The Ultimate WeaponCampbell, John W., Jr. (John Wood)
Science
The Ultimate Weapon
Campbell, John W., Jr. (John Wood)
Science fiction
"Obviously, no. The thing works on pure energy. I'd have to match his
energy to neutralize it. You knew it's an old proposition, that if you
could take a beam of pure, monochromatic light and divide it exactly in
half, and then recombine it in perfect interference, you'd have
annihilation of energy. Cancellation to extinction. The trouble is, you
never do get that. You can't get monochromatic light, because light
can't be monochromatic. That's due to the Heisenberg Uncertainty--my pet
bug-bear. The atom that radiates the light, must be moving. If it isn't,
the emission of the light itself gives it a kick that moves it. Now, no
matter what the quantum _might_ have been, it loses energy in kicking
the atom. That changes the situation instantly, and incidentally the
'color' of the light. Then, since all the radiating atoms won't be
moving alike, etc., the mass of light can't be monochromatic. Therefore
perfect interference is impossible.
"The way that relates to the problem in hand, is that we can't possibly
destroy his energy. We can, as we do in the crumbler stunt, change it.
He can't, I suspect, put too much power behind his crumbler, or he'd
have crumbling going on at home. We get a slight heating from it,
anyway. Into the bargain, his radio was after us, and his neutrons
naturally carried energy. Now, no matter what we do, we've got that to
handle. When we fight his crumbler, we actually add heat-energy to it,
ourselves, and make the heating effect just twice as bad. If we try to
heterodyne his radio--presto--it has twice the heat energy anyway,
though we might reduce it to a frequency that penetrated the ship
instead of all staying in it. But by the proposition, we have to use as
much energy, and in fact, remember the 80% rule. We've got to take it
and like it."
"But," objected McLaurin, "we _don't_ like it."
"Then build ships as big as his, and he'll quit trying to roast you.
Particularly if the inner walls are synthetic plastics. Did you know I
used them in the 'S Doradus' and 'Cepheid'?"
"Yes. Were you thinking of that?"
"No--just luck--and the fact that they're light, strong as steel almost,
and can be manufactured in forms much more quickly. Only the outer hull
is tungsten-beryllium. The advantage in this will be that nearly all the
energy will be absorbed outside, and we'll radiate pretty fast,
particularly as that tungsten-beryllium has a high radiation-factor in
the long heat range."
"What does that mean?"
Public-domain text, read in full here on John Shaqi.
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