Measuring Be Depletion in Cool Stars with Exoplanets

Delgado Mena, E.; Israelian, G.; González-Hernández, J. I.; Santos, N. C.; Rebolo, R.
Referencia bibliográfica

The Astrophysical Journal, Volume 728, Issue 2, article id. 148 (2011).

Fecha de publicación:
2
2011
Número de autores
5
Número de autores del IAC
4
Número de citas
9
Número de citas referidas
6
Descripción
We present new UVES spectra of a sample of 14 mostly cool unevolved stars with planetary companions with the aim of studying possible differences in Be abundance with respect to stars without detected planets. We determine Be abundances for these stars that show an increase in Be depletion as we move to lower temperatures. We carry out a differential analysis of spectra of analog stars with and without planets to establish a possible difference in Be content. While for hot stars no measurable difference is found in Be, for the only cool (T eff~ 5000 K) planet-host star with several analogs in the sample we find enhanced Be depletion by 0.25 dex. This is a first indication that the extra-depletion of Li in solar-type stars with planets may also happen for Be, but shifted toward lower temperatures (T eff < 5500 K) due to the depth of the convective envelopes. The processes that take place in the formation of planetary systems may affect the mixing of material inside their host stars and hence the abundances of light elements. Based on observations made with UVES at VLT Kueyen 8.2 m telescope at the European Southern Observatory (Cerro Paranal, Chile) in program 75.D-0453A.
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Pruebas Observacionales de los Procesos de Nucleosíntesis en el Universo

Recientemente se han llevado a cabo varios análisis espectroscópicos de estrellas con planetas. Uno de los resultados más relevantes ha sido descubrir que las estrellas con planetas son en promedio más metálicas que las estrellas del mismo tipo espectral sin planetas conocidos (Santos, Israelian & Mayor 2001, A&A, 373, 1019; 2004, A&A, 415, 1153)

Garik
Israelian