We consider the uncertainty in the arm length of an interferometer due to metric fluctuations from the quantum nature of gravity, proposing a concrete microscopic model of energy fluctuations in holographic degrees of freedom on the surface bounding a causally connected region of spacetime. In our model, fluctuations longitudinal to the beam direction accumulate in the infrared and feature strong long distance correlation in the transverse direction. This leads to a signal that could be observed in a gravitational wave interferometer. We connect the positional uncertainty principle arising from our calculations to the 't Hooft gravitational S-matrix
Spacetime is composed of a fluctuating arrangement of bubbles or loops called spacetime foam, or qua...
There is much recent development towards interferometric measurements of holographic quantum uncerta...
Nearly all theoretical approaches to the unification of quantum mechanics and gravity predict(1-4) t...
We consider the uncertainty in the arm length of an interferometer due to metric fluctuations from t...
We consider the uncertainty in the arm length of an interferometer due to metric fluctuations from t...
Final measurements and analysis are reported from the first-generation Holometer, the first instrume...
Theories of quantum gravity based on the holographic principle predict the existence of quantum fluc...
We model vacuum fluctuations in quantum gravity with a scalar field, characterized by a high occupat...
By analyzing a gedanken experiment designed to measure the distance l between two spatially separate...
Quantum gravity is quite elusive at the experimental level; thus a lot of interest has been raised b...
If spacetime undergoes quantum fluctuations, an electromagnetic wavefront will acquire uncertainties...
International audienceWe investigate possible signatures of quantum gravity which could be tested wi...
The effect of Planck scale quantum geometrical effects on measurements with interferometers is estim...
Using a \emph{gedanken} experiment providing presumably a minimal inaccuracy the uncertainty contrib...
The measurement of minuscule forces and displacements with ever greater precision is inhibited by th...
Spacetime is composed of a fluctuating arrangement of bubbles or loops called spacetime foam, or qua...
There is much recent development towards interferometric measurements of holographic quantum uncerta...
Nearly all theoretical approaches to the unification of quantum mechanics and gravity predict(1-4) t...
We consider the uncertainty in the arm length of an interferometer due to metric fluctuations from t...
We consider the uncertainty in the arm length of an interferometer due to metric fluctuations from t...
Final measurements and analysis are reported from the first-generation Holometer, the first instrume...
Theories of quantum gravity based on the holographic principle predict the existence of quantum fluc...
We model vacuum fluctuations in quantum gravity with a scalar field, characterized by a high occupat...
By analyzing a gedanken experiment designed to measure the distance l between two spatially separate...
Quantum gravity is quite elusive at the experimental level; thus a lot of interest has been raised b...
If spacetime undergoes quantum fluctuations, an electromagnetic wavefront will acquire uncertainties...
International audienceWe investigate possible signatures of quantum gravity which could be tested wi...
The effect of Planck scale quantum geometrical effects on measurements with interferometers is estim...
Using a \emph{gedanken} experiment providing presumably a minimal inaccuracy the uncertainty contrib...
The measurement of minuscule forces and displacements with ever greater precision is inhibited by th...
Spacetime is composed of a fluctuating arrangement of bubbles or loops called spacetime foam, or qua...
There is much recent development towards interferometric measurements of holographic quantum uncerta...
Nearly all theoretical approaches to the unification of quantum mechanics and gravity predict(1-4) t...