History, Modern -- 19th century; Nineteenth century
So much, then, for the largest refractors. In recent years, since the
introduction of the silver on glass mirrors, with their stability of
figure and brilliant surface, which can be easily renewed, reflectors
of large apertures are again being produced. The first of these was
one of thirty-six inches aperture made by Calver for Dr. Common, who
demonstrated its fine qualities and his own skill by the beautiful
photographs of the nebula of Orion he was enabled to secure with
it. Dr. Common himself has since turned his attention to the making
and silvering of large mirrors of this kind, and the largest he has
actually completed and mounted equatorially is one with a diameter of
five feet. Another of thirty-six inches aperture is in use at the Solar
Physics Observatory at Kensington.
The progress of depositing silver on glass has led of late years to
important developments in which _plane_ mirrors are used. Foucault was
the first to utilize such mirrors in his “siderostat,” in which such a
mirror is made to move in front of a horizontal fixed telescope, which
may be of any focal length, and no expensive dome or rising floor is
required. The plane mirror of the siderostat in the Paris Exhibition
telescope is six feet in diameter.
A variation of this instrument is the cœlostat more recently advocated
by Lippmann. The Coudé equatorial mounting also depends upon the use of
plane mirrors; with such a telescope the observer is at rest at a fixed
eye-piece or camera in a room which may be kept at any temperature.
Now that in astronomical work eye observations are indispensably
supplemented by the employment of photography, an important
modification of the refracting telescope has become necessary; this was
first suggested by Rutherfurd.
The ordinary achromatic object-glass consists, as a rule, of two
lenses, one made of flint and the other of crown glass; but in this
form the photographic rays are not brought to the same focus as the
visual rays. This, however, can be achieved by employing three lenses
instead of two, each of different kinds of glass. The most modern
improvement in the telescope is due to Mr. Dennis Taylor, of Cooke &
Sons, and to Dr. Schott and Professor Abbe, whose researches in the
manufacture of old and new varieties of optical glass have rendered
Mr. Taylor’s results feasible. By the Taylor lens outstanding color is
abolished, all the rays being brought absolutely to the same focus;
such lenses can therefore be used either for visual observations or for
photography for spectroscopy.
SPECTROSCOPIC ASTRONOMY
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