On the Connexion of the Physical SciencesSomerville, Mary
Science
On the Connexion of the Physical Sciences
Somerville, Mary
Physical sciences; Science
Light is said to be polarized, which, by being once reflected or
refracted, is rendered incapable of being again reflected or refracted
at certain angles. In general, when a ray of light is reflected from a
pane of plate-glass, or any other substance, it may be reflected a
second time from another surface, and it will also pass freely through
transparent bodies. But, if a ray of light be reflected from a pane of
plate-glass at an angle of 57°, it is rendered totally incapable of
reflection at the surface of another pane of glass in certain definite
positions, but it will be completely reflected by the second pane in
other positions. It likewise loses the property of penetrating
transparent bodies in particular positions, whilst it is freely
transmitted by them in others. Light, so modified as to be incapable of
reflection and transmission in certain directions, is said to be
polarized.
Light may be polarized by reflection from any polished surface, and the
same property is also imparted by refraction. It is proposed to explain
these methods of polarizing light, to give a short account of its most
remarkable properties, and to endeavour to describe a few of the
splendid phenomena it exhibits.
If a brown tourmaline, which is a mineral generally crystallized in the
form of a long prism, be cut longitudinally, that is, parallel to the
axis of the prism, into plates about the thirtieth of an inch in
thickness, and the surfaces polished, luminous objects may be seen
through them, as through plates of coloured glass. The axis of each
plate is in its longitudinal section parallel to the axis of the prism
whence it was cut (N. 204). If one of these plates be held
perpendicularly between the eye and a candle, and turned slowly round in
its own plane, no change will take place in the image of the candle. But
if the plate be held in a fixed position, with its axis or longitudinal
section vertical, when a second plate of tourmaline is interposed
between it and the eye, parallel to the first, and turned slowly round
in its own plane, a remarkable change will be found to have taken place
in the nature of the light. For the image of the candle will vanish and
appear alternately at every quarter revolution of the plate, varying
through all degrees of brightness down to total or almost total
evanescence, and then increasing again by the same degrees as it had
before decreased. These changes depend upon the relative positions of
the plates. When the longitudinal sections of the two plates are
parallel, the brightness of the image is at its maximum; and, when the
axes of the sections cross at right angles, the image of the candle
vanishes. Thus the light, in passing through the first plate of
tourmaline, has acquired a property totally different from the direct
light of the candle. The direct light would have penetrated the second
plate equally well in all directions, whereas the refracted ray will
only pass through it in particular positions, and is altogether
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