IMPROVED SPECTROSCOPIC PARAMETERS FOR TRANSITING PLANET HOSTS

We report homogeneous spectroscopic determinations of the effective temperature, metallicity, and projected rotational velocity for the host stars of 56 transiting planets. Our analysis is based primarily on the stellar parameter classification (SPC) technique. We investigate systematic errors by ex...

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Published inThe Astrophysical journal Vol. 757; no. 2; pp. 161 - 14
Main Authors Torres, Guillermo, Fischer, Debra A., Sozzetti, Alessandro, Buchhave, Lars A., Winn, Joshua N., Holman, Matthew J., Carter, Joshua A.
Format Journal Article
LanguageEnglish
Published United States 01.10.2012
Subjects
Online AccessGet full text
ISSN0004-637X
1538-4357
DOI10.1088/0004-637X/757/2/161

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Abstract We report homogeneous spectroscopic determinations of the effective temperature, metallicity, and projected rotational velocity for the host stars of 56 transiting planets. Our analysis is based primarily on the stellar parameter classification (SPC) technique. We investigate systematic errors by examining subsets of the data with two other methods that have often been used in previous studies (Spectroscopy Made Easy (SME) and MOOG). The SPC and SME results, both based on comparisons between synthetic spectra and actual spectra, show strong correlations between T sub(eff), [Fe/H], and log g when solving for all three quantities simultaneously. In contrast the MOOG results, based on a more traditional curve-of-growth approach, show no such correlations. To combat the correlations and improve the accuracy of the temperatures and metallicities, we repeat the SPC analysis with a constraint on log g based on the mean stellar density that can be derived from the analysis of the transit light curves. Previous studies that have not taken advantage of this constraint have been subject to systematic errors in the stellar masses and radii of up to 20% and 10% , respectively, which can be larger than other observational uncertainties, and which also cause systematic errors in the planetary mass and radius.
AbstractList We report homogeneous spectroscopic determinations of the effective temperature, metallicity, and projected rotational velocity for the host stars of 56 transiting planets. Our analysis is based primarily on the stellar parameter classification (SPC) technique. We investigate systematic errors by examining subsets of the data with two other methods that have often been used in previous studies (Spectroscopy Made Easy (SME) and MOOG). The SPC and SME results, both based on comparisons between synthetic spectra and actual spectra, show strong correlations between T sub(eff), [Fe/H], and log g when solving for all three quantities simultaneously. In contrast the MOOG results, based on a more traditional curve-of-growth approach, show no such correlations. To combat the correlations and improve the accuracy of the temperatures and metallicities, we repeat the SPC analysis with a constraint on log g based on the mean stellar density that can be derived from the analysis of the transit light curves. Previous studies that have not taken advantage of this constraint have been subject to systematic errors in the stellar masses and radii of up to 20% and 10% , respectively, which can be larger than other observational uncertainties, and which also cause systematic errors in the planetary mass and radius.
Author Winn, Joshua N.
Holman, Matthew J.
Carter, Joshua A.
Fischer, Debra A.
Sozzetti, Alessandro
Buchhave, Lars A.
Torres, Guillermo
Author_xml – sequence: 1
  givenname: Guillermo
  surname: Torres
  fullname: Torres, Guillermo
– sequence: 2
  givenname: Debra A.
  surname: Fischer
  fullname: Fischer, Debra A.
– sequence: 3
  givenname: Alessandro
  surname: Sozzetti
  fullname: Sozzetti, Alessandro
– sequence: 4
  givenname: Lars A.
  surname: Buchhave
  fullname: Buchhave, Lars A.
– sequence: 5
  givenname: Joshua N.
  surname: Winn
  fullname: Winn, Joshua N.
– sequence: 6
  givenname: Matthew J.
  surname: Holman
  fullname: Holman, Matthew J.
– sequence: 7
  givenname: Joshua A.
  surname: Carter
  fullname: Carter, Joshua A.
BackLink https://www.osti.gov/biblio/22092166$$D View this record in Osti.gov
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DOI 10.1088/0004-637X/757/2/161
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DeliveryMethod fulltext_linktorsrc
Discipline Astronomy & Astrophysics
Physics
EISSN 1538-4357
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SubjectTerms ASTRONOMY
ASTROPHYSICS
ASTROPHYSICS, COSMOLOGY AND ASTRONOMY
Classification
COMPARATIVE EVALUATIONS
Correlation
CORRELATIONS
DENSITY
DIAGRAMS
ELEMENT ABUNDANCE
MASS
Metallicity
PLANETS
Spectra
SPECTROSCOPY
STARS
Systematic errors
VELOCITY
VISIBLE RADIATION
Title IMPROVED SPECTROSCOPIC PARAMETERS FOR TRANSITING PLANET HOSTS
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