The story of the universe. Volume 1 (of 4) : $b The starry skies
History
The story of the universe. Volume 1 (of 4) : $b The starry skies
Astronomy; Earth (Planet); Natural history
The thickness of the rings is quite inconsiderable. They are flat
sheets, without (so to speak) a third dimension. For this reason,
they disappear utterly in most telescopes, when their plane passes
through the earth, as it does twice in each Saturnian year. Only
under exceptional conditions, a narrow, knotted, often nebulous,
streak survives as an index to their whereabouts. On October 26,
1891, Professor Barnard, armed with the Lick refractor, found it
impossible to see them projected upon the sky, notwithstanding that
their shadow lay heavily on the planet. It was not until three
days later that “slender threads of light” came into view. The
corresponding thickness of the formation was estimated at less than
fifty miles. The phenomenon of ring disappearance will not recur
until July 29, 1907.
The constitution of this marvelous structure is no longer doubtful.
It represents what might be called the fixed form of a revolving
multitude of diminutive bodies. This was demonstrated by Clerk
Maxwell in the Adams Prize Essay of 1857. His conclusion proved
irreversible. The pulverulent composition of Saturn’s rings is one
of the acquired truths of science. An incalculable number of tiny
satellites revolving independently in distinct orbits, in the precise
periods prescribed by their several distances from the planet, are
aggregated into the unmatched appendages of Galileo’s _tergeminus
planeta_. The local differences in their brightness depend upon the
distribution of the component satelloids. Where they are closely
packed, as in the outer margins of rings A and B, sunlight is
copiously reflected; where the interspaces are wide, the blackness
of the sky is barely veiled by the scanty rays thrown back from the
thinly scattered cosmic dust. The appearance of the crape ring as
a _dark_ stripe on the planet results—as M. Seeliger has pointed
out—not from the transits of the objects themselves, but from the
flitting of their shadows in continual procession across the disk.
The albedo of these particles is so high as to render it improbable
that they are of an earthy or rocky nature, such as the meteorites
which penetrate our atmosphere. The rings they form are, on the
whole, more lustrous than Saturn’s globe; but this superiority is
held to be due to the absence of atmospheric absorption. Their
spectrum is that of unmodified sunlight.
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