Published 1988 | Version v1
Miscellaneous

Effects of main-sequence mass loss on stellar and galactic chemical evolution

Description

L.A. Willson, G.H. Bowen and C. Struck-Marcell have proposed that 1 to 3 solar mass stars may experience evolutionarily significant mass loss during the early part of their main-sequence phase. The suggested mass-loss mechanism is pulsation, facilitated by rapid rotation. Initial mass-loss rates may be as large as several times 10-9M mass of sun/yr, diminishing over several times 108 years. The author attempts to test this hypothesis by comparing some theoretical implications with observations. Three areas are addressed: Solar models, cluster HR diagrams, and galactic chemical evolution. Mass-losing solar models were evolved that match the Sun's luminosity and radius at its present age. The most extreme viable models have initial mass 2.0 M0, and mass-loss rates decreasing exponentially over 2-3 x 108 years. Evolution calculations incorporating main-sequence mass loss were completed for a grid of models with initial masses 1.25 to 2.0 M mass of sun and mass loss timescales 0.2 to 2.0 Gry. Cluster HR diagrams synthesized with these models confirm the potential for the hypothesis to explain observed spreads or bifurcations in the upper main sequence, blue stragglers, anomalous giants, and poor fits of main-sequence turnoffs by standard isochrones. Simple closed galactic chemical evolution models were used to test the effects of main-sequence mass loss on the F and G dwarf distribution. Stars between 3.0 M mass of sun and a metallicity-dependent lower mass are assumed to lose mass. The models produce a 30 to 60% increase in the stars to stars-plus-remnants ratio, with fewer early-F dwarfs and many more late-F dwarfs remaining on the main sequence to the present

Availability note (English)

University Microfilms, PO Box 1764, Ann Arbor, MI 48106, Order No.88-25,916.

Additional details

Publishing Information

Publisher
Iowa State Univ.
Imprint Place
Ames, IA (USA)
Imprint Pagination
169 p.

INIS

Country of Publication
United States
Country of Input or Organization
United States
INIS RN
21091603
Subject category
S79: ASTROPHYSICS, COSMOLOGY AND ASTRONOMY; S79: ASTROPHYSICS, COSMOLOGY AND ASTRONOMY;
Resource subtype / Literary indicator
Thesis, Non-conventional Literature
Descriptors DEI
AGE ESTIMATION; CHEMICAL COMPOSITION; COMPARATIVE EVALUATIONS; DWARF STARS; GALACTIC EVOLUTION; LUMINOSITY; MAIN SEQUENCE STARS; MASS; MASS TRANSFER; PULSATIONS; ROTATION; STAR EVOLUTION; SUN
Descriptors DEC
EVALUATION; OPTICAL PROPERTIES; PHYSICAL PROPERTIES; STARS