Astronomy: The Science of the Heavenly BodiesTodd, David P. (David Peck)
History
Astronomy: The Science of the Heavenly Bodies
Todd, David P. (David Peck)
Astronomy
Many attempts have been made to ascertain the cause of the periodicity
of sun spots, but the real cause is not yet known. If the spots are
eruptional in character, the forces held in check during seasons of few
spots may well break out in period. The brighter streaks and mottlings
known as faculæ are probably elevations above the general photosphere,
and seem to be crusts of luminous matter, often incandescent calcium,
protruding through from the lower levels. Generally the faculæ are
numerous around the dark spots, and absorption of the sun's light by his
own atmosphere affords a darker background for them, with better
visibility nearer the rim of the solar disk. The spectroheliograph
reveals vast zones of faculæ otherwise invisible, related to the
sun-spot zones proper on both sides of the equator.
In some intimate way the magnetism of sun and earth are so related that
outbreaks of solar spots are accompanied with disturbances of electrical
and other instruments on the earth; also the aurora borealis is seen
with greater frequency during periods when many spots are visible.
Within very recent years the discovery of a magnetic field in sun spots
has been made by Hale with powerful instruments of his own design. Sun
spots had never been investigated before with adequate instrumental
means. He recognized the necessity of having a spectroscope that would
record the widened lines of sun-spot spectra, and the strengthened and
weakened lines on a large scale. Certain changes in relative intensity
were traced to a reduced temperature of the spot vapors by comparison
with photographs of the spectrum of iron and other metallic vapors in an
electric arc at different temperatures. Here the work of the laboratory
was essential. Sun spots were thus found to be regions of reduced
temperature in the solar atmosphere. Chemical unions were thus possible,
and thousands of faint lines in spot-spectra were measured and
identified as band lines due to chemical compounds. Thus the chemical
changes at work in sun-spot vapors were recognized.
Then followed the highly significant investigations of solar vortices
and magnetic fields. Improvements in photographic methods had revealed
immense vortices surrounding sun spots in the higher part of the
hydrogen atmosphere; and this led to the hypothesis that a sun spot is a
solar storm, resembling a terrestrial tornado, and in which the hot
vapors whirling at high velocity are cooled by expansion. This would
account for the observed intensity changes of the spectrum lines and the
presence of chemical compounds. The vortex hypothesis suggested an
explanation of the widening of many spot lines, and the doubling or
trebling of some of them. As it is known that electrons are emitted by
hot bodies, they must be present in vast numbers in the sun; and
positive or negative electrons, if caught and whirled in a vortex, would
produce a magnetic field.
Public-domain text, read in full here on John Shaqi.
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