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Physics Letters B, 2012, Volume 716, Issue 1, Pages 243–248
DOI: https://doi.org/10.1016/j.physletb.2012.08.022
(Mi plb3)
 

This article is cited in 30 scientific papers (total in 30 papers)

Gauge invariant Lagrangian formulation of massive higher spin fields in $(A)dS_3$ space

I. L. Buchbindera, T. V. Snegireva, Yu. M. Zinovievb

a Department of Theoretical Physics, Tomsk State Pedagogical University, Tomsk 634061, Russia
b Institute for High Energy Physics, Protvino, Moscow Region, 142280, Russia
Citations (30)
Abstract: We develop the frame-like formulation of massive bosonic higher spin fields in the case of three-dimensional $(A)dS$ space with the arbitrary cosmological constant. The formulation is based on gauge invariant description by involving the Stueckelberg auxiliary fields. The explicit form of the Lagrangians and the gauge transformation laws are found. The theory can be written in terms of gauge invariant objects similar to the massless theories, thus allowing us to hope to use the same methods for investigation of interactions. In the massive spin 3 field example we are able to rewrite the Lagrangian using the new the so-called separated variables, so that the study of Lagrangian formulation reduces to finding the Lagrangian containing only half of the fields. The same construction takes places for arbitrary integer spin field as well. Further working in terms of separated variables, we build Lagrangian for arbitrary integer spin and write it in terms of gauge invariant objects. Also, we demonstrate how to restore the full set of variables, thus receiving Lagrangian for the massive fields of arbitrary spin in the terms of initial fields.
Funding agency Grant number
Ministry of Education and Science of the Russian Federation 224.2012.2
Russian Foundation for Basic Research 12-02-00121-a
11-02-9045
11-02-00814
I.L.B. and T.V.S. are grateful to the grant for LRSS, project No. 224.2012.2 and RFBR grant, project No. 12-02-00121-a for partial support. Work of I.L.B. was also partially supported by RFBRUkraine grant, project No. 11-02-9045. Work of Yu.M.Z. was supported in parts by RFBR grant No. 11-02-00814.
Received: 24.07.2012
Accepted: 14.08.2012
Bibliographic databases:
Document Type: Article
Language: English
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