Operation: Outer Space by Murray Leinster (best short novels of all time TXT) 📖
- Author: Murray Leinster
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There were not many persons present. Three jeeps waited in the semi-darkness, out of the burning sunshine. There were no more than a dozen moon-suited individuals to watch and to perform the test of the Dabney field. Cochrane had scrupulously edited all fore-news of the experiment to give Dabney the credit he had paid for. There were present, then, the party from Earth—Cochrane and Babs and Holden, with the two tame scientists and Bell[Pg 46] the writer—and the only two reporters on the moon. Only news syndicates could stand the expense-account of a field man in Lunar City. And then there were Jones and Dabney and two other figures apparently brought by Dabney.
There was, of course, no sound at all on the moon itself. There was no air to carry it. But from each plastic helmet a six-inch antenna projected straight upward, and the microwaves of suit-talkies made a jumble of slightly metallic sounds in the headphones of each suit.
As soon as Cochrane got out of the jeep's air-lock and was recognized, Dabney said agitatedly:
"Mr. Cochrane! Mr. Cochrane! I have to discuss something with you! It is of the utmost importance! Will you come into the laboratory?"
Cochrane helped Babs to the ground and made his way to the airlock in the dust-heap against the cliff. He went in, with two other space-suited figures who detached themselves from the rest to follow him. Once inside the odorous, cramped laboratory, Dabney opened his face-plate and began to speak before Cochrane was ready to hear him. His companion beamed amiably.
"—and therefore, Mr. Cochrane," Dabney was saying agitatedly, "I insist that measures be taken to protect my scientific reputation! If this test should fail, it will militate against the acceptance of my discovery! I warn you—and I have my friend Mr. Simms here as witness—that I will not be responsible for the operation of apparatus made by a subordinate who does not fully comprehend the theory of my discovery! I will not be involved—"
Cochrane nodded. Dabney, of course, didn't understand the theory of the field he'd bought fame-rights to. But there was no point in bringing that up. Johnny Simms beamed at both of them. He was the swimmer Babs had pointed out in the swimming-pool. His face was completely unlined and placid, like the face of a college undergraduate. He had never worried about anything. He'd never had a care in the world. He merely listened with placid interest.
"I take it," said Cochrane, "that you don't mind the test being made, so long as you don't have to accept responsibility for its failure—and so long as you get the credit for its success if it works. That's right, isn't it?"
"If it fails, I am not responsible!" insisted Dabney stridently. "If it succeeds, it will be because of my discovery."
Cochrane sighed a little. This was a shabby business,[Pg 47] but Dabney would have convinced himself, by now, that he was the genius he wanted people to believe him.
"Before the test," said Cochrane gently, "you make a speech. It will be recorded. You disclaim the crass and vulgar mechanical details and emphasize that you are like Einstein, dealing in theoretic physics only. That you are naturally interested in attempts to use your discovery, but your presence is a sign of your interest but not your responsibility."
"I shall have to think it over—," began Dabney nervously.
"You can say," promised Cochrane, "that if it does not work you will check over what Jones did and tell him why."
"Y-yes," said Dabney hesitantly, "I could do that. But I must think it over first. You will have to delay—"
"If I were you," said Cochrane confidentially, "I would plan a speech to that effect because the test is coming off in five minutes."
He closed his face-plate as Dabney began to protest. He went into the lock. He knew better than to hold anything up while waiting for a neurotic to make a decision. Dabney had all he wanted, now. From this moment on he would be frantic for fear of losing it. But there could be no argument outside the laboratory. In the airlessness, anything anybody said by walkie-talkie could be heard by everybody.
When Dabney and Simms followed out of the lock, Cochrane was helping Jones set up the device that had been prepared for this test. It was really two devices. One was a very flat cone, much like a coolie-hat and hardly larger, with a sort of power-pack of coils and batteries attached. The other was a space-ship's distress-signal rocket, designed to make a twenty-mile streak of red flame in emptiness. Nobody had yet figured out what good a distress signal would do, between Earth and moon, but the idea was soothing. The rocket was four feet long and six inches in diameter. At its nose there was a second coolie-hat cone, with other coils and batteries.
Jones set the separate cone on the ground and packed stones around and under it to brace it. His movements were almost ridiculously deliberate. Bending over, he bent slowly, or the motion would lift his feet off the ground. Straightening up, he straightened slowly, or the upward impetus of his trunk would again lift him beyond contact with solidity. But he braced the flat cone carefully.[Pg 48]
He set the signal-torpedo over that cone. The entire set-up was under six feet tall, and the coolie-hat cones were no more than eighteen inches in diameter. He said flatly:
"I'm all ready."
The hand and arm of a space-suited figure lifted, for attention. Dabney's voice came worriedly from the headphones of every suit:
"I wish it understood," he said in some agitation, "that this first attempted application of my discovery is made with my consent, but that I am not aware of the mechanical details. As a scientist, my work has been in pure science. I have worked for the advancement of human knowledge, but the technological applications of my discovery are not mine. Still—if this device does not work, I will take time from my more important researches to inquire into what part of my discovery has been inadequately understood and applied. It may be that present technology is not qualified to apply my discovery—"
Jones said without emotion—but Cochrane could imagine his poker-faced expression inside his helmet:
"That's right. I consulted Mr. Dabney about the principles, but the apparatus is my doing, I take the responsibility for that!"
Then Cochrane added with pleasant irony:
"Since all this is recorded, Mr. Dabney can enlarge upon his disinterest later. Right now, we can go ahead. Mr. Dabney disavows us unless we are successful. Let us let it go at that." Then he said: "The observatory's set to track?"
A muffled voice said boredly, by short-wave from the observatory up on the crater's rim:
"We're ready. Visual and records, and we've got the timers set to clock the auto-beacon signals as they come in."
The voice was not enthusiastic. Cochrane had had to put up his own money to have the nearside lunar observatory put a low-power telescope to watch the rocket's flight. In theory, this distress-rocket should make a twenty-mile streak of relatively long-burning red sparks. A tiny auto-beacon in its nose was set to send microwave signals at ten-second intervals. On the face of it, it had looked like a rather futile performance.
"Let's go," said Cochrane.
He noted with surprise that his mouth was suddenly[Pg 49] dry. This affair was out of all reason. A producer of television shows should not be the person to discover in an abstruse scientific development the way to reach the stars. A neurotic son-in-law of an advertising tycoon should not be the instrument by which the discovery should come about. A psychiatrist should not be the means of associating Jones—a very junior physicist with no money—and Cochrane and the things Cochrane was prepared to bring about if only this unlikely-looking gadget worked.
"Jones," said Cochrane with a little difficulty, "let's follow an ancient tradition. Let Babs christen the enterprise by throwing the switch."
Jones pointed there in the shadow of the crater-wall, and Babs moved to the switch he indicated. She said absorbedly:
"Five, four, three, two, one—"
She threw the switch. There was a spout of lurid red flame.
The rocket vanished.
It vanished. It did not rise, visibly. It simply went away from where it was, with all the abruptness of a light going out. There was a flurry of the most brilliant imaginable carmine flame. That light remained. But the rocket did not so much rise as disappear.
Cochrane jerked his head up. He was close to the line of the rocket's ascent. He could see a trail of red sparks which stretched to invisibility. It was an extraordinarily thin line. The separate flecks of crimson light which comprised it were distant in space. They were so far from each other that the signal-rocket was a complete failure as a device making a streak of light that should be visible.
The muffled voice in the helmet-phones said blankly:
"Hey! What'd you do to that rocket?"
The others did not move. They seemed stunned. The vanishing of the rocket was no way for a rocket to act. In all expectation, it should have soared skyward with a reasonable velocity, and should have accelerated rather more swiftly from the moon's surface than it would have done from Earth. But it should have remained visible during all its flight. Its trail should have been a thick red line. Instead, the red sparks were so far separated—the trail was so attenuated that it was visible only from a spot near its base. The observatory voice said more blankly still:
"Hey! I've picked up the trail! I can't see it nearby, but it seems to start, thin, about fifty miles up and go on[Pg 50] away from there! That rocket shouldn't ha' gone more than twenty miles! What happened?"
"Watch for the microwave signals," said Jones' voice in Cochrane's headphones.
The voice from the observatory squeaked suddenly. This was not one of the highly-placed astronomers, but part of the mechanical staff who'd been willing to do an unreasonable chore for pay.
"Here's the blip! It's crazy! Nothing can go that fast!"
And then in the phones there came the relayed signal of the auto-beacon in the vanished rocket. The signal-sound was that of a radar pulse, beginning at low pitch and rising three octaves in the tenth of a second. At middle C—the middle of the range of a piano—there was a momentary spurt of extra volume. But in the relayed signal that louder instant had dropped four tones. Cochrane said crisply:
"Jones, what speed would that be?"
"It'd take a slide-rule to figure it," said Jones' voice, very calmly, "but it's faster than anything ever went before."
Cochrane waited for the next beep. It did not come in ten seconds. It was easily fifteen. Even he could figure out what that meant! A signal-source that stretched ten seconds of interval at source to fifteen at reception ...
The voice from the observatory wailed:
"It's crazy! It can't be going like that!"
They waited. Fifteen seconds more. Sixteen. Eighteen. Twenty. The beep sounded. The spurt of sound had dropped a full octave. The signal-rocket, traveling normally, might have attained a maximum velocity of some two thousand feet per second. It was now moving at a speed which was an appreciably large fraction of the speed of light. Which was starkly impossible. It simply happened to be true.
They heard the signal once more. The observatory's multiple-receptor receiver had been stepped up to maximum amplification. The signal was distinct, but very faint indeed. And the rocket was then traveling—so it was later computed—at seven-eighths of the speed of light. Between the flat cone on the front of the distress-torpedo, and the flat cone on the ground, a field of force existed. The field was not on the back surface of the torpedo's cone, but before the front surface. It went back to the moon from there, so all the torpedo and its batteries were in the columnar stressed space. And an amount of rocket-push that should have sent the four-foot torpedo maybe twenty miles during[Pg 51] its period of burning, had actually extended its flight to more than thirty-seven hundred miles before the red sparks were too far separated to be traced any farther, and by then had kicked the torpedo up impossibly close to light-speed.
In a sense, the Dabney field had an effect similar to the invention of railways. The same horsepower moved vastly more weight faster, over steel rails, than it could haul over a rutted dirt road. The same rocket-thrust moved more weight faster in the Dabney field than in normal space. There would be a practical limit
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