June 15, 2017 by Shannon Hall
Astronomers are on the hunt for proof of the multiverse.
The belief that there might be an infinite number of universes is no longer confined to science fiction.Victor De Schwanberg / Science Photo Library/Getty Images
It sounds wild. But the idea that we live in a multiverse — a cosmos where an infinite number of universes exist beside our own — is no longer confined to science fiction. It’s a respectable theory among scientists, so much so that some are on the hunt for proof of a nearby universe.
Now, scientists might be one step closer. A study recently submitted to “Monthly Notices of the Royal Astronomical Society” actually places the multiverse theory on firmer ground. Ruari Mackenzie, a graduate student at England’s University of Durham, took a deeper look at a region in the sky that’s so frigid and so large that most scientists don’t think it can be a statistical fluke. Instead, some astronomers think this so-called “cold spot” is an optical illusion produced by a lack of intervening galaxies. But Mackenzie and his colleagues found that those galaxies are no less dense than anywhere else in the universe, disproving that theory.
Believe it or not, the next reasonable explanation (so long as you don’t buy into the theory that it’s just a statistical fluke) is that the cold spot might be a bruise left after an ancient collision with another universe. There’s no proof — at least not yet. But a forthcoming map of the cold spot might let scientists nail down whether it is truly a footprint of another universe — a result that would turn our understanding of the universe on its head.
CHILLED TO THE BONES
Peer as far out in space and as far back in time as you can and you’ll reach the cosmic microwave background (CMB) — the ancient light that formed just 370,000 years after the Big Bang. Given its age, it’s no surprise that the light might hold secrets about the universe’s fiery birth and answer fundamental questions about where we came from. For this reason, astronomers have long sought to capture this afterglow.
But this isn’t just an observational outlier. Models predict that the cosmos should be uniform across such vast scales. They also predict that just one in 50 universes will produce such a frigid region naturally — a likelihood some astronomers think is too small for comfort.
Instead, many astronomers thought the cold spot might be an optical illusion produced by something in the foreground. Light from the CMB has been traveling for nearly 13.8 billion years through dense regions of galaxy clusters and voids of nearly empty space. These conditions alter its light thanks to a trick of gravity. Just think about launching a rocket from Earth. Gravity pulls on the rocket, slowing it down. Light leaving Earth experiences the same pull, but because it can only travel at the speed of light, it loses energy by stretching in wavelength. This makes the light appear redder and therefore colder. So while a foreground galaxy cluster might make the CMB’s light appear bluer, a foreground void might make it appear redder and colder.
But is there a massive void in front of the infamous cold spot? In 2015, István Szapudi and his colleagues at the University of Hawaii thought they found one. And it was spectacular, spanning 1.8 billion light-years across. But when astronomers couldn’t verify the results, controversy ensued. So Mackenzie and his colleagues obtained data from the Anglo-Australian Telescope in New South Wales, which allowed them to gather data on the distances and locations of more than 7,000 galaxies.
The two observations helped them create a three-dimensional map of galaxies within the potential void. But the map didn’t reveal anything too strange. There was a small void perhaps, but nothing that could explain the cold spot. “That kills, in one stroke, the void hypothesis,” says Tom Shanks at the University of Durham.
But Mackenzie isn’t concerned. “I’m of the opinion that if it’s not a void, which I don’t think it is anymore, it’s probably just a statistical fluctuation,” he says. “It’s not something that should keep people awake at night.”
Still, it leaves open one tantalizing possibility: The cold spot might be evidence of a nearby universe. “The next most standard explanation, I would say, turns out to be the bubble universe collision hypothesis,” Shanks says. “And that gets you into a discussion about the standard model in cosmology — and the fact that it’s weird as hell.”
A NATURAL CONSEQUENCE
For many, the multiverse conjures images of worlds where dinosaurs continue to roam, Nazis won World War II, and your evil twin is wreaking havoc somewhere. And yet, the multiverse isn’t just an accepted theory in modern physics, it’s almost unavoidable.
Take the theory of inflation as an example, which says that in the first split second following the Big Bang, the early universe ballooned outward to be at least a million billion billion times larger than it was. Although the theory is beloved by cosmologists (it fixes several problems with the Big Bang story), it comes with a caveat: Most theories of inflation predict eternal inflation. That means that not only did our universe balloon outward, but an infinite number of other universes did, too.
Ivan Baldry, an astronomer at Liverpool John Moores University in England, who was not involved in the study, says the multiverse is like Occam’s razor, that philosophical idea that the simplest explanation is often the correct one. “We have a huge variety of galaxies and a huge variety of solar systems — it makes sense to have a huge variety of universes,” he says.