Entanglement is a unique type of interaction. Multiple particles are in a single quantum state, and any measurement of one influences the other instantaneously, even if they are at opposite sides of the universe. Einstein didn’t like this and called it “spooky action at a distance”. He believed that some hidden classical effect simply made it look like quantum entanglement.
But entanglement has been proven time and time again. Researchers have been trying to find classical explanations for the effect but have failed to do so. These approaches are the so-called “loopholes” of Bell’s theorem, which states that no classical physics theorem can reproduce all the effects of quantum mechanics. Researchers at the Massachusetts Institue of Technology (MIT) decided to look for loopholes not in labs but in space.
Based on this experiment, the chance that quantum entanglement is not what it seems is of the order of 100 billion billions, so incredibly small. But the team think they can go smaller. By using the cosmic microwave background, the so-called light echo of the Big Bang, they could go all the way to 13.7 billion years ago.
“It is fun to think about new types of experiments we can design in the future, but for now, we are very pleased that we were able to address this particular loophole so dramatically,” co-author David Kaiser, also from MIT, added. “Our experiment with quasars puts extremely tight constraints on various alternatives to quantum mechanics. As strange as quantum mechanics may seem, it continues to match every experimental test we can devise.”
It’s not just astronomy. Bell’s theorem has been tested in a number of curious ways. Last November, scientists used 100,000 gamers to prove that Einstein was wrong about it.