Artículos de revistas
Scalar-multi-tensorial equivalence for higher order f (R,μR,μ1μ2R,...,μ1...μnR) theories of gravity
Fecha
2016-06-13Registro en:
Physical Review D, v. 93, n. 12, 2016.
2470-0029
2470-0010
10.1103/PhysRevD.93.124034
2-s2.0-84976351870
Autor
Rodovia José Aurélio Vilela (BR 267)
Universidade Estadual Paulista (UNESP)
Universidade Federal Do Rio Grande Do Norte
São José Dos Campos
Institución
Resumen
The equivalence between theories depending on the derivatives of R, i.e. f(R,R,...,nR), and scalar-multi-tensorial theories is verified. The analysis is done in both metric and Palatini formalisms. It is shown that f(R,R,...,nR) theories are equivalent to scalar-multi-tensorial ones resembling Brans-Dicke theories with kinetic terms ω0=0 and ω0=-32 for metric and Palatini formalisms respectively. This result is analogous to what happens for f(R) theories. It is worth emphasizing that the scalar-multi-tensorial theories obtained here differ from Brans-Dicke ones due to the presence of multiple tensorial fields absent in the last. Furthermore, sufficient conditions are established for f(R,R,...,nR) theories to be written as scalar-multi-tensorial theories. Finally, some examples are studied and the comparison of f(R,R,...,nR) theories to f(R,□R,...,□nR) theories is performed.