In loop quantum gravity the discrete nature of quantum geometry acts as a natural regulator for matter theories. Studies of quantum field theory in quantum space–times in spherical symmetry in the canonical approach have shown that the main effect of the quantum geometry is to discretize the equations of matter fields. This raises the possibility that in the case of fermion fields one could confront the usual fermion doubling problem that arises in lattice gauge theories. We suggest, again based on recent results on spherical symmetry, that since the background space–times will generically involve superpositions of states associated with different discretizations the phenomenon may not arise. This opens a possibility of incorporating chiral...
We formulate chiral gauge theories non-perturbatively, using two different cutoffs for the fermions ...
We show that the spherically symmetric isolated horizon can be described in terms of an SU(2) connec...
We investigate up to which extend the kinematic setting of loop quantum gravity can be fit into a di...
AbstractIn loop quantum gravity the discrete nature of quantum geometry acts as a natural regulator ...
In loop quantum gravity the discrete nature of quantum geometry acts as a natural regulator for matt...
AbstractIn loop quantum gravity the discrete nature of quantum geometry acts as a natural regulator ...
The fermion doubling problem has an important impact on quantum gravity, by revealing the tension be...
The fermion propagator is derived in detail from the model of fermion coupled to loop quantum gravit...
The Independent Studies program closed in 2016. This thesis was one of 25 accepted by Library for lo...
In this paper we study the structure of the Hilbert space for the recent noncommutative geometry mod...
AbstractMinimally doubled fermions have been proposed as a cost-effective realization of chiral symm...
A popular approximation in lattice gauge theory is an extrapolation in the number of fermion species...
AbstractWe show that the spherically symmetric isolated horizon can be described in terms of an SU(2...
We show that the spherically symmetric isolated horizon can be described in terms of an SU(2) connec...
We formulate chiral gauge theories non-perturbatively, using two different cutoffs for the fermions ...
We formulate chiral gauge theories non-perturbatively, using two different cutoffs for the fermions ...
We show that the spherically symmetric isolated horizon can be described in terms of an SU(2) connec...
We investigate up to which extend the kinematic setting of loop quantum gravity can be fit into a di...
AbstractIn loop quantum gravity the discrete nature of quantum geometry acts as a natural regulator ...
In loop quantum gravity the discrete nature of quantum geometry acts as a natural regulator for matt...
AbstractIn loop quantum gravity the discrete nature of quantum geometry acts as a natural regulator ...
The fermion doubling problem has an important impact on quantum gravity, by revealing the tension be...
The fermion propagator is derived in detail from the model of fermion coupled to loop quantum gravit...
The Independent Studies program closed in 2016. This thesis was one of 25 accepted by Library for lo...
In this paper we study the structure of the Hilbert space for the recent noncommutative geometry mod...
AbstractMinimally doubled fermions have been proposed as a cost-effective realization of chiral symm...
A popular approximation in lattice gauge theory is an extrapolation in the number of fermion species...
AbstractWe show that the spherically symmetric isolated horizon can be described in terms of an SU(2...
We show that the spherically symmetric isolated horizon can be described in terms of an SU(2) connec...
We formulate chiral gauge theories non-perturbatively, using two different cutoffs for the fermions ...
We formulate chiral gauge theories non-perturbatively, using two different cutoffs for the fermions ...
We show that the spherically symmetric isolated horizon can be described in terms of an SU(2) connec...
We investigate up to which extend the kinematic setting of loop quantum gravity can be fit into a di...