But, indeed, the elastic solid theory of the ether has failed to give a
consistent explanation of some of the most important points in
observational optics; and, in spite of the exalted position which it has
held, it can now hardly be regarded as representing a physical reality.
The famous researches of Hertz have established upon a secure experimental
basis the hypothesis of Maxwell that light is an electro-magnetic
phenomenon. Such electrical radiations as can be produced by suitable
instruments are found to behave in exactly the same manner as those to
which light is due. They travel through space with the same speed; they
can be reflected, refracted, polarised, and made to exhibit interference
effects. No fact in physics can be much more firmly established than that
of the essential identity of light and electricity. It follows then that
the displacements of the ether which constitute light-waves are not
necessarily of the same gross mechanical nature as those which we see on
the surface of water, or which occur in the air when sound is transmitted
through it. The displacements which the ether undergoes are not
mechanical--primarily at all events--but electrical. Every one knows what
a simple mechanical displacement is. If we push aside the bob of a
suspended pendulum, that is a mechanical displacement. But if we electrify
a stick of sealing wax by rubbing it with flannel, the surrounding ether
undergoes electric displacement, and no one understands what electric
displacement really is. Ultimately, no doubt, it will turn out to be of a
mechanical nature, but it is almost certainly not a simple bodily
distortion such as is caused, for example, when one presses a jelly with
the finger.
Since, then, it is no longer necessary to assume that the exceedingly rare
and subtile ether is a jelly-like solid in order to account for the manner
in which it transmits light, one of the most serious difficulties in the
way of its acceptance is removed. It is true that nothing is definitely
known concerning the mechanism which takes the place of the simple
transverse vibrations formerly postulated, but every one will admit that
it is far easier to believe in what we know nothing about than in what we
know to be impossible.
All scientific men are in fact agreed in recognising the real and genuine
existence throughout space of an ether capable, among other things, of
transmitting at the speed of 186,000 miles per second disturbances which,
whatever their precise nature, are of the kind which mathematicians are
accustomed to call waves. How an ether wave is constituted will probably
be known when we have found out exactly what electricity is: and that may
be never.
Public-domain text, read in full here on John Shaqi.
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