Nonradial pulsations of rapidly rotating [delta] Scuti stars

Time series of high resolution CFHT spectra of four δ Scuti stars are examined for consistency with the presence of nonradial pulsations (nrp). Each series exhibits a progression of subfeatures moving from blue to red through the absorption lines. We have reproduced the profile variations using a g...

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Main Author: Kennelly, Edward James
Language:English
Published: University of British Columbia 2010
Subjects:
Online Access:http://hdl.handle.net/2429/29140
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spelling ndltd-UBC-oai-circle.library.ubc.ca-2429-291402018-01-05T17:45:03Z Nonradial pulsations of rapidly rotating [delta] Scuti stars Kennelly, Edward James Stellar oscillations Time series of high resolution CFHT spectra of four δ Scuti stars are examined for consistency with the presence of nonradial pulsations (nrp). Each series exhibits a progression of subfeatures moving from blue to red through the absorption lines. We have reproduced the profile variations using a geometrical model which imposes sectorial modes on the surface of the star. Modeling of the low-degree modes is guided by radial-velocity variations and the known photometric variations. Synthetic spectra generated with the appropriate Teff and log g for each star are used as input for the model. In this way, the entire wavelength region covered by the observations can be reproduced and the effects of blending on the nrp profiles are included explicitly. The extension from a single-line model to one generated over a wide spectral region provides a much more sensitive comparison with the observations. In general, we find that the data can be reproduced by the combination of a high-degree mode (ℓ > 8) and a low-degree mode [ℓ < 2). The intrinsic line widths and υ sinί together set a limit on the resolution of the stellar surface and by including this resolution in our treatment we can estimate the velocity amplitude of the oscillations (~ 5 km/s). We find that low values of k (≤ 0.1) expected for p-mode oscillations are consistent with the observations. A possible relationship between the periods of the high- and low-degree modes is noted, the question of uniqueness is addressed and comparisons are made with models invoking starspots. For at least one of the stars (қ² Boo), it is impossible to fit the observations by a starspot model without assuming unrealistic values of radius or equatorial velocity. Science, Faculty of Physics and Astronomy, Department of Graduate 2010-10-13T16:43:22Z 2010-10-13T16:43:22Z 1990 Text Thesis/Dissertation http://hdl.handle.net/2429/29140 eng For non-commercial purposes only, such as research, private study and education. Additional conditions apply, see Terms of Use https://open.library.ubc.ca/terms_of_use. University of British Columbia
collection NDLTD
language English
sources NDLTD
topic Stellar oscillations
spellingShingle Stellar oscillations
Kennelly, Edward James
Nonradial pulsations of rapidly rotating [delta] Scuti stars
description Time series of high resolution CFHT spectra of four δ Scuti stars are examined for consistency with the presence of nonradial pulsations (nrp). Each series exhibits a progression of subfeatures moving from blue to red through the absorption lines. We have reproduced the profile variations using a geometrical model which imposes sectorial modes on the surface of the star. Modeling of the low-degree modes is guided by radial-velocity variations and the known photometric variations. Synthetic spectra generated with the appropriate Teff and log g for each star are used as input for the model. In this way, the entire wavelength region covered by the observations can be reproduced and the effects of blending on the nrp profiles are included explicitly. The extension from a single-line model to one generated over a wide spectral region provides a much more sensitive comparison with the observations. In general, we find that the data can be reproduced by the combination of a high-degree mode (ℓ > 8) and a low-degree mode [ℓ < 2). The intrinsic line widths and υ sinί together set a limit on the resolution of the stellar surface and by including this resolution in our treatment we can estimate the velocity amplitude of the oscillations (~ 5 km/s). We find that low values of k (≤ 0.1) expected for p-mode oscillations are consistent with the observations. A possible relationship between the periods of the high- and low-degree modes is noted, the question of uniqueness is addressed and comparisons are made with models invoking starspots. For at least one of the stars (қ² Boo), it is impossible to fit the observations by a starspot model without assuming unrealistic values of radius or equatorial velocity. === Science, Faculty of === Physics and Astronomy, Department of === Graduate
author Kennelly, Edward James
author_facet Kennelly, Edward James
author_sort Kennelly, Edward James
title Nonradial pulsations of rapidly rotating [delta] Scuti stars
title_short Nonradial pulsations of rapidly rotating [delta] Scuti stars
title_full Nonradial pulsations of rapidly rotating [delta] Scuti stars
title_fullStr Nonradial pulsations of rapidly rotating [delta] Scuti stars
title_full_unstemmed Nonradial pulsations of rapidly rotating [delta] Scuti stars
title_sort nonradial pulsations of rapidly rotating [delta] scuti stars
publisher University of British Columbia
publishDate 2010
url http://hdl.handle.net/2429/29140
work_keys_str_mv AT kennellyedwardjames nonradialpulsationsofrapidlyrotatingdeltascutistars
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