We propose an experiment to test the effects of gravity and acceleration on quantum entanglement in space-based setups. We show that the entanglement between excitations of two Bose–Einstein condensates is degraded after one of them undergoes a change in the gravitational field strength. This prediction can be tested if the condensates are initially entangled in two separate satellites while being in the same orbit and then one of them moves to a different orbit. We show that the effect is observable in a typical orbital manoeuvre of nanosatellites like CanX4 and CanX5.15 page(s
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...
Models of quantum systems on curved space-times lack sufficient experimental verification. Some spec...
We propose an experiment to test the effects of gravity and acceleration on quantum entanglement in ...
We propose an experiment to test the effects of gravity and acceleration on quantum entanglement in ...
We propose an experiment to test the effects of gravity and acceleration on quantum entanglement in ...
We propose an experiment to test the effects of gravity and acceleration on quantum entanglement in ...
All existing quantum-gravity proposals are extremely hard to test in practice. Quantum effects in th...
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...
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...
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...
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...
Models of quantum systems on curved space-times lack sufficient experimental verification. Some spec...
We propose an experiment to test the effects of gravity and acceleration on quantum entanglement in ...
We propose an experiment to test the effects of gravity and acceleration on quantum entanglement in ...
We propose an experiment to test the effects of gravity and acceleration on quantum entanglement in ...
We propose an experiment to test the effects of gravity and acceleration on quantum entanglement in ...
All existing quantum-gravity proposals are extremely hard to test in practice. Quantum effects in th...
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...
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...
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...
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...
Models of quantum systems on curved space-times lack sufficient experimental verification. Some spec...