Published 1991 | Version v1
Report Restricted

Abundances in galaxies

Description

Standard (or mildly inhomogeneous) Big Bang nucleosynthesis theory is well confirmed by abundance measurements of light elements up to 7Li and the resulting upper limit to the number of neutrino families confirmed in accelerator experiments. Extreme inhomogeneous models with a closure density in form of baryons seem to be ruled out and there is no evidence for a cosmic 'floor' to 9Be or heavier elements predicted in some versions of those models. Galaxies show a correlation between luminous mass and abundance of carbon and heavier elements, usually attributed to escape of hot gas from shallow potential wells. Uncertainties include the role of dark matter and biparametric behaviour of ellipticals. Spirals have radial gradients which may arise from a variety of causes. In our own Galaxy one can distinguish three stellar populations - disk, halo and bulge - characterised by differing metallicity distribution functions. Differential abundance effects are found among different elements in stars as a function of metallicity and presumably age, notably in the ratio of oxygen and α-particle elements to iron. These may eventually be exploitable to set a time scale for the formation of the halo, bulge and disk. (orig.)

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Additional details

Publishing Information

Imprint Pagination
21 p.
Report number
NORDITA--91/17-A(prepr.)

Conference

Title
Symposium on nuclei in the cosmos.
Dates
18-22 Jun 1990.
Place
Baden (Switzerland).

INIS

Country of Publication
Denmark
Country of Input or Organization
Denmark
INIS RN
22074662
Subject category
S79: ASTROPHYSICS, COSMOLOGY AND ASTRONOMY;
Resource subtype / Literary indicator
Conference
Descriptors DEI
ELEMENT ABUNDANCE; GALAXIES; MASS; NUCLEOSYNTHESIS
Descriptors DEC
QUANTITY RATIO; SYNTHESIS