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Oxygen in Open Cluster Dwarfs: Pleiades and M34
Author(s) -
Simon C. Schuler,
Jeremy R. King,
L. M. Hobbs,
Marc H. Pinsonneault
Publication year - 2004
Publication title -
the astrophysical journal
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.376
H-Index - 489
eISSN - 1538-4357
pISSN - 0004-637X
DOI - 10.1086/382654
Subject(s) - pleiades , physics , open cluster , astrophysics , stars , abundance (ecology) , star cluster , effective temperature , cluster (spacecraft) , spectral line , astronomy , biology , ecology , computer science , programming language
We analyze the high-excitation O I ?7774 triplet in high-resolution, moderate signal-to-noise ratio spectra of 15 Pleiades and eight M34 open cluster dwarfs over the effective temperature range of 5048-6172 K. Relative O abundances have been derived using model atmospheres interpolated from four different sets of ATLAS9 grids. In contrast to existing non-LTE (NLTE) predictions, a dramatic increase in the O I triplet abundance with decreasing temperature is seen for both clusters, regardless of the atmospheric model. S I abundances of three Pleiades stars derived from the high-excitation ?6053 feature mimic the O I abundance behavior. O abundances have also been derived from the [O I] ?6300 feature in three Pleiades stars; the abundances exhibit a much lower mean value than do the cool dwarf triplet results. Inasmuch as the [O I] abundances are presumed to be free from NLTE effects, their mean values ([O/H]6300 = +0.14) provide the current best estimate of the Pleiades O abundance. Spreads in [O/H]Trip at a given temperature are also seen in both clusters; no correlation is found between the spreads and the chromospheric emission measures.

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