The Chemical Composition of V1719 Cyg: δ Scuti Type Star without the Accretion of Interstellar Matter

High resolution spectroscopic observation of V1719 Cyg were made at 1.8 meter telescope of Bohyunsan Optical Astronomy observatory in Korea. Spectral resolving power was R=45,000, signal to noise ratio S/N>100. The abundances of 28 chemical elements from carbon to dysprosium were found with the s...

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Veröffentlicht in:Journal of astronomy and space sciences 2020, Vol.37 (3), p.157-163
Hauptverfasser: Yushchenko, Alexander V, Kim, Chulhee, Jeong, Yeuncheol, Doikov, Dmytry N, Yushchenko, Volodymyr A, Khrapatyi, Sergii V, Demessinova, Aizat
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Sprache:kor
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Zusammenfassung:High resolution spectroscopic observation of V1719 Cyg were made at 1.8 meter telescope of Bohyunsan Optical Astronomy observatory in Korea. Spectral resolving power was R=45,000, signal to noise ratio S/N>100. The abundances of 28 chemical elements from carbon to dysprosium were found with the spectrum synthesis method. The abundances of oxygen, titanium, vanadium and elements with Z>30 are overabundant by 0.2-0.9 dex with respect to the solar values. Correlations of derived abundances with condensation temperatures and second ionization potentials of these elements are discussed. The possible influence of accretion from interstellar environment is not so strong as for ρ Pup and other stars with similar temperatures. The signs of accretion are absent. The comparison of chemical composition with solar system r- & s-process abundance patterns shows the enhancement of the photosphere by s-process elements.
ISSN:2093-5587
2093-1409