We show that the LHC will be able to differentiate between a four-dimensional model with quantum gravity at not, vert, similar1 TeV where the (massless) graviton becomes strongly coupled to standard model particles at 1 TeV and brane world type models with a large extra-dimensional volume and massive Kaluza-Klein gravitons. We estimate that the 14 TeV LHC could put a limit of the order of not, vert, similar5 TeV on the four-dimensional Planck mass in a model independent way
The Standard Model of fundamental particles and their interactions is one of the most successful the...
With one extra dimension, current high precision electroweak data constrain the masses of the first ...
Although they do not address the hierarchy problem, models with Universal Extra Di-mensions have att...
We show that the LHC will be able to differentiate between a four-dimensional model with quantum gra...
We show that the LHC will be able to differentiate between a four-dimensional model with quantum gra...
We study the production of massless gravitons at the LHC and compare our results to those obtained i...
The Standard Model (SM) of particle physics does not incorporate gravity. In addition, it suffers fr...
We describe a model in which the fundamental scale M, of the theory which unifies gravity and quantu...
AbstractWe describe a model in which the fundamental scale M⋆ of the theory which unifies gravity an...
Abstract We study the phenomenology of a massive graviton G with non-universal couplings to the Stan...
Abstract We study the collider phenomenology of non minimal universal extra dimensional (nmUED) mode...
In models of universal extra dimensions, gravity and all standard model fields propagate in the extr...
We explore the phenomenology associated with the recently proposed localized gravity model of Randal...
The Standard Model of fundamental particles and their interactions is one of the most successful the...
Astrophysical bounds severely limit the possibility of observing collider signals of gravity with le...
The Standard Model of fundamental particles and their interactions is one of the most successful the...
With one extra dimension, current high precision electroweak data constrain the masses of the first ...
Although they do not address the hierarchy problem, models with Universal Extra Di-mensions have att...
We show that the LHC will be able to differentiate between a four-dimensional model with quantum gra...
We show that the LHC will be able to differentiate between a four-dimensional model with quantum gra...
We study the production of massless gravitons at the LHC and compare our results to those obtained i...
The Standard Model (SM) of particle physics does not incorporate gravity. In addition, it suffers fr...
We describe a model in which the fundamental scale M, of the theory which unifies gravity and quantu...
AbstractWe describe a model in which the fundamental scale M⋆ of the theory which unifies gravity an...
Abstract We study the phenomenology of a massive graviton G with non-universal couplings to the Stan...
Abstract We study the collider phenomenology of non minimal universal extra dimensional (nmUED) mode...
In models of universal extra dimensions, gravity and all standard model fields propagate in the extr...
We explore the phenomenology associated with the recently proposed localized gravity model of Randal...
The Standard Model of fundamental particles and their interactions is one of the most successful the...
Astrophysical bounds severely limit the possibility of observing collider signals of gravity with le...
The Standard Model of fundamental particles and their interactions is one of the most successful the...
With one extra dimension, current high precision electroweak data constrain the masses of the first ...
Although they do not address the hierarchy problem, models with Universal Extra Di-mensions have att...