Having admitted a beam of the sun’s light through a small pin-hole in
a piece of lead or card into a dark chamber, he found that the light
diverged from this aperture in the form of a cone, and that the shadows
of all bodies placed in this light were not only larger than might have
been expected, but were surrounded with three coloured fringes, the
nearest being the widest, and the most remote the narrowest. In strong
light he discovered analogous fringes within the shadows of bodies,
which increased in number with the breadth of the body, and became
more distinct when the shadow was received obliquely and at a greater
distance. When two small apertures or pin-holes were placed so near
each other that the cones of light formed by each of them intersected
one another, Grimaldi observed, that a spot common to the circumference
of each, or, which is the same thing, illuminated by rays from each
cone, was darker than the same spot when illuminated by either of
the cones separately; and he announces this remarkable fact in the
following paradoxical proposition, “_that a body actually illuminated
may become more dark_ by adding a _light to that which it already
receives_.”
Without knowing what had been done by the Italian philosopher, our
countryman, Dr. Robert Hooke, had been diligently occupied with the
same subject. In 1672, he communicated his first observations to the
Royal Society, and he then spoke of his paper as “containing the
discovery of a new property of light not mentioned by any optical
writers before him.” In his paper of 1674, already mentioned, and which
is no doubt the one to which he alludes, he has not only described
the leading phenomena of the inflection, or the deflection of light,
as he calls it, but he has distinctly announced the _doctrine of
interference_, which has performed so great a part in the subsequent
history of optics.[30]
Such was the state of the subject when Newton directed to it his powers
of acute and accurate observation. His attention was turned only to the
enlargement of the shadow, and to the three fringes which surrounded
it; and he begins his observations by ascribing the discovery of these
facts to Grimaldi. After taking exact measures of the diameter of the
shadow of a human hair, and of the breadth of the fringes at different
distances behind it, he discovered the remarkable fact that these
diameters and breadths were not proportional to the distances from the
hair at which they were measured. In order to explain these phenomena,
Newton supposed that the rays which passed by the edge of the hair
are deflected or turned aside from it, as if by a repulsive force,
the nearest rays suffering the greatest, and those more remote a less
degree of deflection.
[Illustration: _Fig. 10._]
Public-domain text, read in full here on John Shaqi.
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