Quantum-gravity effects may introduce relevant consequences for the propagation and interaction of high energy cosmic rays particles. Assuming the space-time foamy structure results in an intrinsic uncertainty of energy and momentum of particles, we show how low energy (under GZK) observations can provide strong constraints on the role of the fluctuating space-time structure
A threshold anomaly refers to a theoretically expected energy threshold that is not observed experim...
At Planck scale, spacetime is "foamy" because of quantum fluctuations predicted by quantum gravity. ...
Recent observations on ultra high energy cosmic rays (those cosmic rays with energies greater than $...
The intimate geometry of space-time is expected to suffer stochastic fluctuations as a result of qua...
It is generally expected that quantum gravity affects the structure of space-time by introducing sto...
Quantum gravitational effects may induce stochastic fluctuations in the structure of space-time, to ...
One aspect of the quantum nature of spacetime is its “foaminess ” at very small scales. Many models ...
In this work, I review some aspects concerning the evolution of quantum low-energy fields in a foaml...
High energy cosmic rays allow probing phenomena that are inacessible to accelerators. Observation of...
I discuss some theoretical ideas concerning the representation of quantum gravity as a Lorentz-symme...
International audienceWheeler’s ‘spacetime-foam’1 picture of quantum gravity (QG) suggests spacetime...
Motivated by scenarios of quantum gravity, Planck-suppressed deviations from Lorentz invariance are ...
Context. Strings and other alternative theories describing the quantum properties of space-time sugg...
Contribution à la conférence ICFP 2012, International Conference on New Frontiers in Physics, Kolymb...
One aspect of the quantum nature of spacetime is its “foaminess ” at very small scales. We reassess ...
A threshold anomaly refers to a theoretically expected energy threshold that is not observed experim...
At Planck scale, spacetime is "foamy" because of quantum fluctuations predicted by quantum gravity. ...
Recent observations on ultra high energy cosmic rays (those cosmic rays with energies greater than $...
The intimate geometry of space-time is expected to suffer stochastic fluctuations as a result of qua...
It is generally expected that quantum gravity affects the structure of space-time by introducing sto...
Quantum gravitational effects may induce stochastic fluctuations in the structure of space-time, to ...
One aspect of the quantum nature of spacetime is its “foaminess ” at very small scales. Many models ...
In this work, I review some aspects concerning the evolution of quantum low-energy fields in a foaml...
High energy cosmic rays allow probing phenomena that are inacessible to accelerators. Observation of...
I discuss some theoretical ideas concerning the representation of quantum gravity as a Lorentz-symme...
International audienceWheeler’s ‘spacetime-foam’1 picture of quantum gravity (QG) suggests spacetime...
Motivated by scenarios of quantum gravity, Planck-suppressed deviations from Lorentz invariance are ...
Context. Strings and other alternative theories describing the quantum properties of space-time sugg...
Contribution à la conférence ICFP 2012, International Conference on New Frontiers in Physics, Kolymb...
One aspect of the quantum nature of spacetime is its “foaminess ” at very small scales. We reassess ...
A threshold anomaly refers to a theoretically expected energy threshold that is not observed experim...
At Planck scale, spacetime is "foamy" because of quantum fluctuations predicted by quantum gravity. ...
Recent observations on ultra high energy cosmic rays (those cosmic rays with energies greater than $...