Alien encounter? Maybe, but not for 1,500 years
The Whirlpool Galaxy. Image: REUTERS/NASA/Handout YH
Extraterrestrials may one day try and get in touch with us, but after deconstructing the Fermi paradox and pairing it with the mediocrity principle, astronomers say it won’t likely happen for at least 1,500 years.
“We haven’t heard from aliens yet, as space is a big place—but that doesn’t mean no one is out there,” says Evan Solomonides, an undergraduate student at Cornell University who presented his unpublished paper this week with coauthor Yervant Terzian, professor of astronomy, at a meeting of the American Astronomical Society. For Solomonides, this research was inspired by an assignment in the astronomy course, “The Search for Life in the Universe,” taught by Terzian.
“It’s possible to hear any time at all, but it becomes likely we will have heard around 1,500 years from now. Until then, it is possible that we appear to be alone—even if we are not. But if we stop listening or looking, we may miss the signals. So we should keep looking.”
The Fermi paradox says billions of Earth-like planets exist in our galaxy, yet no aliens have contacted or visited us. Thus the paradox: the cosmos teems with possibility. The mediocrity principle–originated by 16th-century mathematician Copernicus–says Earth’s physical attributes are not unique, as natural processes are likely common throughout the cosmos, and therefore aliens won’t discover us for a while.
Hunting for extraterrestrials means sending out signals like television broadcasts, for example. As Earth’s electronic ambassador, TV and radio signals are sent into space as a byproduct of broadcasting.
These signals have been traveling from Earth for 80 years at the speed of light. For aliens receiving these transmissions, they would likely be indecipherable, says Solomonides, so extraterrestrials would need to decode light waves into sounds, then parse 3,000 human languages to grasp the meaning of the message.
Nonetheless, Earth’s broadcast signals have reached every star within about 80 light years from the sun—about 8,531 stars and 3,555 Earthlike planets, as our Milky Way galaxy alone contains 200 billion stars.
“Even our mundane, typical spiral galaxy—not exceptionally large compared to other galaxies—is vast beyond imagination,” says Solomonides. “Those numbers are what make the Fermi Paradox so counterintuitive. We have reached so many stars and planets, surely we should have reached somebody by now, and in turn been reached…this demonstrates why we appear to be alone.”
Combining the equations for the Fermi paradox and the mediocrity principle, the authors suggests Earth might hear from an alien civilization when approximately half of the Milky Way galaxy has been signaled in about 1,500 years. “This is not to say that we must be reached by then or else we are, in fact, alone. We simply claim that it is somewhat unlikely that we will not hear anything before that time,” Solomonides says.
“We are on the third planet around a tediously boring star surrounded by other completely normal stars about two-thirds of the way along one of several arms of a remarkably average spiral galaxy. The mediocrity principle is the idea that because we are not in any special location in the universe, we should not be anything special in the universe.”
Don't miss any update on this topic
Create a free account and access your personalized content collection with our latest publications and analyses.
License and Republishing
World Economic Forum articles may be republished in accordance with the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International Public License, and in accordance with our Terms of Use.
The views expressed in this article are those of the author alone and not the World Economic Forum.
Stay up to date:
Space
The Agenda Weekly
A weekly update of the most important issues driving the global agenda
You can unsubscribe at any time using the link in our emails. For more details, review our privacy policy.