SIMBAD references

2001AJ....122.1538B - Astron. J., 122, 1538-1544 (2001/September-0)

Hubble space telescope and ground-based spectroscopy of K648 in M15.

BIANCHI L., BOHLIN R., CATANZARO G., FORD H. and MANCHADO A.

Abstract (from CDS):

We derive some element abundances for the central star of the planetary nebula K648 from analysis of Hubble Space Telescope Faint Object Spectrograph spectra (1200-3300 Å). Carbon is found to be approximately 4 times overabundant with respect to solar values, while oxygen is underabundant and silicon about solar, and He/H=0.6. The stellar continuum indicates a reddening of E(B-V)=0.08 and is well approximated by a synthetic model with Teff=37,000 K and logg=4.0, as found previously by (ref???)Heber, Dreizler, & Werner. The scaling of the synthetic model with the measured UV flux indicates R=1.3 R, and thus log(L/L)=3.45, M=0.62 M, assuming a distance of D=10.3 kpc. The C IV exhibits a wind profile, from which a terminal wind velocity of V=1600±150 km s–1 is derived and a column density of Ni(C IV)=6±3x1015 cm–2. From ground-based spectra obtained at the William Hershel 4.2 m telescope we derive the first measurement of the expansion velocity for the nebula: Vexp([N II])=11.9 km.s–1 and Vexp(Hα)=16.7 km.s–1. Combined with the nebular radius measured from HST imaging in our previous paper, the velocity yields an expansion age of the object Agekinematic≥4270 yr. This value is slightly higher than predictions from post-AGB evolutionary models for a ~0.6 M He-burning remnant. The photospheric overabundance of He and C, as well as the low luminosity of the central star, are consistent with a post-AGB object that experienced a late thermal pulse and consequent third dredge-up, and which is now in a luminosity-dip He-burning phase. The progenitor mass is fairly low.

Abstract Copyright:

Journal keyword(s): planetary nebulae: individual (K648) - Stars: Abundances - Stars: AGB and Post-AGB

Simbad objects: 3

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