A new spin-2 self-dual model in $D=2+1$
D. Dalmazi, E.L. Mendonca

TL;DR
This paper introduces a novel fourth-order self-dual model for massive spin-2 particles in 2+1 dimensions, derived through Noether embedment, and establishes its spectrum equivalence with lower-order models.
Contribution
The paper develops a new fourth-order self-dual spin-2 model via Noether embedment, extending the hierarchy of self-dual models in 2+1 dimensions.
Findings
Derivation of a fourth-order self-dual model from the third-order model.
Construction of a master action demonstrating spectrum equivalence.
Identification of the model with a linearized version of a higher derivative gravity theory.
Abstract
There are three self-dual models of massive particles of helicity +2 (or -2) in . Each model is of first, second, and third-order in derivatives. Here we derive a new self-dual model of fourth-order, , which follows from the third-order model (linearized topologically massive gravity) via Noether embedment of the linearized Weyl symmetry. In fact, each self-dual model can be obtained from the previous one by the Noether embedment of an appropriate gauge symmetry, culminating in . The new model may be identified with the linearized version of . We also construct a master action…
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