Scientific American Supplement, No. 363, December 16, 1882Various
Science
Scientific American Supplement, No. 363, December 16, 1882
Various
Science -- Periodicals
All that has preceded is subordinate to the main research, on which I
have occupied the past two years at Alleghany, in comparing the spectra
of the sun at high and low altitudes, but which I must here touch upon
briefly. By the generosity of a friend of the Alleghany Observatory, and
by the aid of Gen. Hazen, Chief Signal Officer of the U S. Army, I was
enabled last year to organize an expedition to Mount Whitney in South
California, where the most important of these latter observations were
repeated at an altitude of 13,000 feet. Upon my return I made a special
investigation upon the selective absorption of the sun's atmosphere,
with results which I can now only allude to.
By such observations, but by methods too elaborate for present
description, we can pass from the curve of energy actually observed to
that which would be seen if the observer were stationed wholly above the
earth's atmosphere, and freed from the effect of its absorption.
The salient and remarkable result is the growth of the blue end of the
spectrum, and I would remark that, while it has been long known from
the researches of Lockyer, Crova, and others that certain rays of short
wave-length were more absorbed than those of long, these charts show
_how much_ separate each ray of the spectrum has grown, and bring, what
seems to me, conclusive evidence of the shifting of the point of maximum
energy without the atmosphere toward the blue. Contrary to the accepted
belief, it appears here also that the absorption on the whole grows less
and less, to the extreme infra-red extremity; and on the other hand,
that the energy before absorption was so enormously greater in the blue
and violet, that the sun must have a decidedly bluish tint to the naked
eye, if we could rise above the earth's atmosphere to view it.
But even were we placed outside the earth's atmosphere, that surrounding
the sun itself would still remain, and exert absorption. By special
methods, not here detailed, we have at Alleghany compared the
absorption, at various depths, of the sun's own atmosphere for each
spectral ray, and are hence enabled to show, with approximate truth, I
think for the first time, the original distribution of energy throughout
the visible and invisible spectrum at the fount of that energy, in the
sun itself. There is a surprising similarity, you will notice, in the
character of the solar and telluric absorptions, and one which we could
hardly have anticipated _a priori_.
Here, too, violet has been absorbed enormously more than the green, and
the green than the red, and so on, the difference being so great, that
if we were to calculate the thickness of the solar atmosphere on the
hypothesis of a uniform transmission, we should obtain a very thick
atmosphere from the rate of absorption in the infra-red alone, and a
very thin one from that in the violet alone.
Public-domain text, read in full here on John Shaqi.
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