Astronomy: The Science of the Heavenly BodiesTodd, David P. (David Peck)
History
Astronomy: The Science of the Heavenly Bodies
Todd, David P. (David Peck)
Astronomy
In America the reflector has always kept at least even pace with the
refractor. As early as 1830, Mason and Smith, two students at Yale
College, enthused by Denison Olmsted, built a 12-inch speculum with
which they made unsurpassed observations of the nebulæ. Dr. Henry
Draper, returning from a visit to Lord Rosse, began about 1865 the
construction of two silver-on-glass reflectors, one of 15 inches
diameter, the other of 28 inches, with which he did important work for
many years in photography and spectroscopy, and his mirrors are now the
property of Harvard College Observatory. Alvan Clark and Sons have in
later years built a 40-inch mirror for the Lowell Observatory in
Arizona, and very recently a 6-foot silver-on-glass mirror has been set
up in the Dominion of Canada Astrophysical Observatory at Victoria,
British Columbia, where it is doing excellent work in the hands of
Plaskett, its designer.
The huge glass disk for the reflector weighs two tons, and it must be
cast so that there are no internal strains; otherwise it is liable to
burst in fragments in the process of grinding. It should be free from
air-bubbles, too; so the glass is cast in one melting, if possible. This
disk was made by the St. Gobain Plate Glass Company, whose works have
been ruthlessly destroyed by the enemy during the war; but fortunately
the great disk had been shipped from Antwerp only a week before
declaration of hostilities.
Brashear of Allegheny was intrusted with the optical parts, which
occupied many months of critical work. The finished mirror is 73 inches
in diameter, its focal length is 30 feet, and its thickness 12 inches. A
central hole 10 inches in diameter makes possible its use as a Gregorian
or Cassegrainian type, as well as Newtonian. The mechanical parts of
this great telescope are by Warner and Swasey of Cleveland, after the
well-known equatorial mounting of the Melbourne reflector by Grubb of
Dublin. Friction of the polar and declination axes is reduced by ball
bearings. The 66-foot dome has an opening 15 feet wide and extending six
feet beyond the zenith. All motions of the telescope, dome shutters, and
observing platform are under complete control by electric motors.
Spectroscopic binaries form one of the special fields of research with
this powerful instrument, and many new binaries have already been
detected.
Public-domain text, read in full here on John Shaqi.
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