The story of the universe. Volume 1 (of 4) : $b The starry skies
History
The story of the universe. Volume 1 (of 4) : $b The starry skies
Astronomy; Earth (Planet); Natural history
An image being formed by a mirror, it is next to be viewed with
an eye-piece just as in the case of a refracting telescope. Here
there is a little difficulty, for if the eye-piece be applied in the
direct line of the mirror, the interposition of the observer’s head
will block out the light. Several ways of overcoming this have been
devised, but the plan most generally followed is that which Newton
adopted in the first reflecting telescope which was ever constructed.
With his own hands Newton made a small reflector, 6¼ inches long and
having an aperture of 1⅓ inches, with which he was able to study
the phases of Venus and the phenomena of Jupiter’s satellites. This
precious little instrument is now one of the greatest treasures in
the collection of the Royal Society of London. The general design
of this telescope is shown in Fig. 21. The concave mirror is at the
bottom of the telescope tube, and normally it would form an image of
a star near the end of the tube. A plane mirror, however, of small
size intercepts the rays and reflects them to the side, where they
converge to a focus. This image is observed and magnified by an
eye-piece, as in the refractor. It is true that in this arrangement
the plane mirror, or _flat_, renders the central part of the
principal mirror ineffective, but the loss of light is very much less
than would be the case if the eye-piece were placed in position to
view the image centrally.
In the hands of Sir William Herschel the reflecting telescope was
greatly developed. The great telescope with which he enriched
astronomical science had a mirror four feet in diameter, and its
tube was forty feet in length. With the view of utilizing the whole
surface of the mirror and dispensing with a second reflecting
surface, the 4-foot mirror was placed at a small angle to the bottom
of the tube, so that its principal focal point was no longer at the
centre, but at the side of the tube.
In practice, however, it is found that the Herschelian form of
reflector does not give the best definition, and it is now very
seldom seen.
Among other forms, the “Cassegrain” is perhaps the most important.
During the last years this form has received a great deal of
attention, more especially in regard to its special adaptability for
photographic purposes.
In the Cassegrain telescope, the plane mirror of the Newtonian form
is replaced by a small convex mirror which is part of a hyperboloid
of revolution, its axis and focal point being coincident with those
of the primary mirror. The rays are in this way reflected back to the
mirror at the bottom of the tube, and in order that the image may be
seen, it is necessary to cut out the middle part of the mirror to
admit the eye-piece.
Public-domain text, read in full here on John Shaqi.
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