Meteorology: The Science of the AtmosphereTalman, Charles Fitzhugh
Science
Meteorology: The Science of the Atmosphere
Talman, Charles Fitzhugh
Meteorology
The reason for this segregation of the aurora in high latitudes is
that the earth is a great magnet, and magnets have the power of
deflecting an electrical discharge in their vicinity. An appearance
much resembling the two auroral zones of the earth was produced, on
a small scale, by the late Professor Kr. Birkeland of Christiania,
who magnetized a metal globe and allowed an electrical discharge to
play upon it in a vacuum. The surface of the globe was coated with
a phosphorescent substance, which glowed under the discharge in two
rings, corresponding roughly to those of the aurora. In both cases the
discharge follows what are called the magnetic “lines of force.” Our
earth, like other magnets, is enveloped and penetrated by such lines.
At any point on the earth the direction of the neighboring lines of
force is shown by the dipping needle, which assumes a position parallel
to them. At a magnetic pole the needle points straight up and down,
and everywhere in high latitudes it has a position not very much
inclined to the vertical, while in low latitudes it is more or less
horizontal.
If, now, for the sake of simplicity we confine our attention to the
northern hemisphere, and imagine ourselves maintaining our watch for
months and years together, we shall discover that much of the time
there is no ring to be seen; at other times there may be a small or
partial ring; and occasionally there is a very broad, conspicuous ring,
spreading so far south that it overlies the northern part of the United
States and most of Europe. Evidently the emission from the sun that
causes the auroral discharge varies greatly in strength, and this is in
accordance with what we know about solar activities in general.
Next let us take a closer look at the ring, whether from outer space or
from the earth’s surface. We shall find that it is made up, at least
in part, of a multitude of luminous beams directed out into space and
undergoing rapid changes in position and form. These beams, which
really mark out the streams of the discharge in the upper air, follow
the lines of force. In high latitudes they are nearly vertical with
respect to the underlying surface of the earth. Even in the United
States (when the aurora extends so far south) they are much more nearly
vertical than horizontal. A dipping needle will show, at any place,
just how they should stand.
[Illustration: PHOTOGRAPHIC ANALYSIS OF LIGHTNING. This double
photograph was made by Dr. B. Walter of Hamburg, the leading expert in
the field of lightning photography. The picture at the left was taken
with a stationary camera. The photograph at the right, taken at the
same time with a revolving camera, shows that one of the main flashes
(the one to the right) was a single discharge, and the other a multiple
discharge.]
Public-domain text, read in full here on John Shaqi.
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