Like spherical aberration, chromatic aberration is a contributing factor
to the size of the image of a point source, which determines the
defining power of a lens. It is, however, an error whose effect is to
some extent dependent on the kind of sensitive plate used. Two lenses
may give images of the same size (in so far as it is governed by
chromatic aberration), if a plate of narrow spectral sensitiveness is
used, while giving images of different size on panchromatic plates of
more extended color sensibility. The choice of the region of the
spectrum for which chromatic correction is to be made is thus governed
by the color of the photographically effective light. While in ordinary
photography the blue of the spectrum is most important, in aerial work
where color filters are habitually used with isochromatic plates the
green is most important, and color correction centered about this region
constitutes a real difference of design peculiar to aerial lenses.
Similarly the general use of deep orange or red filters with red
sensitive plates, for heavy mist penetration, would call for a shift of
correction to that part of the spectrum.
_Astigmatism and Covering Power._—Suppose the lens forms at some point
off its axis an image of a cross. Suppose one of the elements of the
cross to be on a radius from the center of the field, the other element
parallel to a tangent. The rays forming the images of these two elements
of the cross are subject to somewhat different treatment in their
passage through the lens. The curvature of the lens surfaces is on the
whole greater with respect to the rays from the radial element than to
those from the tangential element. They are therefore refracted more
strongly and come to a focus nearer the lens. The arms of the cross are
consequently not all in focus at once. This error, termed _astigmatism_,
is rather well shown in Fig. 15, where the images of the outlying
concentric circles are sharp in the radial, but blurred in the
tangential direction.
Astigmatism can be largely compensated for, and its character
controlled. The most usual correction brings the two images in focus
together both at the axis, and on a circle at some distance out. This
second locus of coincidence may or may not be in the same plane as the
first, depending on which disposition produces the best average
correction. The mean between the two foci determines the focal plane of
the lens, which is in general somewhat curved. The _covering power_ of a
lens is given by the size of the field which is sufficiently flat and
free from astigmatism for the purpose for which the lens is used. This
is largely determined by the astigmatism, but the other aberrations are
also important.
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