduce the effective action previously obtained at the tree and the 1-loop level in Matrix theory respectively (modulo two constants), together with the quantum-corrected SUSY transformations which close properly. This constitutes a complete unambiguous proof of off-shell non-renormalization theorems.

Keywords

Cite

@article{arxiv.hep-th/0210133,
  title  = {Power of Supersymmetry in D-particle Dynamics},
  author = {Y. Kazama and T. Muramatsu},
  journal= {arXiv preprint arXiv:hep-th/0210133},
  year   = {2011}
}

Comments

44 pages, v2: typos corrected, published version