Pleasant Ways in ScienceProctor, Richard A. (Richard Anthony)
Science
Pleasant Ways in Science
Proctor, Richard A. (Richard Anthony)
Science
Vögel considers that Zöllner’s hypothesis has been confirmed in its
essential points by the application of spectrum analysis to the stars.
We can recognize from the spectrum different stages in the process
of cooling, and in some of the fainter stars we perceive indeed that
chemical compounds have already formed, and still exist. As to new
stars, again, says Vögel, Zöllner’s theory seems in nowise contradicted
“by the spectral observations made on the two new stars of 1866 and
1876. The bright continuous spectrum, and the bright lines only
slightly exceeding it at first” (a description, however, applying
correctly only to the star of 1876), “could not be well explained if we
only suppose a violent eruption from the interior, which again rendered
the surface wholly or partially luminous; but are easily explained
if we suppose that the quantity of light is considerably augmented
through a simultaneous process of combustion. If this process is of
short duration, then the continuous spectrum, as was the case with the
new star of 1876, will very quickly decrease in intensity down to a
certain limit, while the bright lines in the spectrum, which result
from the incandescent gases that have emanated in enormous quantities
from the interior, will continue for some time.”
It thus appears that Herr Vögel regarded the observations which had
been made on this remarkable star up to March 10 as indicating that
first there had been an outburst of glowing gaseous matter from the
interior, producing the part of the light which gave the bright
lines indicative of gaseity, and that then there had followed, as a
consequence, the combustion of a portion of the solid and relatively
cool crust, causing the continuous part of the spectrum. We may
compare what had taken place, on this hypothesis, with the outburst of
intensely hot gases from the interior of a volcanic crater, and the
incandescence of the lips of the crater in consequence of the intense
heat of the out-rushing gases. Any one viewing such a crater from a
distance, with a spectroscope, would see the bright lines belonging
to the out-rushing gases superposed upon the continuous spectrum due
to the crater’s burning lips. Vögel further supposes that the burning
parts of the star soon cooled, the majority of the remaining light (or
at any rate the part of the remaining light spectroscopically most
effective) being that which came from the glowing gases which had
emanated in vast quantities from the star’s interior.
“The observations of the spectrum show, beyond doubt,” he says, “that
the decrease in the light of the star corresponds with the cooling
of its surface. The violet and blue parts decreased more rapidly in
intensity than the other parts; and the absorption-bands which crossed
the spectrum have gradually become darker and darker.”
Public-domain text, read in full here on John Shaqi.
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