Making bright giants invisible at the Galactic Centre

Author:

Amaro-Seoane Pau1234,Chen Xian56,Schödel Rainer7,Casanellas Jordi8

Affiliation:

1. Institute of Space Sciences (ICE, CSIC) and Institut d’Estudis Espacials de Catalunya (IEEC) at Campus UAB, Carrer de Can Magrans s/n, E-08193 Barcelona, Spain

2. Kavli Institute for Astronomy and Astrophysics, Beijing 100871, China

3. Institute of Applied Mathematics, Academy of Mathematics and Systems Science, CAS, Beijing 100190, China

4. Zentrum für Astronomie und Astrophysik, TU Berlin, Hardenbergstraße 36, D-10623 Berlin, Germany

5. Astronomy Department, School of Physics, Peking University, 100871 Beijing, China

6. Kavli Institute for Astronomy and Astrophysics, Peking University, Beijing 100871, China

7. Instituto de Astrofísica de Analucía, Glorieta de la Astronomía s/n, E-18008 Granada, Spain

8. Dataguda, Septimania 41, Barcelona 08006, Spain

Abstract

ABSTRACT Current observations of the Galactic Centre (GC) seem to display a core-like distribution of bright stars from ∼5 arcsec inwards. On the other hand, we observe young, massive stars at the GC, with roughly 20–50 per cent of them in a disc, mostly in the region where the bright giants appear to be lacking. In a previous publication we put the idea forward that the missing stars are deeply connected to the presence of this disc. The progenitor of the stellar disc is very likely to have been a gaseous disc that at some point fragmented and triggered star formation. This caused the appearance of overdensity regions in the disc that had high enough densities to ensure stripping large giants of their atmospheres and thus rendering them very faint. In this paper, we use a stellar evolution code to derive the properties that a red giant would display in a colour–magnitude diagram, as well as a non-linearity factor required for a correct estimate of the mass loss. We find that in a very short time-scale, the red giants leave their standard evolutionary track. The non-linearity factor has values that not only depend on the properties of the clumps, but also on the physical conditions of the giant stars, as we predicted analytically. According to our results, envelope stripping works, moving stars on a short time-scale from the giant branch to the white dwarf stage, thus rendering them invisible to observations.

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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