Subaru and Salt Spectroscopy of Chemically Peculiar Hot Subdwarfs
The majority of hot subdwarfs lie on or close to the helium main-sequence. Many have hydrogen-rich surfaces, but a substantial fraction of the hotter subdwarfs have hydrogen-depleted or hydrogen-deficient surfaces. Amongst the former, three were known to show extraordinary overabundances of heavy el...
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doaj-789a6beebabb4031a59182b5839a77fb2021-09-06T19:40:14ZengDe GruyterOpen Astronomy2543-63762017-12-0126120220710.1515/astro-2017-0439astro-2017-0439Subaru and Salt Spectroscopy of Chemically Peculiar Hot SubdwarfsJeffery C. Simon0Neelamkodan Naslim1Woolf Vincent M.2Crawford Steven M.3Østensen Roy H.4Armagh Observatory and Planetarium, Armagh, IrelandSchool of Physics, University of Hyderabad, CUC, Gachibowli, Hyderabad, Telangana 500046, IndiaDepartment of Physics, University of Nebraska at Omaha, Omaha, USASouth African Astronomical Observatory, PO Box 9, Observatory 7935, Cape Town, South AfricaDepartment of Physics, Astronomy andMaterials Science, Missouri State University, 901 S. National, Springfield, MO 65897, USAThe majority of hot subdwarfs lie on or close to the helium main-sequence. Many have hydrogen-rich surfaces, but a substantial fraction of the hotter subdwarfs have hydrogen-depleted or hydrogen-deficient surfaces. Amongst the former, three were known to show extraordinary overabundances of heavy elements including zirconium and lead. Using Subaru/HDS,we commenced a high-resolution survey of hydrogen-depleted subdwarfs to discover new members of the class. UVO 0825+15, was found to exhibit strong lead lines, to be an intrinsic variable in K2 field 5, and to have a relatively high space motion. Two other lead-rich subdwarfs have been found in the Subaru sample. A much wider survey is in progress using SALT/HRS. Discoveries so far include one extreme helium star similar to V652 Her, and an intermediate helium star with possible comparison to HD144941. Analyses of the hotter and more compact members of the sample are continuing.https://doi.org/10.1515/astro-2017-0439stars: chemically peculiarstars: subdwarfs |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jeffery C. Simon Neelamkodan Naslim Woolf Vincent M. Crawford Steven M. Østensen Roy H. |
spellingShingle |
Jeffery C. Simon Neelamkodan Naslim Woolf Vincent M. Crawford Steven M. Østensen Roy H. Subaru and Salt Spectroscopy of Chemically Peculiar Hot Subdwarfs Open Astronomy stars: chemically peculiar stars: subdwarfs |
author_facet |
Jeffery C. Simon Neelamkodan Naslim Woolf Vincent M. Crawford Steven M. Østensen Roy H. |
author_sort |
Jeffery C. Simon |
title |
Subaru and Salt Spectroscopy of Chemically Peculiar Hot Subdwarfs |
title_short |
Subaru and Salt Spectroscopy of Chemically Peculiar Hot Subdwarfs |
title_full |
Subaru and Salt Spectroscopy of Chemically Peculiar Hot Subdwarfs |
title_fullStr |
Subaru and Salt Spectroscopy of Chemically Peculiar Hot Subdwarfs |
title_full_unstemmed |
Subaru and Salt Spectroscopy of Chemically Peculiar Hot Subdwarfs |
title_sort |
subaru and salt spectroscopy of chemically peculiar hot subdwarfs |
publisher |
De Gruyter |
series |
Open Astronomy |
issn |
2543-6376 |
publishDate |
2017-12-01 |
description |
The majority of hot subdwarfs lie on or close to the helium main-sequence. Many have hydrogen-rich surfaces, but a substantial fraction of the hotter subdwarfs have hydrogen-depleted or hydrogen-deficient surfaces. Amongst the former, three were known to show extraordinary overabundances of heavy elements including zirconium and lead. Using Subaru/HDS,we commenced a high-resolution survey of hydrogen-depleted subdwarfs to discover new members of the class. UVO 0825+15, was found to exhibit strong lead lines, to be an intrinsic variable in K2 field 5, and to have a relatively high space motion. Two other lead-rich subdwarfs have been found in the Subaru sample. A much wider survey is in progress using SALT/HRS. Discoveries so far include one extreme helium star similar to V652 Her, and an intermediate helium star with possible comparison to HD144941. Analyses of the hotter and more compact members of the sample are continuing. |
topic |
stars: chemically peculiar stars: subdwarfs |
url |
https://doi.org/10.1515/astro-2017-0439 |
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