On Molecular and Microscopic Science, Volume 1 (of 2)Somerville, Mary
History
On Molecular and Microscopic Science, Volume 1 (of 2)
Somerville, Mary
Matter -- Constitution; Microscopy; Natural history
The undulations of the ethereal medium which produce the sensation of
common light, are performed in every plane at right angles to the
direction in which the ray is moving, but the case is very different
after the ray has been polarized by passing through a substance like
Iceland spar, for the light then proceeds in two parallel pencils whose
undulations are still indeed transverse to the direction of the rays,
but they are accomplished in planes at right angles to one another. The
ray of common light is like a round rod, whereas the parallel polarized
rays resemble two long flat rulers, one of which lies on its broad
surface, and the other on its edge. By a simple mechanical law, each
vibratory motion of the common light is resolved into vibratory motions
at right angles to one another.
The polarization of light and heat by refraction is not owing to the
chemical composition, but to a want of homogeneity in the molecular
structure of the substances through which they pass; for regular
crystals and substances which are throughout of the same temperature,
density, and structure, are incapable of double refraction. The effect
of molecular structure is strikingly exhibited by the circular
polarisation in the dimorphic crystals of quartz. In one form the plane
of polarization revolves from right to left, and in the other that plane
revolves from left to right, although the crystals themselves differ
apparently by a very slight and often almost imperceptible variety of
forms.
Thus polarization forms the most admirable connection between light,
heat, and crystalline structure; showing peculiar arrangements of the
molecules in regions otherwise unapproachable, and too refined for our
perceptions. Besides, the gorgeously coloured images displayed by
depolarization are splendid examples of the power of matter in
decomposing light.
The perfect correspondence of the properties of the symmetrical,
elastic, and optical axes of crystals with light and heat is another
instance of the connection between the latter and crystalline form.
Public-domain text, read in full here on John Shaqi.
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