English

ALMA Discovery of Dust Belts Around Proxima Centauri

Earth and Planetary Astrophysics 2017-11-29 v1

Abstract

Proxima Centauri, the star closest to our Sun, is known to host at least one terrestrial planet candidate in a temperate orbit. Here we report the ALMA detection of the star at 1.3 mm wavelength and the discovery of a belt of dust orbiting around it at distances ranging between 1 and 4 au, approximately. Given the low luminosity of the Proxima Centauri star, we estimate a characteristic temperature of about 40 K for this dust, which might constitute the dust component of a small-scale analog to our solar system Kuiper belt. The estimated total mass, including dust and bodies up to 50 km in size, is of the order of 0.01 Earth masses, which is similar to that of the solar Kuiper belt. Our data also show a hint of warmer dust closer to the star. We also find signs of two additional features that might be associated with the Proxima Centauri system, which, however, still require further observations to be confirmed: an outer extremely cold (about 10 K) belt around the star at about 30 au, whose orbital plane is tilted about 45 degrees with respect to the plane of the sky; and additionally, we marginally detect a compact 1.3 mm emission source at a projected distance of about 1.2 arcsec from the star, whose nature is still unknown.

Keywords

Cite

@article{arxiv.1711.00578,
  title  = {ALMA Discovery of Dust Belts Around Proxima Centauri},
  author = {Guillem Anglada and Pedro J. Amado and Jose L. Ortiz and José F. Gómez and Enrique Macías and Antxon Alberdi and Mayra Osorio and José L. Gómez and Itziar de Gregorio-Monsalvo and Miguel A. Pérez-Torres and Guillem Anglada-Escudé and Zaira M. Berdiñas and James S. Jenkins and Izaskun Jimenez-Serra and Luisa M. Lara and Maria J. López-González and Manuel López-Puertas and Nicolas Morales and Ignasi Ribas and Anita M. S. Richards and Cristina Rodríguez-López and Eloy Rodriguez},
  journal= {arXiv preprint arXiv:1711.00578},
  year   = {2017}
}

Comments

9 pages, 4 figures, accepted for publication in The Astrophysical Journal Letters