The search for extraterrestrial intelligence has looked for many different signs of alien life, from radio broadcasts to laser flashes, without success.
"Fast radio bursts are exceedingly bright given their short duration and origin at great distances, and we haven't identified a possible natural source with any confidence," said theorist Avi Loeb of the Harvard-Smithsonian Centre for Astrophysics.
"An artificial origin is worth contemplating and checking," said Loeb.
First discovered in 2007, fewer than two dozen signals have been detected by gigantic radio telescopes like the Parkes Observatory in Australia or the Arecibo Observatory in Puerto Rico.
They are inferred to originate from distant galaxies, billions of light-years away.
Researchers examined the feasibility of creating a radio transmitter strong enough for it to be detectable across such immense distances.
They found that, if the transmitter were solar powered, the sunlight falling on an area of a planet twice the size of the Earth would be enough to generate the needed energy.
Researchers also considered whether such a transmitter would be viable from an engineering perspective, or whether the tremendous energies involved would melt any underlying structure.
Again, they found that a water-cooled device twice the size of Earth could withstand the heat.
They argue that the most plausible use of such power is driving interstellar light sails. The amount of power involved would be sufficient to push a payload of a million tons, or about 20 times the largest cruise ships on Earth.
To power a light sail, the transmitter would need to focus a beam on it continuously. Observers on Earth would see a brief flash because the sail and its host planet, star and galaxy are all moving relative to us.
As a result, the beam sweeps across the sky and only points in our direction for a moment.
Repeated appearances of the beam, which were observed but cannot be explained by cataclysmic astrophysical events, might provide important clues about its artificial origin.
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