Worlds in the making: The evolution of the universeArrhenius, Svante
Science
Worlds in the making: The evolution of the universe
Arrhenius, Svante
Cosmogony
The faculæ can be studied in the same way as the prominences, and
of late Deslandres and Hale have used for this purpose a special
instrument, the heliograph (compare Figs. 26 to 29). When the faculæ
approach the limb of the sun they appear particularly brilliant by
comparison with their surroundings. That seems to indicate that they
are lying at a great altitude, and that their light is hence not
weakened by the superposed hazy stratum. When they reach the sun’s
limb they appear to us like raised portions of the photosphere. The
clouds which form these faculæ are carried upward by powerful ascending
streams of gas whose expansion is due to the diminution of the gaseous
pressure.
[Illustration: Fig. 28.—The great sun-spot of October 9, 1903.
Photograph of the higher-level calcium faculæ, taken with the
light of the central portion of the line H (calcium). The
higher-level faculæ hide the spot, indicating that the faculæ
spread considerably during their ascent]
[Illustration: Fig. 29.—The great sun-spot of October 9, 1903.
Photograph of the hydrogen faculæ, taken with the light of the
spectral line F (hydrogen). Only the darkest portions of the
spot are visible. The other portions are obscured by masses of
the hydrogen, which were evidently in a restless state]
Sun-spots display many peculiarities in their spectra (Figs. 24 and
25). Very prominent is always the helium line; prominent likewise the
dark sodium lines, which are markedly widened and which show in their
middle portions a bright line—the so-called reversal of lines (Fig.
24). This occurrence indicates that the metal is lying in a deeper
stratum. In the red portion of the spectrum we find bands, just as in
the spectra of the red stars. These bands, which appear to be resolved
into crowds of lines by the aid of powerful instruments, indicate the
presence of chemical compounds. Since the spot is comparatively of
feeble intensity, its spectrum appears superposed like a less bright
ribbon upon the background of the spectrum of the more luminous
photosphere. The violet end of the sun-spot spectrum is particularly
weakened. Although the spot has the appearance of a pit in the
photosphere, and when on the sun’s limb makes it look as if a piece had
been cut out of the edge, it yet does not appear darker than the sun’s
edge. That points to the conclusion that the light emitted by the spot
emanates chiefly from its upper, cold portions.
[Illustration: Fig. 30.—Photograph of the solar corona of 1900.
(After Langley and Abbot.) Illustrating the appearance of the
corona in years of minimum sun-spot frequency]
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