English

Theoretical mass estimates for the Mira-type variable R Hydrae

Solar and Stellar Astrophysics 2023-06-01 v1

Abstract

Calculations of stellar evolution at initial abundances of helium Y=0.28Y=0.28 and heavier elements Z=0.014Z=0.014 were done for stars with masses on the main sequence 1.7MMZAMS5.2M1.7M_\odot\le M_\textrm{ZAMS}\le 5.2M_\odot. Evolutionary sequences corresponding to the AGB stage were used for modelling the pulsation period decrease observed for almost two centuries in the Mira--type variable R Hya. Diminution of the period from Π\Pi\approx 495 d in the second half of the eighteenth century to Π380\Pi\approx 380 d in the 1950s is due stellar radius decrease accompanying dissipation of the radiation--diffusion wave generated by the helium flash. For all the history of its observations R Hya was the fundamental mode pulsator. The best agreement with observations is obtained for eight evolutionary models with initial mass MZAMS=4.8MM_\textrm{ZAMS}=4.8M_\odot and the mass loss rate parameter of the Bl\"ocker formula 0.03ηB0.070.03\le\eta_\mathrm{B}\le 0.07. Theoretical mass estimates of R Hya are in the range 4.44MM4.63M4.44M_\odot\le M\le 4.63M_\odot, whereas the mean stellar radius (421RRˉ445R421R_\odot\le \bar R \le 445R_\odot) corresponding to the pulsation period Π380\Pi\approx 380 agrees well with measurements of the angular diameter by methods of the optical interferometric imaging.

Keywords

Cite

@article{arxiv.2305.19657,
  title  = {Theoretical mass estimates for the Mira-type variable R Hydrae},
  author = {Yuri A. Fadeyev},
  journal= {arXiv preprint arXiv:2305.19657},
  year   = {2023}
}

Comments

11 pages, 5 figures, 1 table, accepted to Astronomy Letters

R2 v1 2026-06-28T10:51:43.318Z