Flowers of the SkyProctor, Richard A. (Richard Anthony)
Science
Flowers of the Sky
Proctor, Richard A. (Richard Anthony)
Astronomy
It had been noticed by Tyndall, in certain experiments, that a very
sensitive measurer of heat, when placed under the moon's rays, gathered
together by a powerful condenser, seemed to indicate cooling rather than
heating, as we should expect. On this a French student of science
pointed to the darkening under the moon where the lunar halo is seen as
evidence that our satellite possesses a certain power of clearing away
vaporous matter from the air. "_On peut dire_," he said, speaking of the
dark space within the halo, "_que la lune ouvre alors une porte par
laquelle s'échappe le calorique que l'action solaire a emmagasiné dans
les couches inférieures_." "One may say," that is, "that the moon then
opens a door through which the heat escapes, which the sun's action has
stored up in the lower layers" (of the air). It will be manifest, if we
remember that a lunar halo can often be seen at the same time from
stations hundreds of miles apart, that there can be no such opening of
clear air. For the cloud layer in which the halo is formed is but a few
miles above the observer; and therefore, if one observer saw a circular
opening in this layer, with the moon at its centre, another, a hundred
miles from him, would see the space in a very different direction. The
moon would not only not be at the centre of the space for this second
observer, but would not be visible through the space at all. Moreover,
the space could not possibly seem round to both observers; if it seemed
round to one, it would look like a very flat oval of darkness (almost a
mere line) to the other.
The real explanation of the lunar halo is very different. When you see
such a halo, you may be certain that there is, high up in the air, a
layer of light feathery cloud--the cirrus cloud, as it is
called--composed of tiny crystals of ice. These crystals, as we know
from those which in winter sometimes fall (not as snow, but as little
ice-stars), have all a definite shape. They are in fact little prisms of
ice, with angles like those of an equilateral triangle. These little
prisms deflect the light which falls upon them, just as one of the drops
of a chandelier deflects any light which falls upon it. If you hold a
prism-drop of a chandelier between the eye and a light, you will see
that the prism looks dark; it is really lit up, but it sends the light
away in such a direction that the eye receives none. Now move it
gradually away from the line of sight to the light, and at a certain
distance it appears full of light; or, to speak more correctly, it sends
the light it receives directly towards your eye. Beyond that position it
again looks dark, but not so dark as when it was nearly between the eye
and the light.
Public-domain text, read in full here on John Shaqi.
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