The Microscope. Its History, Construction, and Application 15th ed.: Being a familiar introduction to the use of the instrument, and the study of microscopical scienceHogg, Jabez
History
The Microscope. Its History, Construction, and Application 15th ed.: Being a familiar introduction to the use of the instrument, and the study of microscopical science
Hogg, Jabez
Microscopy; Natural history
This accessory is brought into constant use for the purpose of
converging rays from a lamp or mirror; or, for reducing the diverging
rays of the lamp to parallelism with the parabolic illuminator, or
silver side-reflector. The form in use is a plano-convex lens of about
three or four inches in focal length (Fig. 159). It is usually mounted
on a brass stand, so that it may be placed and turned in any direction,
and at any height. When used by daylight, its plane side should be
turned towards the object, and the same position maintained when used
for converging the rays of light from the lamp; but when used with the
side-reflector the plane side must be towards the lamp. Much attention
has been paid to this very necessary accessory, the bull’s-eye lens.
A doublet has been brought into use which has increased the value
of the bull’s-eye condenser in bacteriological research, and in
micro-photography generally.
[Illustration: Fig. 159.--Bull’s-eye Lens.]
“During a recent investigation of the spherical aberration in doublets,
it was believed to be impossible to construct a doublet of the form
known as ‘Herschel’s doublet’ free from aberration, although these
doublets figure in many books on optics. In a condenser made by Baker
the aberration is reduced to a minimum, 27 per cent. less than Sir John
Herschel’s. This doublet, it appears, differs from Herschel’s both in
the ratio of the radii of the meniscus, and also in the ratio of the
foci of the two lenses; indeed, the only point of similarity is in the
first lens, which is crossed. To test this, project the image of the
flat lamp-flame on a piece of white card with a plano-convex lens (the
field-lens of the Huyghenian eye-piece), use first the convex side and
then the plane side towards the card, the lamp being placed about 6
feet from the lens. Focus the lamp-flame as sharply as possible, and a
circular halo of misty light will be seen to surround the lamp-flame;
but when the plane side of the lens is made to face the card this halo
of misty light will be seen to be greatly reduced, and the brightness
of the image of the flame proportionately increased. If the lens, then,
were strictly aplanatic there should be no misty halo, all the light
being concentrated in the image of the lamp-flame, and the image of
maximum brightness. In short, the diameter of the halo or misty light
is the measure of the spherical aberration. If the condenser referred
to above, having the form of minimum aberration for two planes, be
compared in the same manner with an ordinary single bull’s-eye of the
same focus, the diameter of the misty halo will be found reduced to
a radius of about 1/5-inch, but, with this new condenser there is a
further reduction, so that the radius of the misty halo measures only
1/20-inch. These experiments are instructive, because the brightness,
or the mistiness of the microscopical image is an associated
phenomenon.”[29]
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