Light Science for Leisure Hours: A series of familiar essays on scientific subjects, natural phenomena, &c.Proctor, Richard A. (Richard Anthony)
Science
Light Science for Leisure Hours: A series of familiar essays on scientific subjects, natural phenomena, &c.
Proctor, Richard A. (Richard Anthony)
Science
of doubt as to the real nature of the object which is the source of
light.
Secondly, when an electric spark flashes through any vapour, its light
gives a spectrum which indicates the nature, not only of the vapour
through which the spark has passed, but of the substances between
which the spark has travelled. Thus, if we cause an electric flash to
pass between iron points through common air, we see in the spectrum
the numerous bright lines which form the spectrum of iron, and in
addition we see the bright lines belonging to the gases which form our
atmosphere.
Both the considerations above discussed are of the utmost importance
in studying the subject of the auroral light as analysed by the
spectroscope, because there are many difficulties in forming a
general opinion as to the nature of the auroral light, while there
are circumstances which would lead us to anticipate that the light is
electric.
I notice also in passing that we owe to the Swedish physicist Ångström
a large share of the researches on which the above results respecting
the spectrum of the electric spark are founded. The reader will
presently see why I have brought Ångström’s name prominently forward in
connection with the interesting branch of spectroscopic analysis just
referred to. If the discovery we are approaching had been effected by a
tyro in the use of the spectroscope, doubts might very reasonably have
been entertained respecting the exactness of the observations on which
the discovery rests.
It was suggested many years ago, long indeed before the true powers of
spectroscopic analysis had been revealed, that perhaps if the light
of the aurora were analysed by the prism, evidence could be obtained
of its electric nature. The eminent meteorologist Dové remarked, for
instance, that ‘the peculiarities presented by the electric light
are so marked that it appears easy to decide definitely by prismatic
analysis whether the light of the aurora is or is not electric.’
Singularly enough, however, the first proof that the auroral light
is of an electric nature was derived from a very different mode of
inquiry. Dr. Robinson, of Armagh, discovered in 1858 (a year before
Kirchhoff’s recognition of the powers of spectroscopic analysis) that
the light of the aurora possesses in a peculiar degree a property
termed fluorescence, which is a recognised and characteristic property
of the light produced by electrical discharges. ‘These effects,’ he
remarks of the appearances presented by the auroral light under the
tests he applied, ‘were so strong in relation to the actual intensity
of the light, that they appear to afford an additional evidence of the
electric origin of the phenomenon.’
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