arXiv · 1610.06796
Amplified transduction of Planck-scale effects using quantum optics
Abstract
The unification of quantum mechanics and gravity remains as one of the primary challenges of present-day physics. Quantum-gravity-inspired phenomenological models offer a window to explore potential aspects of quantum gravity including qualitatively new behaviour that can be experimentally tested. One such phenomenological model is the generalized uncertainty principle (GUP), which predicts a modified Heisenberg uncertainty relation and a deformed canonical commutator. It was recently shown that optomechanical systems offer significant promise to put stringent experimental bounds on such models. In this paper, we introduce a scheme to increase the sensitivity of these experiments with an extended sequence of pulsed optomechanical interactions. We also analyze the effects of optical phase noise and optical loss and present a strategy to mitigate such deleterious effects.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Pasquale Bosso, Saurya Das, Igor Pikovski, Michael R. Vanner. 2017-08-24. Amplified transduction of Planck-scale effects using quantum optics. https://doi.org/10.1103/physreva.96.023849
Cite the original work for its findings. Save a collection to share your selection of sources.