The first evidence for multiple pulsation axes: a new rapidly oscillating Ap star in the Kepler field, KIC 10195926

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dc.creator Gruberbauer, Michael
dc.creator Kurtz, D. W.
dc.creator Cunha, M. S.
dc.creator Saio, H.
dc.creator Bigot, L.
dc.creator Balona, L. A.
dc.creator Elkin, V. G.
dc.creator Shibahashi, H.
dc.creator Brandao, I. M.
dc.creator Uytterhoeven, K.
dc.date.accessioned 2015-04-13T14:41:31Z
dc.date.available 2015-04-13T14:41:31Z
dc.date.issued 2011-07-01
dc.identifier.issn 1365-2966
dc.identifier.uri http://library2.smu.ca/xmlui/handle/01/26039
dc.description Publisher's version/PDF en_CA
dc.description.abstract We have discovered a new rapidly oscillating Ap (roAp) star among the Kepler mission target stars, KIC 10195926. This star shows two pulsation modes with periods that are amongst the longest known for roAp stars at 17.1 and 18.1 min, indicating that the star is near the terminal-age main sequence. The principal pulsation mode is an oblique dipole mode that shows a rotationally split frequency septuplet that provides information on the geometry of the mode. The secondary mode also appears to be a dipole mode with a rotationally split triplet, but we are able to show within the improved oblique pulsator model that these two modes cannot have the same axis of pulsation. This is the first time for any pulsating star that evidence has been found for separate pulsation axes for different modes. The two modes are separated in frequency by 55 &micro;Hz, which we model as the large separation. The star is an &alpha;<sup>2</sup> CVn spotted magnetic variable that shows a complex rotational light variation with a period of P<sub>rot</sub> = 5.684 59 d. For the first time for any spotted magnetic star of the upper main sequence, we find clear evidence of light variation with a period of twice the rotation period, that is, a subharmonic frequency of &nu;<sub>rot</sub>/2. We propose that this and other subharmonics are the first observed manifestation of torsional modes in an roAp star. From high-resolution spectra, we determine T<sub>eff</sub> = 7400 K, log g = 3.6 and v sin i = 21 km s<sup>&minus;1</sup>. We have found a magnetic pulsation model with fundamental parameters close to these values that reproduces the rotational variations of the two obliquely pulsating modes with different pulsation axes. The star shows overabundances of the rare earth elements, but these are not as extreme as most other roAp stars. The spectrum is variable with rotation, indicating surface abundance patches. en_CA
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dc.description.provenance Made available in DSpace on 2015-04-13T14:41:31Z (GMT). No. of bitstreams: 1 Gruberbauer_Michael_article_2011_b.pdf: 5986364 bytes, checksum: 9941642ce8347c529ac7af44838bf823 (MD5) Previous issue date: 2011 en
dc.language.iso en en_CA
dc.publisher Royal Astronomical Society en_CA
dc.relation.uri http://dx.doi.org/10.1111/j.1365-2966.2011.18572.x
dc.rights This article has been accepted for publication in Monthly Notices of the Royal Astronomical Society ©: 2011 The Authors and RAS. Published by Oxford University Press on behalf of the Royal Astronomical Society. All rights reserved.
dc.subject.lcsh Ap stars
dc.subject.lcsh Stars -- Magnetic fields
dc.subject.lcsh Stellar oscillations
dc.subject.lcsh Starspots
dc.title The first evidence for multiple pulsation axes: a new rapidly oscillating Ap star in the Kepler field, KIC 10195926 en_CA
dc.type Text en_CA
dcterms.bibliographicCitation Monthly Notices of the Royal Astronomical Society 414(3), 2550-2566. (2011) en_CA
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This article has been accepted for publication in Monthly Notices of the Royal Astronomical Society ©: 2011 The Authors and RAS. Published by Oxford University Press on behalf of the Royal Astronomical Society. All rights reserved.
 
Published Version: http://dx.doi.org/10.1111/j.1365-2966.2011.18572.x
 
 

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