In her recent work, Dittrich generalized Rovelli's idea of partial observables to construct Dirac observables for constrained systems to the general case of an arbitrary first class constraint algebra with structure functions rather than structure constants. Here we use this framework and propose a new way for how to implement explicitly a reduced phase space quantization of a given system, at least in principle, without the need to compute the gauge equivalence classes. The degree of practicality of this programme depends on the choice of the partial observables involved. The (multi-fingered) time evolution was shown to correspond to an automorphism on the set of Dirac observables so generated and interesting representations of the latter ...
For systems possessing only first-class constraints, we rigorously prove that the secondary constrai...
For systems possessing only first-class constraints, we rigorously prove that the secondary constrai...
We perform a canonical, reduced phase space quantisation of General Relativity by Loop Quantum Gravi...
In her recent work, Dittrich generalized Rovelli's idea of partial observables to construct Dirac ob...
In this work we will consider the concepts of partial and complete observables for canonical general...
In this work we will consider the concepts of partial and complete observables for canonical general...
In this work we will consider the concepts of partial and complete observables for canonical general...
A canonical transformation is performed on the phase space of a number of homogeneous cosmologies to...
We will pick up the concepts of partial and complete observables introduced by Rovelli in Conception...
In a classical Hamiltonian theory with second class constraints the phase space functions on the con...
We give a brief introduction to Dirac observables and review the general construction of such Dirac ...
We give a brief introduction to Dirac observables and review the general construction of such Dirac ...
We give a brief introduction to Dirac observables and review the general construction of such Dirac ...
We rederive the results of our companion paper, for matching spacetime and internal signa-ture, by a...
In order to test the canonical quantization programme for general relativity we introduce a reduced ...
For systems possessing only first-class constraints, we rigorously prove that the secondary constrai...
For systems possessing only first-class constraints, we rigorously prove that the secondary constrai...
We perform a canonical, reduced phase space quantisation of General Relativity by Loop Quantum Gravi...
In her recent work, Dittrich generalized Rovelli's idea of partial observables to construct Dirac ob...
In this work we will consider the concepts of partial and complete observables for canonical general...
In this work we will consider the concepts of partial and complete observables for canonical general...
In this work we will consider the concepts of partial and complete observables for canonical general...
A canonical transformation is performed on the phase space of a number of homogeneous cosmologies to...
We will pick up the concepts of partial and complete observables introduced by Rovelli in Conception...
In a classical Hamiltonian theory with second class constraints the phase space functions on the con...
We give a brief introduction to Dirac observables and review the general construction of such Dirac ...
We give a brief introduction to Dirac observables and review the general construction of such Dirac ...
We give a brief introduction to Dirac observables and review the general construction of such Dirac ...
We rederive the results of our companion paper, for matching spacetime and internal signa-ture, by a...
In order to test the canonical quantization programme for general relativity we introduce a reduced ...
For systems possessing only first-class constraints, we rigorously prove that the secondary constrai...
For systems possessing only first-class constraints, we rigorously prove that the secondary constrai...
We perform a canonical, reduced phase space quantisation of General Relativity by Loop Quantum Gravi...