1999A&A...352..632D


Query : 1999A&A...352..632D

1999A&A...352..632D - Astronomy and Astrophysics, volume 352, 632-644 (1999/12-2)

Hubble Space Telescope spectroscopy of hot helium-rich white dwarfs: metal abundances along the cooling sequence.

DREIZLER S.

Abstract (from CDS):

Metal abundances are the indicators of the chemical evolution in white dwarfs, which is dominated by the element separation due to the strong gravitational field. A reliable analysis and interpretation requires high resolution and high signal-to-noise UV spectroscopy. For hot helium rich DO white dwarfs this is currently only feasible with the Hubble Space Telescope. In this paper I report on our HST spectroscopy of DO white dwarfs and describe our model atmospheres employed for the analysis. This includes an introduction to our new self-consistent, chemically stratified non-LTE model atmospheres, which take into account gravitational sedimentation and radiative levitation. The results of the analysis shows that DO white dwarfs can best be fitted with chemically homogeneous models, whereas stratified models show significant deviations. Several possible reasons for this unexpected result are discussed. At the current stage, weak mass loss is the most plausible explanation.

Abstract Copyright:

Journal keyword(s): stars: abundances - stars: atmospheres - stars: evolution - stars: AGB and post-AGB - stars: white dwarfs - ultraviolet: stars

Simbad objects: 6

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Number of rows : 6
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 EGGR 900 WD* 01 11 06.5712757896 +10 21 38.183132772   14.86       DO 43 1
2 PB 6330 WD* 01 13 46.7761796520 +00 28 28.644373920   15.040 15.239 15.635   DO 35 0
3 MCT 0501-2858 WD* 05 03 55.5148810152 -28 54 34.631077500 12.29 13.55 13.58     DOZ 105 0
4 PG 1034+001 HS* 10 37 03.8002625256 -00 08 19.118365188 11.589 12.863 13.228 13.383 13.587 sdB/sdO 122 0
5 HZ 21 WD* 12 13 56.2641545952 +32 56 31.358609412 13.125 14.361 14.688 14.837 15.038 DO1 140 0
6 HD 149499B WD* 16 38 31.199 -57 28 10.70   11.12 11.26     DOZ1 105 0

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