Literature DB >> 19779446

Seismic evidence for the loss of stellar angular momentum before the white-dwarf stage.

S Charpinet1, G Fontaine, P Brassard.   

Abstract

White-dwarf stars represent the final products of the evolution of some 95% of all stars. If stars were to keep their angular momentum throughout their evolution, their white-dwarf descendants, owing to their compact nature, should all rotate relatively rapidly, with typical periods of the order of a few seconds. Observations of their photospheres show, in contrast, that they rotate much more slowly, with periods ranging from hours to tens of years. It is not known, however, whether a white dwarf could 'hide' some of its original angular momentum below the superficial layers, perhaps spinning much more rapidly inside than at its surface. Here we report a determination of the internal rotation profile of a white dwarf using a method based on asteroseismology. We show that the pulsating white dwarf PG 1159-035 rotates as a solid body (encompassing more than 97.5% of its mass) with the relatively long period of 33.61 +/- 0.59 h. This implies that it has lost essentially all of its angular momentum, thus favouring theories which suggest important angular momentum transfer and loss in evolutionary phases before the white-dwarf stage.

Year:  2009        PMID: 19779446     DOI: 10.1038/nature08307

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


  2 in total

1.  Astrophysics: Inner workings of a star.

Authors:  Sung-Chul Yoon
Journal:  Nature       Date:  2009-09-24       Impact factor: 49.962

2.  A radio-pulsing white dwarf binary star.

Authors:  T R Marsh; B T Gänsicke; S Hümmerich; F-J Hambsch; K Bernhard; C Lloyd; E Breedt; E R Stanway; D T Steeghs; S G Parsons; O Toloza; M R Schreiber; P G Jonker; J van Roestel; T Kupfer; A F Pala; V S Dhillon; L K Hardy; S P Littlefair; A Aungwerojwit; S Arjyotha; D Koester; J J Bochinski; C A Haswell; P Frank; P J Wheatley
Journal:  Nature       Date:  2016-07-27       Impact factor: 49.962

  2 in total

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