Published October 1979 | Version v1
Journal article

Time-dependent nucleation theory and the formation of interstellar grains

Creators

  • 1. Smithsonian Astrophysical Observatory, Cambridge, MA (USA)

Description

The theory of homogeneous nucleation is discussed and applied to the formation of interstellar grains. Special attention is given to the thermodynamics of very small clusters (N approx. 10); it is found that, at least for carbon and metals, the free energies of N-mers may be conveniently expressed in terms of a parameter THETAsub(N) which is nearly independent of N. Estimates of THETAsub(N) from the Lothe-Pound theory disagree with the experimental observations for N < 10; it is preferable to simply approximate THETAsub(N) approx. 1/2THETAsub(infinitely) (THETAsub(infinitely) is known from bulk properties). The kinetic process of nucleation and cluster growth is essentially just a function of two dimensionless parameters; THETA/T and eta. The domain in which nucleation theory should be valid is delineated. Approximate formulae are given for the critical supercoolung, the critical cluster size, and the mean final cluster size; more accurate numerical results are presented graphically. Nucleation of grains in planetary nebulae, novae, and red giant outflows is discussed. The origin of the Pt-rich nuggets found in the Allende meteorite is considered; it is shown that the nuggets could have been formed by homogeneous nucleation in the primordial solar nebula, whereas they could not have formed in a supernova explosion. (orig.)

Additional details

Publishing Information

Journal Title
Astrophys. Space Sci.
Journal Volume
65
Journal Issue
2
Series
Astrophys. Space Sci.
Journal Page Range
313-335
ISSN
0004-640X

Conference

Title
Workshop on thermodynamics and kinetics of dust formation in the space medium.
Dates
6 - 8 Sep 1978.
Place
Houston, TX, USA.

INIS

Country of Publication
Netherlands
Country of Input or Organization
Netherlands
INIS RN
11567486
Subject category
S79: ASTROPHYSICS, COSMOLOGY AND ASTRONOMY;
Resource subtype / Literary indicator
Conference
Descriptors DEI
INTERSTELLAR GRAINS; MATHEMATICAL MODELS; NUCLEATION; THERMODYNAMIC PROPERTIES; TIME DEPENDENCE
Descriptors DEC
PARTICLES; PHYSICAL PROPERTIES