A refinement of the rotation period of the roap star hr 3831 and the discovery of a significant phase lag between the times of pulsation and magnetic extrema and the time of mean-light extremum

Detalhes bibliográficos
Autor(a) principal: Kurtz, Donald W.
Data de Publicação: 1992
Outros Autores: Kanaan Neto, Antonio Nemer, Martinez, Peter, Tripe, P.
Tipo de documento: Artigo
Idioma: eng
Título da fonte: Repositório Institucional da UFRGS
Texto Completo: http://hdl.handle.net/10183/88377
Resumo: HR 3831 is a rapidly oscillating Ap star with a pulsational period of 11.67 min. The amplitude of this pulsation ranges from O to about 5 mmag as a function of the rotational aspect of the star. We use 268 hr of new high-speed photometric observa­ tions obtained in 1990 and 1991 plus 238 hr of published high-speed photometry from 1980, 1981, 1985 and 1986 to show that the period of pulsation amplitude modulation is equal to the period of mean-light variation. We use this to show that an interpretation of the pulsation-amplitude modulation as rotationally perturbed m­ modes requires that Cnt≤2 X 10-5 at the 3σ a confidence level, making that interpretation highly unlikely. We also show that the time of pulsation maximum pre­ cedes the time of mean-light extremum by 0.177 ± 0.007 d (0.062 ± 0.002 rotation periods), a 25σ a difference. The time of magnetic extremum coincides with the time of pulsation-amplitude maximum but differs from mean-light extremum by 0.158±0.032 d, a 5σ difference. This argues that HR3831 is an oblique pulsator with the magnetic axis and pulsation axis aligned, rather than a spotted pulsator with amplitude modulation caused by surface inhomogeneities. lt also indicates a deviation from cylindrical symmetry which makes the interpretation of the pulsation-amplitude modulation in terms of the oblique-pulsator model more complex than has yet been considered. By shifting the pulsation-amplitude variations into phase with the mean­ light variations and normalizing both data sets, we refine the rotation frequency for HR3831 to be vrot=0.3506333±0.0000006 d-1=4058.256±0.007 nHz, or Prot=2.851982±0.000005 d.
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spelling Kurtz, Donald W.Kanaan Neto, Antonio NemerMartinez, PeterTripe, P.2014-03-13T01:50:40Z19920035-8711http://hdl.handle.net/10183/88377000056054HR 3831 is a rapidly oscillating Ap star with a pulsational period of 11.67 min. The amplitude of this pulsation ranges from O to about 5 mmag as a function of the rotational aspect of the star. We use 268 hr of new high-speed photometric observa­ tions obtained in 1990 and 1991 plus 238 hr of published high-speed photometry from 1980, 1981, 1985 and 1986 to show that the period of pulsation amplitude modulation is equal to the period of mean-light variation. We use this to show that an interpretation of the pulsation-amplitude modulation as rotationally perturbed m­ modes requires that Cnt≤2 X 10-5 at the 3σ a confidence level, making that interpretation highly unlikely. We also show that the time of pulsation maximum pre­ cedes the time of mean-light extremum by 0.177 ± 0.007 d (0.062 ± 0.002 rotation periods), a 25σ a difference. The time of magnetic extremum coincides with the time of pulsation-amplitude maximum but differs from mean-light extremum by 0.158±0.032 d, a 5σ difference. This argues that HR3831 is an oblique pulsator with the magnetic axis and pulsation axis aligned, rather than a spotted pulsator with amplitude modulation caused by surface inhomogeneities. lt also indicates a deviation from cylindrical symmetry which makes the interpretation of the pulsation-amplitude modulation in terms of the oblique-pulsator model more complex than has yet been considered. By shifting the pulsation-amplitude variations into phase with the mean­ light variations and normalizing both data sets, we refine the rotation frequency for HR3831 to be vrot=0.3506333±0.0000006 d-1=4058.256±0.007 nHz, or Prot=2.851982±0.000005 d.application/pdfengMonthly Notices of the Royal Astronomical Society. London. Vol. 255, no. 2 (Mar. 1992), p. 289-294Astrofisica estelarAstronomia e astrofisicaA refinement of the rotation period of the roap star hr 3831 and the discovery of a significant phase lag between the times of pulsation and magnetic extrema and the time of mean-light extremumEstrangeiroinfo:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/openAccessreponame:Repositório Institucional da UFRGSinstname:Universidade Federal do Rio Grande do Sul (UFRGS)instacron:UFRGSORIGINAL000056054.pdf000056054.pdfTexto completo (inglês)application/pdf203202http://www.lume.ufrgs.br/bitstream/10183/88377/1/000056054.pdf05cd09634911c49509f86a09d3e343b6MD51TEXT000056054.pdf.txt000056054.pdf.txtExtracted Texttext/plain132http://www.lume.ufrgs.br/bitstream/10183/88377/2/000056054.pdf.txt39326fdf69b6cb79f80c640f8aeb8c75MD52THUMBNAIL000056054.pdf.jpg000056054.pdf.jpgGenerated Thumbnailimage/jpeg1956http://www.lume.ufrgs.br/bitstream/10183/88377/3/000056054.pdf.jpg13018cf306132dae9bbca636a07c5d5fMD5310183/883772022-02-22 05:06:19.550578oai:www.lume.ufrgs.br:10183/88377Repositório de PublicaçõesPUBhttps://lume.ufrgs.br/oai/requestopendoar:2022-02-22T08:06:19Repositório Institucional da UFRGS - Universidade Federal do Rio Grande do Sul (UFRGS)false
dc.title.pt_BR.fl_str_mv A refinement of the rotation period of the roap star hr 3831 and the discovery of a significant phase lag between the times of pulsation and magnetic extrema and the time of mean-light extremum
title A refinement of the rotation period of the roap star hr 3831 and the discovery of a significant phase lag between the times of pulsation and magnetic extrema and the time of mean-light extremum
spellingShingle A refinement of the rotation period of the roap star hr 3831 and the discovery of a significant phase lag between the times of pulsation and magnetic extrema and the time of mean-light extremum
Kurtz, Donald W.
Astrofisica estelar
Astronomia e astrofisica
title_short A refinement of the rotation period of the roap star hr 3831 and the discovery of a significant phase lag between the times of pulsation and magnetic extrema and the time of mean-light extremum
title_full A refinement of the rotation period of the roap star hr 3831 and the discovery of a significant phase lag between the times of pulsation and magnetic extrema and the time of mean-light extremum
title_fullStr A refinement of the rotation period of the roap star hr 3831 and the discovery of a significant phase lag between the times of pulsation and magnetic extrema and the time of mean-light extremum
title_full_unstemmed A refinement of the rotation period of the roap star hr 3831 and the discovery of a significant phase lag between the times of pulsation and magnetic extrema and the time of mean-light extremum
title_sort A refinement of the rotation period of the roap star hr 3831 and the discovery of a significant phase lag between the times of pulsation and magnetic extrema and the time of mean-light extremum
author Kurtz, Donald W.
author_facet Kurtz, Donald W.
Kanaan Neto, Antonio Nemer
Martinez, Peter
Tripe, P.
author_role author
author2 Kanaan Neto, Antonio Nemer
Martinez, Peter
Tripe, P.
author2_role author
author
author
dc.contributor.author.fl_str_mv Kurtz, Donald W.
Kanaan Neto, Antonio Nemer
Martinez, Peter
Tripe, P.
dc.subject.por.fl_str_mv Astrofisica estelar
Astronomia e astrofisica
topic Astrofisica estelar
Astronomia e astrofisica
description HR 3831 is a rapidly oscillating Ap star with a pulsational period of 11.67 min. The amplitude of this pulsation ranges from O to about 5 mmag as a function of the rotational aspect of the star. We use 268 hr of new high-speed photometric observa­ tions obtained in 1990 and 1991 plus 238 hr of published high-speed photometry from 1980, 1981, 1985 and 1986 to show that the period of pulsation amplitude modulation is equal to the period of mean-light variation. We use this to show that an interpretation of the pulsation-amplitude modulation as rotationally perturbed m­ modes requires that Cnt≤2 X 10-5 at the 3σ a confidence level, making that interpretation highly unlikely. We also show that the time of pulsation maximum pre­ cedes the time of mean-light extremum by 0.177 ± 0.007 d (0.062 ± 0.002 rotation periods), a 25σ a difference. The time of magnetic extremum coincides with the time of pulsation-amplitude maximum but differs from mean-light extremum by 0.158±0.032 d, a 5σ difference. This argues that HR3831 is an oblique pulsator with the magnetic axis and pulsation axis aligned, rather than a spotted pulsator with amplitude modulation caused by surface inhomogeneities. lt also indicates a deviation from cylindrical symmetry which makes the interpretation of the pulsation-amplitude modulation in terms of the oblique-pulsator model more complex than has yet been considered. By shifting the pulsation-amplitude variations into phase with the mean­ light variations and normalizing both data sets, we refine the rotation frequency for HR3831 to be vrot=0.3506333±0.0000006 d-1=4058.256±0.007 nHz, or Prot=2.851982±0.000005 d.
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dc.language.iso.fl_str_mv eng
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dc.relation.ispartof.pt_BR.fl_str_mv Monthly Notices of the Royal Astronomical Society. London. Vol. 255, no. 2 (Mar. 1992), p. 289-294
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