The Volume Operator plays a crucial role in the definition of the quantum dynamics of Loop Quantum Gravity (LQG). Efficient calculations for dynamical problems of LQG can therefore be performed only if one has sufficient control over the volume spectrum. While closed formulas for the matrix elements are currently available in the literature, these are complicated polynomials in 6j symbols which in turn are given in terms of Racah's formula which is too complicated in order to perform even numerical calculations for the semiclassically important regime of large spins. Hence, so far not even numerically the spectrum could be accessed. In this article we demonstrate that by means of the Elliot -- Biedenharn identity one can get rid of all the ...
We continue the semiclassical analysis of the Loop Quantum Gravity (LQG) volume operator that was st...
We give an efficient method, combining number-theoretic and combinatorial ideas, to exactly compute ...
In this paper, we provide the techniques and proofs for the results presented in our companion paper...
The Volume Operator plays a crucial role in the definition of the quantum dynamics of Loop Quantum G...
The volume operator is an important kinematical quantity in the non-perturbative approach to four-di...
We describe preliminary results of a detailed numerical analysis of the volume operator as formulate...
The volume operator plays a central role in both the kinematics and dynamics of canonical approaches...
The use of numerical methods in loop quantum gravity is still relatively untapped. Numerical methods...
Volume operators measuring the total volume of space in a loop quantum theory of cosmological models...
Abstract To adopt a practical method to calculate the action of geometrical operators on quantum sta...
We explicitly construct and characterize all possible independent loop states in 3+1 dimensional loo...
The formula for the area eigenvalues that was obtained by many authors within the approach known as ...
We summarize the basics of the loop representation of quantum gravity and describe the main aspects ...
The volume operator plays a pivotal role for the quantum dynamics of Loop Quantum Gravity (LQG), bot...
We introduce semiclassical methods into the study of the volume spectrum in loop gravity. The classi...
We continue the semiclassical analysis of the Loop Quantum Gravity (LQG) volume operator that was st...
We give an efficient method, combining number-theoretic and combinatorial ideas, to exactly compute ...
In this paper, we provide the techniques and proofs for the results presented in our companion paper...
The Volume Operator plays a crucial role in the definition of the quantum dynamics of Loop Quantum G...
The volume operator is an important kinematical quantity in the non-perturbative approach to four-di...
We describe preliminary results of a detailed numerical analysis of the volume operator as formulate...
The volume operator plays a central role in both the kinematics and dynamics of canonical approaches...
The use of numerical methods in loop quantum gravity is still relatively untapped. Numerical methods...
Volume operators measuring the total volume of space in a loop quantum theory of cosmological models...
Abstract To adopt a practical method to calculate the action of geometrical operators on quantum sta...
We explicitly construct and characterize all possible independent loop states in 3+1 dimensional loo...
The formula for the area eigenvalues that was obtained by many authors within the approach known as ...
We summarize the basics of the loop representation of quantum gravity and describe the main aspects ...
The volume operator plays a pivotal role for the quantum dynamics of Loop Quantum Gravity (LQG), bot...
We introduce semiclassical methods into the study of the volume spectrum in loop gravity. The classi...
We continue the semiclassical analysis of the Loop Quantum Gravity (LQG) volume operator that was st...
We give an efficient method, combining number-theoretic and combinatorial ideas, to exactly compute ...
In this paper, we provide the techniques and proofs for the results presented in our companion paper...