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
Zeeman in 1896 had discovered that the lines in the spectrum of a
luminous vapor in a magnetic field are widened, or even split into
several components if the field is strong enough. Characteristic effects
of polarization appear also. The new apparatus of the observatory in
conjunction with experiments in the laboratory immediately provided
evidence that proved the existence of magnetic fields in sun spots, and
strengthened the view that the spots are caused by electric vortices.
Extended investigations have led Hale to the conclusion that the sun
itself is a magnet, with its poles situated at or near the poles of
rotation. In this respect the sun resembles the earth, which has long
been known to be a magnet. The sun's axial rotation permits
investigation of the magnetic phenomena of all parts of its surface, so
that ultimately the exact position of the sun's magnetic poles and the
intensity of the field at different levels in the solar atmosphere will
be ascertained. Schuster is of the opinion that not only the sun and
earth, but every star, and perhaps every rotating body, becomes a magnet
by virtue of its rotation. Hale is confident that the 100-inch reflector
will permit the test for magnetism to be applied to a few of the stars.
The sun can be observed at Mount Wilson on at least nine-tenths of all
the days in the year, and a daily record of the polarities of all spots
with the 150-foot tower telescope is a part of the routine. A method has
been devised for classifying sun spots on the basis of their magnetic
properties, and more than a thousand spots have already been so
classified. About 60 per cent of all sun spots are found to be binary
groups, the single or multiple members of which are of opposite magnetic
polarity. Unipolar spots are very seldom observed without some
indication of the characteristics of bipolar groups. These are usually
exhibited in the form of flocculi following the spot. The bipolar spot
seems to be the dominant type, and the unipolar type a variant of it.
Although devised for quite another purpose, that of photographing the
hydrogen prominences on the limb of the sun, the spectroheliograph has
contributed very effectively to many departments of solar research. The
prominences are dull reddish cloudlets that were first seen during total
eclipses of the sun. Probably Vassenius, a Swedish astronomer, during
the total eclipse of 1733, made the earliest record of them, as pinkish
clouds quite detached from the edge of the moon; and in that day, when
it had not yet been proved that the moon was without atmosphere, he
naturally thought they belonged to the moon, not the sun. Undoubtedly
Ulloa, a Spanish admiral, also saw the prominences in observing the
total eclipse of 1778; but they seem to have attracted little attention
till 1842, when a very important total eclipse was central throughout
Europe, and observed with great care by many of the eminent astronomers
of all countries.
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Elsewhere in the archive
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account