A Precision Determination of the Effect of Metallicity on Cepheid Absolute Magnitudes in VIJHK Bands from Magellanic Cloud Cepheids

Using high-quality observed period-luminosity (P-L) relations in both Magellanic Clouds in the VIJHKs bands and optical and near-infrared Wesenheit indices, we determine the effect of metallicity on Cepheid P-L relations by comparing the relative distance between the LMC and SMC as determined from t...

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Published inThe Astrophysical journal Vol. 842; no. 2; pp. 116 - 123
Main Authors Wielgórski, Piotr, Pietrzy ski, Grzegorz, Gieren, Wolfgang, Górski, Marek, Kudritzki, Rolf-Peter, Zgirski, Bart omiej, Bresolin, Fabio, Storm, Jesper, Matsunaga, Noriyuki, Graczyk, Dariusz, Soszy ski, Igor
Format Journal Article
LanguageEnglish
Published Philadelphia The American Astronomical Society 20.06.2017
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Abstract Using high-quality observed period-luminosity (P-L) relations in both Magellanic Clouds in the VIJHKs bands and optical and near-infrared Wesenheit indices, we determine the effect of metallicity on Cepheid P-L relations by comparing the relative distance between the LMC and SMC as determined from the Cepheids to the difference in distance between the Clouds that has been derived with very high accuracy from late-type eclipsing binary systems. Within an uncertainty of 3%, which is dominated by the uncertainty on the mean difference in metallicity between the Cepheid populations in the LMC and SMC, we find metallicity effects smaller than 2% in all bands and in the Wesenheit indices, consistent with a zero metallicity effect. This result is valid for the metallicity range from −0.35 dex to −0.75 dex corresponding to the mean [Fe/H] values for classical Cepheids in the LMC and SMC, respectively. Yet most Cepheids in galaxies beyond the Local Group and located in the less crowded outer regions of these galaxies do fall into this metallicity regime, making our result important for applications to determine the distances to spiral galaxies well beyond the Local Group. Our result supports previous findings that indicated a very small metallicity effect on the near-infrared absolute magnitudes of classical Cepheids, and resolves the dispute about the size and sign of the metallicity effect in the optical spectral range. It also resolves one of the most pressing problems in the quest toward a measurement of the Hubble constant with an accuracy of 1% from the Cepheid-supernova Ia method.
AbstractList Abstract Using high-quality observed period–luminosity ( P – L ) relations in both Magellanic Clouds in the VIJHK s  bands and optical and near-infrared Wesenheit indices, we determine the effect of metallicity on Cepheid P – L relations by comparing the relative distance between the LMC and SMC as determined from the Cepheids to the difference in distance between the Clouds that has been derived with very high accuracy from late-type eclipsing binary systems. Within an uncertainty of 3%, which is dominated by the uncertainty on the mean difference in metallicity between the Cepheid populations in the LMC and SMC, we find metallicity effects smaller than 2% in all bands and in the Wesenheit indices, consistent with a zero metallicity effect. This result is valid for the metallicity range from −0.35 dex to −0.75 dex corresponding to the mean [Fe/H] values for classical Cepheids in the LMC and SMC, respectively. Yet most Cepheids in galaxies beyond the Local Group and located in the less crowded outer regions of these galaxies do fall into this metallicity regime, making our result important for applications to determine the distances to spiral galaxies well beyond the Local Group. Our result supports previous findings that indicated a very small metallicity effect on the near-infrared absolute magnitudes of classical Cepheids, and resolves the dispute about the size and sign of the metallicity effect in the optical spectral range. It also resolves one of the most pressing problems in the quest toward a measurement of the Hubble constant with an accuracy of 1% from the Cepheid–supernova Ia method.
Using high-quality observed period-luminosity (P-L) relations in both Magellanic Clouds in the VIJHKs bands and optical and near-infrared Wesenheit indices, we determine the effect of metallicity on Cepheid P-L relations by comparing the relative distance between the LMC and SMC as determined from the Cepheids to the difference in distance between the Clouds that has been derived with very high accuracy from late-type eclipsing binary systems. Within an uncertainty of 3%, which is dominated by the uncertainty on the mean difference in metallicity between the Cepheid populations in the LMC and SMC, we find metallicity effects smaller than 2% in all bands and in the Wesenheit indices, consistent with a zero metallicity effect. This result is valid for the metallicity range from −0.35 dex to −0.75 dex corresponding to the mean [Fe/H] values for classical Cepheids in the LMC and SMC, respectively. Yet most Cepheids in galaxies beyond the Local Group and located in the less crowded outer regions of these galaxies do fall into this metallicity regime, making our result important for applications to determine the distances to spiral galaxies well beyond the Local Group. Our result supports previous findings that indicated a very small metallicity effect on the near-infrared absolute magnitudes of classical Cepheids, and resolves the dispute about the size and sign of the metallicity effect in the optical spectral range. It also resolves one of the most pressing problems in the quest toward a measurement of the Hubble constant with an accuracy of 1% from the Cepheid-supernova Ia method.
Using high-quality observed period–luminosity (P–L) relations in both Magellanic Clouds in the VIJHK s bands and optical and near-infrared Wesenheit indices, we determine the effect of metallicity on Cepheid P–L relations by comparing the relative distance between the LMC and SMC as determined from the Cepheids to the difference in distance between the Clouds that has been derived with very high accuracy from late-type eclipsing binary systems. Within an uncertainty of 3%, which is dominated by the uncertainty on the mean difference in metallicity between the Cepheid populations in the LMC and SMC, we find metallicity effects smaller than 2% in all bands and in the Wesenheit indices, consistent with a zero metallicity effect. This result is valid for the metallicity range from −0.35 dex to −0.75 dex corresponding to the mean [Fe/H] values for classical Cepheids in the LMC and SMC, respectively. Yet most Cepheids in galaxies beyond the Local Group and located in the less crowded outer regions of these galaxies do fall into this metallicity regime, making our result important for applications to determine the distances to spiral galaxies well beyond the Local Group. Our result supports previous findings that indicated a very small metallicity effect on the near-infrared absolute magnitudes of classical Cepheids, and resolves the dispute about the size and sign of the metallicity effect in the optical spectral range. It also resolves one of the most pressing problems in the quest toward a measurement of the Hubble constant with an accuracy of 1% from the Cepheid–supernova Ia method.
Author Storm, Jesper
Matsunaga, Noriyuki
Kudritzki, Rolf-Peter
Soszy ski, Igor
Pietrzy ski, Grzegorz
Wielgórski, Piotr
Graczyk, Dariusz
Gieren, Wolfgang
Bresolin, Fabio
Zgirski, Bart omiej
Górski, Marek
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  organization: Warsaw University Observatory , Al. Ujazdowskie 4, PL-00-478 Warsaw, Poland
BackLink https://www.osti.gov/biblio/22663476$$D View this record in Osti.gov
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Snippet Using high-quality observed period-luminosity (P-L) relations in both Magellanic Clouds in the VIJHKs bands and optical and near-infrared Wesenheit indices, we...
Abstract Using high-quality observed period–luminosity ( P – L ) relations in both Magellanic Clouds in the VIJHK s  bands and optical and near-infrared...
Using high-quality observed period–luminosity (P–L) relations in both Magellanic Clouds in the VIJHK s bands and optical and near-infrared Wesenheit indices,...
Using high-quality observed period–luminosity ( P – L ) relations in both Magellanic Clouds in the VIJHK s bands and optical and near-infrared Wesenheit...
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SubjectTerms ACCURACY
Astrophysics
ASTROPHYSICS, COSMOLOGY AND ASTRONOMY
Binary systems
Cepheid variables
CEPHEIDS
Clouds
COMPARATIVE EVALUATIONS
distance scale
ECLIPSE
galaxies: distances and redshifts
Hubble constant
Local group (astronomy)
LUMINOSITY
MAGELLANIC CLOUDS
METALLICITY
PRESSING
RED SHIFT
Spiral galaxies
stars: variables: Cepheids
Supernova
Uncertainty
Title A Precision Determination of the Effect of Metallicity on Cepheid Absolute Magnitudes in VIJHK Bands from Magellanic Cloud Cepheids
URI https://iopscience.iop.org/article/10.3847/1538-4357/aa7565
https://www.proquest.com/docview/2365968689
https://www.osti.gov/biblio/22663476
Volume 842
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