_New Stars_.—Extreme instances of variable stars are the new stars such
as those detected by Hipparchus, Tycho Brahe, and Kepler, of which many
have been found in the last half-century. One of the latest great
“Novæ” was discovered in Auriga by a Scotsman, Dr. Anderson, on
February 1st, 1892, and, with the modesty of his race, he communicated
the fact to His Majesty’s Astronomer for Scotland on an unsigned
post-card.[18] Its spectrum was observed and photographed by Huggins
and many others. It was full of bright lines of hydrogen, calcium,
helium, and others not identified. The astounding fact was that lines
were shown in pairs, bright and dark, on a faint continuous spectrum,
indicating apparently that a dark body approaching us at the rate of
550 miles a second[19] was traversing a cold nebulous atmosphere, and
was heated to incandescence by friction, like a meteor in our
atmosphere, leaving a luminous train behind it. It almost disappeared,
and on April 26th it was of the sixteenth magnitude; but on August 17th
it brightened to the tenth, showing the principal nebular band in its
spectrum, and no sign of approach or recession. It was as if it emerged
from one part of the nebula, cooled down, and rushed through another
part of the nebula, rendering the nebular gas more luminous than
itself.[20]
Since 1892 one Nova after another has shown a spectrum as described
above, like a meteor rushing towards us and leaving a train behind, for
this seems to be the obvious meaning of the spectra.
The same may be said of the brilliant Nova Persei, brighter at its best
than Capella, and discovered also by Dr. Anderson on February 22nd,
1901. It increased in brightness as it reached the densest part of the
nebula, then it varied for some weeks by a couple of magnitudes, up and
down, as if passing through separate nebular condensations. In
February, 1902, it could still be seen with an opera-glass. As with the
other Novæ, when it first dashed into the nebula it was vaporised and
gave a continuous spectrum with dark lines of hydrogen and helium. It
showed no bright lines paired with the dark ones to indicate a train
left behind; but in the end its own luminosity died out, and the
nebular spectrum predominated.
The nebular illumination as seen in photographs, taken from August to
November, seemed to spread out slowly in a gradually increasing circle
at the rate of 90” in forty-eight days. Kapteyn put this down to the
velocity of light, the original outburst sending its illumination to
the nebulous gas and illuminating a spherical shell whose radius
increased at the velocity of light. This supposition seems correct, in
which case it can easily be shown from the above figures that the
distance of this Nova was 300 light years.
Public-domain text, read in full here on John Shaqi.
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