Physics
Scientific paper
Jun 2008
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=2008aph....29..331d&link_type=abstract
Astroparticle Physics, Volume 29, Issue 5, p. 331-335.
Physics
11.27.+D, 04.40.Nr, 4.20.Jb
Scientific paper
In the present paper, we use the first-order approximate solutions to the non-linear system of Klein Gordon Maxwell Einstein equations describing the minimally coupled charged spinless field to a spherically symmetric spacetime to analyze a becoming boson star. In the far future and long-range approximation, the analytical time-dependent mass formula has allowed us to point out several significant moments in the evolution of the boson nebula and to predict the necessary period to turn the collapsing star into a Schwarzschild black hole. Finally, we have semiclassically derived the transition amplitude for the graviton emission as well as the gravitational analog of the Umov Poynting vector.
Dariescu Ciprian
Dariescu Marina--Aura
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