Article citationsMore>>
Hinkel, N.R., Young, P.A., Pagano, M.D., Desch, S.J., Anbar, A.D., Adibekyan, V., Blanco-Cuaresma, S., Carlberg, J.K., Mena, E.D., Liu, F., Nordlander, T., Sousa, S.G., Korn, A., Gruyters, P., Heiter, U., Jofr, P., Santos, N.C. and Soubiran, C. (2016) A Comparison of Stellar Elemental Abundance Techniques and Measurements. The Astrophysical Journal Supplement Series, 226, Article No. 4.
https://doi.org/10.3847/0067-0049/226/1/4
has been cited by the following article:
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TITLE:
Life Origin in the Milky Way Galaxy: II. Scanning for Habitable Stellar Systems on Behalf of Future Space Missions
AUTHORS:
Alexander N. Safronov
KEYWORDS:
Interstellar Mission, Stellar Abundance, Habitability, Hypatia Stellar Catalog, DNA-Star
JOURNAL NAME:
Journal of High Energy Physics, Gravitation and Cosmology,
Vol.10 No.2,
April
10,
2024
ABSTRACT: The possibility of the life origin in the stellar systems, located at a distance of ~200 pc from the solar system, was investigated. The stars, in the spectrums of which C (carbon), O (oxygen), N (nitrogen), and P (phosphorus) are found, are called DNA-stars. Based on stellar abundances a new method for searching for habitable exoplanets has been developed and a list of 48 DNA-stars in the solar neighborhood, on which life is possible, has been defined. The quota of DNA-stars is equal 1.3% of the total amount of Hypatia Stellar Catalog. Only three DNA-stars out of selected 48 stars belong to the spectral class as our Sun (G2V). The closest to the solar system is the DNA-star with the number HIP 15510, which belongs to the G8V class and is 6 pc away from the solar system. Nine DNA-stars, which have the highest chemical similarity with solar spectrum, were identified. It is identified that one of these nine stars, HIP 24681, has six planets.
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