But Young's greatest service to science was his application of the
principle of interference--of which he had already made good use in
the theory of sound--to the phenomena of light. The results of these
researches were presented to the Royal Society, and two of the papers
were selected as Bakerian lectures in 1801 and 1803 respectively.
Unfavourable criticisms of these papers, which appeared in the
_Edinburgh Review_, and were said to have been written by Mr.
(afterwards Lord) Brougham, seem to have caused their contents to be
neglected by English men of science for many years; and it was to
Arago and Fresnel that we are indebted for recalling public attention
to them. The undulatory theory of light, which maintains that light
consists of waves transmitted through an _ether_, which pervades all
space and all matter, owes its origin to Hooke and Huyghens. Huyghens
showed that this theory explained, in a very beautiful manner, the
laws of reflection and of refraction, if it be allowed that light
travels more slowly the denser the medium. According to the celebrated
principle of Huyghens, every point in the front of a wave at any
instant becomes a centre of disturbance, from which a secondary wave
is propagated. The fronts of these secondary waves all lie on a
surface, which becomes the new surface of the primary wave. When light
enters a denser medium obliquely, the secondary waves which are
propagated within the denser medium extend to a less distance than
those propagated in the rarer medium, and thus the front of the
primary wave becomes bent at the point where it meets the common
surface. Huyghens explained, not only the laws of ordinary refraction
in this manner, but, by supposing the secondary waves to form
spheroids instead of spheres, he obtained the laws of refraction of
the extraordinary ray in Iceland-spar. He did not, however, succeed in
explaining why light should not diverge laterally instead of
proceeding in straight lines. Newton supported the theory that light
consists of particles or corpuscles projected in straight lines from
the luminous body, and sometimes transmitted, sometimes reflected,
when incident on a transparent medium of different density. To account
for the particle being sometimes transmitted and sometimes reflected,
Newton had recourse to the hypothesis of "fits of easy transmission
and of easy reflection," and, to account for the fits themselves, he
supposed the existence of an ether, the vibrations of which affected
the particles. The laws of reflection were readily explained, being
the same as for a perfectly elastic ball; the laws of refraction
admitted of very simple explanation, by supposing that the particles
of the denser medium exert a greater attraction on the particles of
light than those of the rarer medium, but that this attraction acts
only through very short distances, so that when the light-corpuscle is
at a sensible distance from the surface, it is attracted equally all
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