On Molecular and Microscopic Science, Volume 1 (of 2)Somerville, Mary
History
On Molecular and Microscopic Science, Volume 1 (of 2)
Somerville, Mary
Matter -- Constitution; Microscopy; Natural history
He had already determined the coincidence of the double yellow sodium
line with Fraunhofer’s dark line D, but while looking with a prism at a
bright solar beam passing through a yellow sodium flame, he was
surprised to see a strong and well-defined double dark line instead of
the double yellow sodium line which he expected. He obtained the very
same result, more strongly, with Drummond’s lime light, which is
brighter than the flame of any volatilized metal, and as he found that
he could produce the dark and yellow lines alternately, by admitting and
shutting out the brighter light, he concluded that the sodium flame is
subject to the law of exchange, in consequence of which it absorbs rays
of the same refrangibility with those that it emits. In fact, the soda
flame is pervious to all the rays in solar light and Drummond’s flame,
except those of the same refrangibility with its own; these it absorbs
and it may be supposed changes them into heat. Hence M. Kirchhoff came
finally to the conclusion, that the double dark line in the solar
spectrum is the reverse or negative of the double yellow line seen on
the spectrum of the sodium flame.
Quite recently, M. Fizeau has discovered that the spectrum of sodium
burning in air is reversed during the combustion. At first it is black,
with the usual double yellow line; at last, when the light is at its
maximum, the double yellow line becomes black on a continuous spectrum
with all the seven colours.
After M. Kirchhoff had ascertained that the bright lines in the spectra
of calcium, chromium, magnesium, iron and nickel coincide with dark
lines in the solar spectrum, he reversed them by sending Drummond’s
light through their respective flames, thus proving that the coloured
flames of these six metals are subject, like the sodium light, to the
law of exchanges.
M. Kirchhoff infers by analogy that the vapours of all these six metals
exist in the luminous atmosphere of the sun, and that they absorb and
change into heat such rays of the continuous light of the incandescent
solar globe as have the same refrangibility with their own, so that the
corresponding dark rayless lines on the solar spectrum are the reverses
of the bright lines in the spectra which these vapours would give were
it not for the brighter light of the sun shining through his luminous
atmosphere.
The dazzling white light of the incandescent body of the sun containing
rays of all refrangibilities would give a continuous spectrum shaded
with all the seven colours, but for his luminous absorbent atmosphere,
which comes like a veil between him and the earth, and crosses his
spectrum with thousands of dark lines, which are the reverses or
negatives of the bright lines in the spectra of the innumerable vapours
it contains, all of which must doubtless be the gases of substances
existing in the solar mass itself and vaporized by his intense heat.
Public-domain text, read in full here on John Shaqi.
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