AbstractWe adapt the horizon wave-function formalism to describe massive static spherically symmetric sources in a general (1+D)-dimensional space-time, for D>3 and including the D=1 case. We find that the probability PBH that such objects are (quantum) black holes behaves similarly to the probability in the (3+1) framework for D>3. In fact, for D≥3, the probability increases towards unity as the mass grows above the relevant D-dimensional Planck scale mD. At fixed mass, however, PBH decreases with increasing D, so that a particle with mass m≃mD has just about 10% probability to be a black hole in D=5, and smaller for larger D. This result has a potentially strong impact on estimates of black hole production in colliders. In contrast, for D...
We analyze the classical configurations of a bootstrapped Newtonian potential generated by homogeneo...
We employ the recently proposed formalism of the "horizon wave-function" to investigate the emergenc...
The Horizon Quantum Mechanics is an approach that allows one to analyse the gravitational radius of ...
We adapt the horizon wave-function formalism to describe massive static spherically symmetric source...
none4siWe adapt the horizon wave-function formalism to describe massive static spherically symmetric...
AbstractWe adapt the horizon wave-function formalism to describe massive static spherically symmetri...
We investigate black hole production in $$p\,p$$ collisions at the Large Hadron Collider by employin...
A localized particle in Quantum Mechanics is described by a wave packet in position space, regardles...
none4siWe employ the recently proposed formalism of the "horizon wave-function" to investigate the e...
Quantum physics lends a view of space-time geometry as an emergent structure that shows classical fe...
open3noWe analyze the classical configurations of a bootstrapped Newtonian potential generated by ho...
A localized particle in Quantum Mechanics is described by a wave packet in position space, regardles...
open2siA localized particle in Quantum Mechanics is described by a wave packet in position space, re...
We analyze the classical configurations of a bootstrapped Newtonian potential generated by homogeneo...
A localized particle in Quantum Mechanics is described by a wave packet in position space, regardles...
We analyze the classical configurations of a bootstrapped Newtonian potential generated by homogeneo...
We employ the recently proposed formalism of the "horizon wave-function" to investigate the emergenc...
The Horizon Quantum Mechanics is an approach that allows one to analyse the gravitational radius of ...
We adapt the horizon wave-function formalism to describe massive static spherically symmetric source...
none4siWe adapt the horizon wave-function formalism to describe massive static spherically symmetric...
AbstractWe adapt the horizon wave-function formalism to describe massive static spherically symmetri...
We investigate black hole production in $$p\,p$$ collisions at the Large Hadron Collider by employin...
A localized particle in Quantum Mechanics is described by a wave packet in position space, regardles...
none4siWe employ the recently proposed formalism of the "horizon wave-function" to investigate the e...
Quantum physics lends a view of space-time geometry as an emergent structure that shows classical fe...
open3noWe analyze the classical configurations of a bootstrapped Newtonian potential generated by ho...
A localized particle in Quantum Mechanics is described by a wave packet in position space, regardles...
open2siA localized particle in Quantum Mechanics is described by a wave packet in position space, re...
We analyze the classical configurations of a bootstrapped Newtonian potential generated by homogeneo...
A localized particle in Quantum Mechanics is described by a wave packet in position space, regardles...
We analyze the classical configurations of a bootstrapped Newtonian potential generated by homogeneo...
We employ the recently proposed formalism of the "horizon wave-function" to investigate the emergenc...
The Horizon Quantum Mechanics is an approach that allows one to analyse the gravitational radius of ...