English

Cycles of interactions in multi-gravity theories

High Energy Physics - Theory 2015-01-07 v2 General Relativity and Quantum Cosmology

Abstract

In this paper we study multi-gravity (multi-metric and multi-vielbein) theories in the presence of cycles of interactions (cycles in the so-called `theory graph'). It has been conjectured that in multi-metric theories such cycles lead to the introduction of a ghost-like instability, which, however, is absent in the multi-vielbein version of such theories. In this paper we answer this question in the affirmative by explicitly demonstrating the presence of the ghost in such multi-metric theories in the form of dangerous higher derivative terms in the decoupling limit Lagrangian; we also explain why these terms are absent in the vielbein version of these theories. Finally we discuss the ramifications of our result on the dimensional deconstruction paradigm, which would seek an equivalence between such theories and a truncated Kaluza-Klein theory, and find that the impediment to taking the continuum limit due to a low strong-coupling scale is exacerbated by the presence of the ghost, when these theories are constructed using metrics.

Keywords

Cite

@article{arxiv.1410.7774,
  title  = {Cycles of interactions in multi-gravity theories},
  author = {James H. C. Scargill and Johannes Noller and Pedro G. Ferreira},
  journal= {arXiv preprint arXiv:1410.7774},
  year   = {2015}
}

Comments

25 pages; v2: corrected an error in section 5.3.1 which changes slightly the conclusions of that subsection; expanded section 6.1 to include derivation of the scaling of the cutoff; version published in JHEP