Literature DB >> 26727162

Weakened magnetic braking as the origin of anomalously rapid rotation in old field stars.

Jennifer L van Saders1,2,3, Tugdual Ceillier4, Travis S Metcalfe5, Victor Silva Aguirre6, Marc H Pinsonneault3,7, Rafael A García3,4, Savita Mathur3,5, Guy R Davies6,8.   

Abstract

A knowledge of stellar ages is crucial for our understanding of many astrophysical phenomena, and yet ages can be difficult to determine. As they become older, stars lose mass and angular momentum, resulting in an observed slowdown in surface rotation. The technique of 'gyrochronology' uses the rotation period of a star to calculate its age. However, stars of known age must be used for calibration, and, until recently, the approach was untested for old stars (older than 1 gigayear, Gyr). Rotation periods are now known for stars in an open cluster of intermediate age (NGC 6819; 2.5 Gyr old), and for old field stars whose ages have been determined with asteroseismology. The data for the cluster agree with previous period-age relations, but these relations fail to describe the asteroseismic sample. Here we report stellar evolutionary modelling, and confirm the presence of unexpectedly rapid rotation in stars that are more evolved than the Sun. We demonstrate that models that incorporate dramatically weakened magnetic braking for old stars can--unlike existing models--reproduce both the asteroseismic and the cluster data. Our findings might suggest a fundamental change in the nature of ageing stellar dynamos, with the Sun being close to the critical transition to much weaker magnetized winds. This weakened braking limits the diagnostic power of gyrochronology for those stars that are more than halfway through their main-sequence lifetimes.

Year:  2016        PMID: 26727162     DOI: 10.1038/nature16168

Source DB:  PubMed          Journal:  Nature        ISSN: 0028-0836            Impact factor:   49.962


  1 in total

1.  A spin-down clock for cool stars from observations of a 2.5-billion-year-old cluster.

Authors:  Søren Meibom; Sydney A Barnes; Imants Platais; Ronald L Gilliland; David W Latham; Robert D Mathieu
Journal:  Nature       Date:  2015-01-05       Impact factor: 49.962

  1 in total
  1 in total

1.  A study of pulsation & rotation in a sample of A-K type stars in the Kepler field.

Authors:  Sowgata Chowdhury; Santosh Joshi; Chris A Engelbrecht; Peter De Cat; Yogesh C Joshi; K T Paul
Journal:  Astrophys Space Sci       Date:  2018-12-03       Impact factor: 1.830

  1 in total

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