Stellar atmospheres : $b A contribution to the observational study of high temperature in the reversing layers of starsPayne-Gaposchkin, Cecilia
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Stellar atmospheres : $b A contribution to the observational study of high temperature in the reversing layers of stars
Payne-Gaposchkin, Cecilia
Astrophysics; Stars -- Spectra; Stars -- Temperature; Thesis (Ph. D.)
The verification of physical laws is not, however, the primary object
of the application of physics to the stars. The astrophysicist is
generally obliged to assume their validity in applying them to
stellar conditions. Ultimately it may be that the consistency of the
findings in different branches of astrophysics will form a basis for a
more general verification of physical laws than can be attained in the
laboratory; but at present, terrestrial physics must be the groundwork
of the study of stellar conditions. Hence it is necessary for the
astrophysicist to have ready for application the latest data in every
relevant branch of physical science, realizing which parts of modern
physical theory are still in a tentative stage, and exercising due
caution in applying these to cosmical problems.
The recent advance of astrophysics has been greatly assisted by the
development, during the last decade, of atomic and radiation theory.
The claim that it would have been possible to predict the existence,
masses, temperatures, and luminosities of the stars from the laws
of radiation, without recourse to stellar observations, represents
the triumph of the theory of radiation. It is equally true that the
main features of the spectra of the stars could be predicted from a
knowledge of atomic structure and the origin of spectra. The theory of
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radiation has permitted an analysis of the central conditions of stars,
while atomic theory enables us to analyze the only portion of the star
that can be directly observed—the exceedingly tenuous atmosphere.
The present book is concerned with the second of these two problems,
the analysis of the superficial layers, and it approaches the
subject of the physical chemistry of stellar atmospheres by treating
terrestrial physics as the basis of cosmical physics. From a brief
working summary of useful physical data (Chapter I) and a synopsis of
the conditions under which the application is to be made
(Chapters II and Chapter III), we shall pass to an analysis of stellar atmospheres by
means of modern spectrum theory. The standpoint adopted is primarily
observational, and new data obtained by the writer in the course of the
investigation will be presented as part of the discussion.
The first chapter contains a synopsis of the chief data which bear on
atomic structure—the nuclear properties, and the disposition of the
electrons around the nucleus. The origin of line spectra is discussed,
and the ionization potentials corresponding to different atoms are
tabulated. Lastly a brief summary is made of the effect of external
conditions, such as temperature, pressure, and magnetic or electric
fields, upon a line spectrum.
ATOMIC PROPERTIES ASSOCIATED WITH THE NUCLEUS
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