arXiv:1604.07810·v1·Quantum Physics
Bounding quantum gravity inspired decoherence using atom interferometry
Jiří Minář🇬🇧 · Pavel Sekatski🇦🇹 · Nicolas Sangouard🇨🇭
Abstract
Hypothetical models have been proposed in which explicit collapse mechanisms prevent the superposition principle to hold at large scales. In particular, the model introduced by Ellis and co-workers [Phys. Lett. B , 113 (1989)] suggests that quantum gravity might be responsible for the collapse of the wavefunction of massive objects in spatial superpositions. We here consider a recent experiment reporting on interferometry with atoms delocalized over half a meter for timescale of a second [Nature , 530 (2015)] and show that the corresponding data strongly bound quantum gravity induced decoherence and rule it out in the parameter regime considered originally.
Comments: 3 pages