Marco Olivares
Pontifical Catholic University of Valparaíso
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Publication
Featured researches published by Marco Olivares.
European Physical Journal C | 2013
Ramon Herrera; Marco Olivares; Nelson Videla
An intermediate inflationary universe model in the context of a generalized Chaplygin gas is considered. For the matter we consider two different energy densities; a standard scalar field and a tachyon field, respectively. In general, we discuss the conditions of an inflationary epoch for these models. We also, use recent astronomical observations from Wilkinson Microwave Anisotropy Probe seven year data for constraining the parameters appearing in our models.
Physical Review D | 2013
Ramon Herrera; Marco Olivares; Nelson Videla
We study a general form for the dissipative coefficient ( T,�) = CT m /� m 1 in the context of warm intermediate and logamediate inflationary universe models. We analyze these models in the weak and strong dissipative regimes. In the slow-roll approximation, we describe in great detail the characteristics of these models. In both regimes, we use recent data from the WMAP nine-year data and Planck data to constrain the parameters appearing in our models.
International Journal of Modern Physics D | 2012
Ramon Herrera; Marco Olivares
Warm inflationary universe models in the context of logamediate expansion are studied. General conditions required for these models to be realizable and discussed. This study is done in the weak and strong dissipative regimes. The parameters of our models are constrained from the observational data.
Journal of Cosmology and Astroparticle Physics | 2013
J. R. Villanueva; Marco Olivares
In this work we find analytical solutions to the null geodesics around a black hole in the conformal Weyl gravity. Exact expressions for the horizons are found, and they depend on the cosmological constant and the coupling constants of the conformal Weyl gravity. Then, we study the radial motion from the point of view of the proper and coordinate frames, and compare it with that found in spacetimes of general relativity. The angular motion is also examined qualitatively by means of an effective potential; quantitatively, the equation of motion is solved in terms of -Weierstrass elliptic function. Thus, we find the deflection angle for photons without using any approximation, which is a novel result for this kind of gravity.
Astrophysics and Space Science | 2013
Marco Olivares; Germán Rojas; Yerko Vasquez; J. R. Villanueva
In the present paper we study the causal structure of a topological black hole presented by Mann R.B. (in J. High Energy Phys. 06:075, 2009) by mean the standard Lagrangian procedure, which allow us analyze qualitatively the behavior of test particles using the effective potential. Then, the geodesic motion of massive and massless particles is obtained analytically. We find that confined orbits are forbidden on this spacetime, however radial photons can escape to infinity in an infinite proper time but in a finite coordinate time, this correspond to an interesting and novel result.
European Physical Journal C | 2013
Ramon Herrera; Marco Olivares; Nelson Videla
Brane and warped Dvali–Gabadadze–Porrati inflationary universe models in the context of intermediate inflation are studied. In both models we consider that the energy density is a standard scalar field and we discuss the evolution of the universe during the slow-roll inflation. Also, we describe the conditions for these models. The corresponding Wilkinson Microwave Anisotropy Probe seven-year data are utilized to fix some parameters in our models. Our results are compared to those found in general relativity.
Celestial Mechanics and Dynamical Astronomy | 2013
Marco Olivares; Felipe Moncada; Yerko Vasquez; J.R. Villanueva
The object of study is the geodesic structure of a
Celestial Mechanics and Dynamical Astronomy | 2014
Marco Olivares; Yerko Vásquez; J. R. Villanueva; Felipe Moncada
II COSMOSUR: COSMOLOGY AND GRAVITATION IN THE SOUTHERN CONE | 2015
Ramon Herrera; Sergio del Campo; Marco Olivares; Joel Saavedra; Nelson Videla
z=2
European Physical Journal C | 2018
J.R. Villanueva; Francisco Tapia; Martín Molina; Marco Olivares