English

Hamiltonian analysis and positivity of a new massive spin-2 model

High Energy Physics - Theory 2022-02-02 v1

Abstract

Recently a new model has been proposed to describe free massive spin-2 particles in DD dimensions in terms of a non symmetric rank-2 tensor eμνe_{\mu\nu} and a mixed symmetry tensor Bμ[αβ]B^{\mu[\alpha\beta]}. The model is invariant under linearized diffeomorphisms without Stueckelberg fields. It resembles a spin-2 version of the topologically massive spin-1 BF model (Cremmer-Scherk model). Here we apply the Dirac-Bergmann procedure in order to identify all Hamiltonian constraints and perform a complete counting of degrees of freedom. In D=3+1D=3+1 we find 5 degrees of freedom corresponding to helicities ±2\pm{2}, ±1\pm{1}, 00 as expected. The positivity of the reduced Hamiltonian is proved by using spin projection operators. We have also proposed a parent action that establishes the duality between the Fierz-Pauli and the new model. The equivalence between gauge invariant correlation functions of both theories is demonstrated.

Keywords

Cite

@article{arxiv.2112.11890,
  title  = {Hamiltonian analysis and positivity of a new massive spin-2 model},
  author = {Alessandro L. R. dos Santos and Denis Dalmazi and Wayne de Paula},
  journal= {arXiv preprint arXiv:2112.11890},
  year   = {2022}
}

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18 pages, 0 figures