Bibcode
Silich, Sergiy; Tenorio-Tagle, Guillermo; Muñoz-Tuñón, C.; Hueyotl-Zahuantitla, Filiberto; Wünsch, Richard; Palouš, Jan
Referencia bibliográfica
The Astrophysical Journal, Volume 711, Issue 1, pp. 25-31 (2010).
Fecha de publicación:
3
2010
Revista
Número de citas
18
Número de citas referidas
11
Descripción
We present a detailed study of the hydrodynamics of the matter
reinserted by massive stars via stellar winds and supernovae explosions
in young assembling galaxies. We show that the interplay between the
thermalization of the kinetic energy provided by massive stars,
radiative cooling of the thermalized plasma, and the gravitational pull
of the host galaxy lead to three different hydrodynamic regimes. These
are: (1) the quasi-adiabatic supergalactic winds; (2) the bimodal flows,
with mass accumulation in the central zones and gas expulsion from the
outer zones of the assembling galaxy; and (3) the gravitationally bound
regime, for which all of the gas returned by massive stars remains bound
to the host galaxy and is likely to be reprocessed into further
generations of stars. Which of the three possible solutions takes place
depends on the mass of the star-forming region, its mechanical
luminosity (or star formation rate), and its size. The model predicts
that massive assembling galaxies with large star formation rates similar
to those detected in Submillimeter Common-User Bolometric Array sources
(~1000 M sun yr-1) are likely to evolve in a
positive star formation feedback condition, either in the bimodal or in
the gravitationally bound regime. This implies that star formation in
these sources may have little impact on the intergalactic medium and
result instead into a fast interstellar matter enrichment, as observed
in high redshift quasars.
Proyectos relacionados
Grupo de Estudios de Formación Estelar GEFE
El proyecto interno GEFE está enmarcado en el proyecto coordinado, ESTALLIDOS, financiado por el plan nacional desde el año 2001. El ultimo proyecto aprobado es ESTALLIDOS 6.0 (AYA2016- 79724-C4-2-P). En el proyecto GEFE trabajamos en base al caso científico del proyecto ESTALLIDOS 6.0. Los estallidos de formación estelar (Starbursts o SB) son
Casiana
Muñoz Tuñón