Hertzian Wave Wireless TelegraphyFleming, J. A. (John Ambrose), Sir
Science
Hertzian Wave Wireless Telegraphy
Fleming, J. A. (John Ambrose), Sir
Electric waves; Telegraph, Wireless
above, there are electrical changes in the ground beneath. This view
is confirmed by the well-known fact that the achievement of Hertzian
wave telegraphy is much dependent on the nature of the surface over
which it is conducted, and can be carried on more easily over good
conducting material, like sea water, than over badly conducting dry
land.
[Illustration: FIG. 7.--SUCCESSIVE STAGES IN THE PRODUCTION OF A
SEMI-LOOP OF ELECTRIC STRAIN BY A MARCONI AERIAL RADIATOR.]
The matter may be viewed, however, from another standpoint. Good
conductors are opaque to Hertzian waves; in other words, are
non-absorptive. The energy of the electric wave is not so rapidly
absorbed when it glides over a sea surface as when it is passing over
a surface which is an indifferent conductor, like dry land. In fact,
it is possible by the improvement of the signals to detect a heavy
fall of rain in the space between two stations separated only by dry
land. It is, however, clear that on the electronic theory the
progression of the lines of electric strain can only take place if the
surface over which they move is a fairly good conductor, unless these
lines of strain form completely closed loops. Hence we may sum up by
saying that there are three set of phenomena to which we must pay
attention in formulating any complete theory of the aerial. The first
is the operation taking place in the vertical wire, which is described
by saying that electrical oscillations or vibratory movements of
electrons are taking place in it, and, on our adopted theory, it may
be said to consist in a longitudinal vibration of electrons of such a
nature that we may appropriately call the aerial an ether organ-pipe.
Then in the next place, we have the distribution and movement of the
lines of electric strain and magnetic flux in the space outside the
wire, constituting the electric wave; and lastly, there are the
electrical changes in the conductor over which the wave travels, which
is the earth or water surrounding the aerial. In subsequently dealing
with the details of transmitting arrangements, attention will be
directed to the necessity for what telegraphists call a "good earth"
in connection with Hertzian wave telegraphy. This only means that
there must be a perfectly free egress and ingress for the electrons
leaving or entering the aerial, so that nothing hinders their access
to the conducting surface over which the wave travels. There must be
nothing to stop or throttle the rush of electrons into or out of the
aerial wire, or else the lines of strain cannot be detached and and
travel away.
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