2018A&A...612A..62H


Query : 2018A&A...612A..62H

2018A&A...612A..62H - Astronomy and Astrophysics, volume 612A, 62-62 (2018/4-1)

Search for trans-iron elements in hot, helium-rich white dwarfs with the HST Cosmic Origins Spectrograph.

HOYER D., RAUCH T., WERNER K. and KRUK J.W.

Abstract (from CDS):

The metal abundances in the atmospheres of hot white dwarfs (WDs) entering the cooling sequence are determined by the preceding Asymptotic Giant Branch (AGB) evolutionary phase and, subsequently, by the onset of gravitational settling and radiative levitation. In this paper, we investigate three hot He-rich WDs, which are believed to result from a late He-shell flash. During such a flash, the He-rich intershell matter is dredged up and dominates the surface chemistry. Hence, in contrast to the usual H-rich WDs, their spectra allow direct access to s-process element abundances in the intershell that were synthesized during the AGB stage. In order to look for trans-iron group elements (atomic number Z>29), we performed a non-local thermodynamic equilibrium model atmosphere analysis of new ultraviolet spectra taken with the Cosmic Origins Spectrograph aboard the Hubble Space Telescope. One of our program stars is of PG 1159 spectral type; this star, PG 1707+427, has effective temperature Teff=85000K, and surface gravity logg=7.5. The two other stars are DO white dwarfs: WD 0111+002 has Teff=58000K and logg=7.7, and PG 0109+111 has Teff=70000K and logg=8.0. These stars trace the onset of element diffusion during early WD evolution. While zinc is the only trans-iron element we could detect in the PG 1159 star, both DOs exhibit lines from Zn, Ga, Ge, Se; one additionally exhibits lines from Sr, Sn, Te, and I and the other from As. Generally, the trans-iron elements are very abundant in the DOs, meaning that radiative levitation must be acting. Most extreme is the almost six orders of magnitude oversolar abundance of tellurium in PG 0109+111. In terms of mass fraction, it is the most abundant metal in the atmosphere. The two DOs join the hitherto unique hot DO RE 0503-289, in which 14 trans-iron elements had even been identified.

Abstract Copyright: © ESO 2018

Journal keyword(s): stars: abundances - stars: atmospheres - white dwarfs - stars: evolution - atomic data

Simbad objects: 7

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Number of rows : 7
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 901 WD* 01 12 23.0598244080 +11 23 36.100360788   15.15 15.40 15.69   DOZ.7 44 0
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 V* GW Vir WD* 12 01 45.9731868264 -03 45 40.628670300   14.87 15.04     DOQZ1 490 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
7 PG 1707+427 WD* 17 08 47.6869215528 +42 41 00.558430656           PG1159 116 0

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