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
Michelson tested this method on the satellites of Jupiter at the Lick
Observatory in 1891, and showed its accuracy and practicability.
Nevertheless, the method has not been taken up by astronomers, until
very recently at the Mount Wilson Observatory, where Anderson has
applied it to the measurement of close double stars. It is found that,
contrary to general expectation, the method gives excellent results,
even if the "seeing" is not the best--2 on a scale of 10, for instance.
To simplify the manipulation of the interferometer, a small plate with
two apertures in it is placed in the converging beam of light coming
from the telescope objective or mirror. The interference fringes formed
in the focal plane are then viewed with an eyepiece of very high power,
many thousand diameters. The resolving power of the interferometer is
found to be somewhat more than double that of a telescope of the same
aperture. By applying the interferometer method to Capella, arc
distances of much less than one-twentieth of a second of arc were
measured. More recently the method has been applied to the great star
Betelgeuse in Orion, whose angular diameter was found to be 0".46,
corresponding to an actual diameter of 260,000,000 miles, if the star's
parallax is as small as it appears to be.
CHAPTER LI
THE VARIABLE STARS
Spectacular as they are to the layman, novæ, or temporary stars, are to
the astronomers simply a class among many thousands of stars which they
call variables, or variable stars. There are a few objects classified as
irregular variables, one of which is very remarkable. We refer to Eta
Argus, an erratic variable in the southern constellation Argo and
surrounded by a well-known nebula. There is a pretty complete record of
this star. Halley in 1677 when observing at Saint Helena recorded Eta
Argus as of the fourth magnitude. During the 18th century, it fluctuated
between the fourth magnitude and the second. Early in the 19th it
rapidly waxed in brightness, fluctuating between the first and second
magnitudes from 1822 to 1836. But two years later its light tripled,
rivaling all the fixed stars except Canopus and Sirius. In 1843 it was
even brighter for a few months, but since then it has declined fairly
steadily, reaching a minimum at magnitude seven and a half in 1886, with
a slight increase in brightness more recently. A period of half a
century has been suggested, but it is very doubtful if Eta Argus has any
regular period of variation.
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