The Heavens Above: A Popular Handbook of AstronomyRolfe, W. J. (William James)
Science
The Heavens Above: A Popular Handbook of Astronomy
Rolfe, W. J. (William James)
Astronomy
Professor Young also suggests that the spots may be depressions in the
photosphere caused "by the _diminution of upward pressure_ from below,
in consequence of eruptions in the neighborhood; the spots thus being,
so to speak, _sinks_ in the photosphere. Undoubtedly the photosphere is
not a strictly continuous shell or crust; but it is _heavy_ as compared
with the uncondensed vapors in which it lies, just as a rain-cloud in
our terrestrial atmosphere is heavier than the air; and it is probably
continuous enough to have its upper level affected by any diminution of
pressure below. The gaseous mass below the photosphere supports its
weight and the weight of the products of condensation, which must always
be descending in an inconceivable rain and snow of molten and
crystallized material. To all intents and purposes, though nothing but a
layer of clouds, the photosphere thus forms a constricting shell, and
the gases beneath are imprisoned and compressed. Moreover, at a high
temperature the viscosity of gases is vastly increased, so that quite
probably the matter of the solar nucleus resembles pitch or tar in its
consistency more than what we usually think of as a gas. Consequently,
any sudden diminution of pressure would propagate itself slowly from the
point where it occurred. Putting these things together, it would seem,
that, whenever a free outlet is obtained through the photosphere at any
point, thus decreasing the inward pressure, the result would be the
sinking of a portion of the photosphere somewhere in the immediate
neighborhood, to restore the equilibrium; and, if the eruption were kept
up for any length of time, the depression in the photosphere would
continue till the eruption ceased. This depression, filled with the
overlying gases, would constitute a spot. Moreover, the line of fracture
(if we may call it so) at the edges of the sink would be a region of
weakness in the photosphere, so that we should expect a series of
eruptions all around the spot. For a time the disturbance, therefore,
would grow, and the spot would enlarge and deepen, until, in spite of
the viscosity of the internal gases, the equilibrium of pressure was
gradually restored beneath. So far as we know the spectroscopic and
visual phenomena, none of them contradict this hypothesis. There is
nothing in it, however, to account for the distribution of the spots in
solar latitudes, nor for their periodicity."
IV. THE CHROMOSPHERE AND PROMINENCES.
193. _The Sun's Outer Atmosphere._--What we see of the sun under
ordinary circumstances is but a fraction of his total bulk. While by far
the greater portion of the solar _mass_ is included within the
photosphere, the larger portion of his _volume_ lies without, and
constitutes a gaseous envelope whose diameter is at least double, and
its bulk therefore sevenfold, that of the central globe.
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