An intriguing new study argues that current detection methods might be far, far more difficult than they have to be. Share on Facebook (opens in a new window) Share on X (opens in a new window) Share ...
Physicists have proposed a way to extract the internal quantum states of electron wave packets by analyzing how those packets ...
Scientists confirm atom momentum entanglement for the first time, a mass-based quantum leap that could bring gravity and ...
Quantum mechanics tells us that a particle can never be perfectly still. But how precisely can it be oriented? A research ...
A collaborative effort between researchers at multiple institutes in Europe achieved a global first ...
Quantum mechanics tells us that a particle can never be perfectly still. But how precisely can it be oriented? A research team at the University of ...
Could this “spooky action at a distance” lead us one step closer to the ever-elusive Unified Theory of Everything?
A cloud of helium atoms split, scattered and fell under gravity, yet still behaved as if its parts were linked. That is the ...
A new experiment with momentum-entangled helium atoms could help unite quantum mechanics and general relativity.
Researchers cool a levitated silica nanorotor to its librational quantum ground state in two rotational degrees of freedom ...