A Popular History of Astronomy During the Nineteenth Century: Fourth EditionClerke, Agnes M. (Agnes Mary)
History
A Popular History of Astronomy During the Nineteenth Century: Fourth Edition
Clerke, Agnes M. (Agnes Mary)
Astronomy -- History -- 19th century
The principle of the method employed is this. The whole range of
Fraunhofer lines is visible when the light from a spot is examined with
the spectroscope; but relatively few are widened. Now these widened
lines alone constitute (presumably) the true spot-spectrum; they, and
they alone, tell what kinds of vapour are thrust down into the strange
dusky pit of the nucleus, the unaffected lines taking their accustomed
origin from the over-lying strata of the normal solar atmosphere. Here
then we have the criterion that was wanted--the means of distinguishing,
spectroscopically and chemically, between the cavity and the absorbing
layers piled up above it. By its persistent employment some marked
peculiarities have been brought out, such as the unfamiliar character of
numerous lines in spot-spectra, especially at epochs of disturbance; and
the strange _individuality_ in the behaviour of every one of these
darkened and distended rays. Each seems to act on its own account; it
comports itself as if it were the sole representative of the substance
emitting it; its appearance is unconditioned by that of any of its
terrestrial companions in the same spectrum.
The most curious fact, however, elicited by these inquiries was that of
the attendance of chemical vicissitudes upon the advance of the sun-spot
period. As the maximum approached, unknown replaced known components of
the spot-spectra in a most pronounced and unmistakable way.[657] It
seemed as if the vapours emitting lines of iron, titanium, nickel, etc.,
had ceased to exist as such, and their room been taken by others, total
strangers in terrestrial laboratories. These were held by Lockyer to be
simply the finer constituents of their predecessors, dissociation having
been effected by the higher temperature ensuing upon increased solar
activity. But Father Cortie's supplementary investigations at
Stonyhurst[658] modified, while they in the main substantiated, the
South Kensington results. They showed that the substitution of unknown
for known lines characterizes disturbed spots, at all stages of the
solar cycle, so that no systematic course of chemical change can be said
to affect the sun as a whole. They showed further[659]--from evidence
independent of that obtained by Young in 1892[660]--the remarkable
conspicuousness in spot-spectra of vanadium lines excessively faint in
the Fraunhofer spectrum. Lockyer's "unknown lines" may probably thus be
accounted for. They represent absorption, not by new, but by scarce
elements, especially, Father Cortie thinks, those with atomic weights of
about 50. The circumstance of their development in solar commotions,
largely to the exclusion of iron, is none the less curious; but it
cannot be explained by any process of dissociation.
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