Ud. está consultando:

Trabajos publicados

Búsqueda avanzada

Búsqueda por tema: HII regions.
Resultado 14 de 89
 
Artículo de revista

Neutron stars in Scalar-Tensor-Vector Gravity

Federico G. Lopez Armengol, Gustavo E. Romero.

Serie: Trabajos publicados del IAR ; no. 1391

Resumen: Scalar-Tensor-Vector Gravity (STVG), also referred as MOdified Gravity (MOG), is an alternative theory of the gravitational interaction. Its weak field approximation has been successfully used to described Solar System observations, galaxy rotation curves, dynamics of clusters of galaxies, and cosmological data, without the imposition of dark components. The theory was formulated by John Moffat in 2006. In this work, we derive matter-sourced solutions of STVG and construct neutron star models. We aim at exploring STVG predictions about stellar structure in the strong gravity regime. Specifically, we represent spacetime with a static, spherically symmetric manifold, and model the stellar matter content with a perfect fluid energymomentum tensor. We then derive the modified Tolman-Oppenheimer-Volkoff equation in STVG and integrate it for different equations of state. We find that STVG allows heavier neutron stars than General Relativity (GR). Maximum masses depend on a normalized parameter that quantifies the deviation from GR. The theory exhibits unusual predictions for extreme values of this parameter. We conclude that STVG admits suitable spherically symmetric solutions with matter sources, relevant for stellar structure. Since recent determinations of neutron stars masses violate some GR predictions, STVG appears as a viable candidate for a new gravity theory

Publicado en

 
General relativity and gravitation ISSN 0001-7701 — Vol. 49 (2), (2017), p. 27
 
Registro 001552 · Modificado: 15/07/2022

Explorar índices alfabéticos


Ingrese las primeras letras del autor o título que busca. Omita artículos iniciales en títulos.
Recorrer el catálogo completo (por orden de ubicación del material)

Novedades

Enlaces