32 pages, many figuresInternational audienceInterwiners are the building blocks of spin-network states. The space of intertwiners is the quantization of a classical symplectic manifold introduced by Kapovich and Millson. Here we show that a theorem by Minkowski allows us to interpret generic configurations in this space as bounded convex polyhedra in Euclidean space: a polyhedron is uniquely described by the areas and normals to its faces. We provide a reconstruction of the geometry of the polyhedron: we give formulas for the edge lengths, the volume and the adjacency of its faces. At the quantum level, this correspondence allows us to identify an intertwiner with the state of a quantum polyhedron, thus generalizing the notion of quantum te...
We continue the semiclassical analysis of the Loop Quantum Gravity (LQG) volume operator that was st...
Loop Quantum Gravity defines the quantum states of space geometry as spin networks and describes the...
In loop quantum gravity we now have a clear picture of the quantum geometry of space, thanks in part...
textIn Loop Quantum Gravity, a quantum state of the gravitational field has a semiclassical interpre...
We construct a macroscopic semiclassical state state for a quantum tetrahedron. The expectation valu...
The volume operator plays a pivotal role for the quantum dynamics of Loop Quantum Gravity (LQG), bot...
International audienceWe describe the Lorentzian version of the Kapovitch-Millson phase space for po...
The discrete picture of geometry arising from the loop representation of quantum gravity can be exte...
International audienceQuantum states of geometry in loop quantum gravity are defined as spin network...
We connect Braided Ribbon Networks to the states of loop quantum gravity. Using this connection we p...
21 pagesIn this work we study the Hilbert space space of N-valent SU(2) intertwiners with fixed tota...
27 pages, 12 figures, RevTex4After a brief review of spin networks and their interpretation as wave ...
Quantum polyhedra constructed from angular momentum operators are the building blocks of space in it...
19 pages, 1 figure; v2: corrected typos, section 4 expanded;The state space of Loop Quantum Gravity ...
Within the context of loop quantum gravity there are several operators which measure geometry quanti...
We continue the semiclassical analysis of the Loop Quantum Gravity (LQG) volume operator that was st...
Loop Quantum Gravity defines the quantum states of space geometry as spin networks and describes the...
In loop quantum gravity we now have a clear picture of the quantum geometry of space, thanks in part...
textIn Loop Quantum Gravity, a quantum state of the gravitational field has a semiclassical interpre...
We construct a macroscopic semiclassical state state for a quantum tetrahedron. The expectation valu...
The volume operator plays a pivotal role for the quantum dynamics of Loop Quantum Gravity (LQG), bot...
International audienceWe describe the Lorentzian version of the Kapovitch-Millson phase space for po...
The discrete picture of geometry arising from the loop representation of quantum gravity can be exte...
International audienceQuantum states of geometry in loop quantum gravity are defined as spin network...
We connect Braided Ribbon Networks to the states of loop quantum gravity. Using this connection we p...
21 pagesIn this work we study the Hilbert space space of N-valent SU(2) intertwiners with fixed tota...
27 pages, 12 figures, RevTex4After a brief review of spin networks and their interpretation as wave ...
Quantum polyhedra constructed from angular momentum operators are the building blocks of space in it...
19 pages, 1 figure; v2: corrected typos, section 4 expanded;The state space of Loop Quantum Gravity ...
Within the context of loop quantum gravity there are several operators which measure geometry quanti...
We continue the semiclassical analysis of the Loop Quantum Gravity (LQG) volume operator that was st...
Loop Quantum Gravity defines the quantum states of space geometry as spin networks and describes the...
In loop quantum gravity we now have a clear picture of the quantum geometry of space, thanks in part...