Title of article :
Gauge-invariant perturbations of varying-alpha cosmologies
Author/Authors :
Barrow، J D نويسنده , , Mota، D F نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2003
Abstract :
Using a gauge-invariant formalism we derive and solve the perturbed cosmological equations for the BSBM theory of varying fine structure ʹconstantʹ. We calculate the time evolution of inhomogeneous perturbations of the fine structure constant, (delta)(alpha)/(alpha) on small and large scales with respect to the Hubble radius. In a radiation-dominated universe, small inhomogeneities in (alpha) will decrease on large scales but on scales smaller than the Hubble radius they will undergo stable oscillations. In a dust-dominated universe small inhomogeneous perturbations in (alpha) will become constant on large scales and on small scales they will increase as t2/3, and (delta)(alpha)/(alpha) will track (delta)(rho)m/(rho)m. If the expansion accelerates, as in the case of a (LAMBDA) or quintessencedominated phase, inhomogeneities in (alpha) will decrease on both large and small scales. The amplitude of perturbations in (alpha) will be much smaller than that of matter or radiation perturbations. We also present a numerical study of the nonlinear evolution of spherical inhomogeneities in radiation and dust universes by means of a comparison between the evolution of flat and closed Friedmann models with time-varying (alpha). Various limitations of these simple models are also discussed.
Keywords :
Infrared , diode lasers , laser optics , far-infrared lasers , Absorption , Remote sensing , Combustion diagnostics , Spectroscopy , lasers
Journal title :
CLASSICAL AND QUANTUM GRAVITY
Journal title :
CLASSICAL AND QUANTUM GRAVITY