Myths and Marvels of AstronomyProctor, Richard A. (Richard Anthony)
History
Myths and Marvels of Astronomy
Proctor, Richard A. (Richard Anthony)
Astronomy
deep black, and the core of the nucleus jet black. So the dark lines
across the solar spectrum mark where certain rays are relatively faint,
though in reality intensely lustrous. Conceive another change than that
just imagined. Conceive the sun's globe to remain as at present, but the
atmosphere to be excited to many times its present degree of light and
splendour: then would all these dark lines become bright, and the
rainbow-tinted background would be dull or even quite dark by contrast.
This is not a mere fancy. At times, local disturbances take place in the
sun which produce just such a change in certain constituents of the
sun's atmosphere, causing the hydrogen, for example, to glow with so
intense a heat that, instead of its lines appearing dark, they stand out
as bright lines. Occasionally, too, the magnesium in the solar
atmosphere (over certain limited regions only, be it remembered) has
been known to behave in this manner. It was so during the intensely hot
summer of 1872, insomuch that the Italian observer Tacchini, who noticed
the phenomenon, attributed to such local overheating of the sun's
magnesium vapour the remarkable heat from which we then for a time
suffered.
Now, the stars are suns, and the spectrum of a star is simply a
miniature of the solar spectrum. Of course, there are characteristic
differences. One star has more hydrogen, at least more hydrogen at work
absorbing its rays, and thus has the hydrogen lines more strongly
marked than they are in the solar spectrum. Another star shows the lines
of various metals more conspicuously, indicating that the glowing
vapours of such elements, iron, copper, mercury, tin, and so forth,
either hang more densely in the star's atmosphere than in our sun's, or,
being cooler, absorb their special tints more effectively. But speaking
generally, a stellar spectrum is like the solar spectrum. There is the
rainbow-tinted streak, which implies that the source of light is glowing
solid, liquid, or highly compressed vaporous matter, and athwart the
streak there are the multitudinous dark lines which imply that around
the glowing heart of the star there are envelopes of relatively cool
vapours.
We can understand, then, the meaning of the evidence obtained from the
new star in the Northern Crown.
In the first place, the new star showed the rainbow-tinted streak
crossed by dark lines, which indicated its sun-like nature. _But,
standing out on that rainbow-tinted streak as on a dark background, were
four exceedingly bright lines--lines so bright, though fine, that
clearly most of the star's light came from the glowing vapours to which
these lines belonged._ Three of the lines belonged to hydrogen, the
fourth was not identified with any known line.
Let us distinguish between what can certainly be concluded from this
remarkable observation, and what can only be inferred with a greater or
less degree of probability.
Public-domain text, read in full here on John Shaqi.
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