Quantum mechanics and the general theory of relativity are two pillars of modern physics. However, a coherent unified framework of the two theories remains an open problem. Attempts to quantize general relativity have led to many rival models of quantum gravity, which, however, generally lack experimental foundations. We report a quantum optical experimental test of event formalism of quantum fields, a theory that attempts to present a coherent description of quantum fields in exotic spacetimes containing closed timelike curves and ordinary spacetime. We experimentally test a prediction of the theory with the quantum satellite Micius that a pair of time-energy–entangled particles probabilistically decorrelate passing through different regio...
Detecting gravity mediated entanglement can provide evidence that the gravitational field obeys quan...
The electromagnetic and gravitational fields transfer information between physical systems. This wor...
The event formalism is a nonlinear extension of quantum field theory designed to be compatible with ...
Quantum mechanics and the general theory of relativity are two pillars of modern physics. However, a...
Quantum mechanics and the theory of gravity are presently not compatible. A particular question is w...
Space offers exciting opportunities to test the foundations of quantum physics using macroscopic qua...
Models of quantum systems on curved space-times lack sufficient experimental verification. Some spec...
Models of quantum systems on curved space-times lack sufficient experimental verification. Some spec...
All existing quantum-gravity proposals are extremely hard to test in practice. Quantum effects in th...
We discuss effects of loss of coherence in low energy quantum systems causedby or related to gravita...
I discuss some theoretical ideas concerning the representation of quantum gravity as a Lorentz-symme...
What gravitational field is generated by a massive quantum system in a spatial superposition? Despit...
A satisfactory theory of quantum gravity will very likely require modification of our classical perc...
Detecting gravity mediated entanglement can provide evidence that the gravitational field obeys quan...
The electromagnetic and gravitational fields transfer information between physical systems. This wor...
The event formalism is a nonlinear extension of quantum field theory designed to be compatible with ...
Quantum mechanics and the general theory of relativity are two pillars of modern physics. However, a...
Quantum mechanics and the theory of gravity are presently not compatible. A particular question is w...
Space offers exciting opportunities to test the foundations of quantum physics using macroscopic qua...
Models of quantum systems on curved space-times lack sufficient experimental verification. Some spec...
Models of quantum systems on curved space-times lack sufficient experimental verification. Some spec...
All existing quantum-gravity proposals are extremely hard to test in practice. Quantum effects in th...
We discuss effects of loss of coherence in low energy quantum systems causedby or related to gravita...
I discuss some theoretical ideas concerning the representation of quantum gravity as a Lorentz-symme...
What gravitational field is generated by a massive quantum system in a spatial superposition? Despit...
A satisfactory theory of quantum gravity will very likely require modification of our classical perc...
Detecting gravity mediated entanglement can provide evidence that the gravitational field obeys quan...
The electromagnetic and gravitational fields transfer information between physical systems. This wor...
The event formalism is a nonlinear extension of quantum field theory designed to be compatible with ...