I consider the problem of defining canonical coordinates and momenta in pure Yang-Mills theory, under the condition that Gauss' law is identically satisifed. This involves among other things particular boundary conditions for certain dependent variables. These boundary conditions are not postulated a priori, but arise as consistency conditions related to the equations of motion. It is shown that the theory indeed has a canonical structure, provided one uses a special gauge condition, which is a natural generalisation to Yang-Mills theory of the Coulomb gauge condition in electrodynamics. The canonical variables and Hamiltonian are explicitly constructed. Quantisation of the theory is briefly discussed
The elucidation of the gauge principle "is the most pressing problem in current philosophy of physic...
Starting from the temporal gauge Hamiltonian for classical pure Yang-Mills theory with the gauge gro...
It it known that to get the usual Hamiltonian formulation of lattice Yang-Mills theory in the tempor...
Yang-Mills theories in algebraic noncovariant gauges: Canonical quantization and renormalizatio
The covariant canonical analysis for Yang-Mills theory expressed as a BF-like action is performed. W...
A non-Abelian theory of fermions interacting with gauge bosons, the constrained system, is studied. ...
Yang-Mills gauge theories have become an important way in which to describe matter at a fundamental ...
The elucidation of the gauge principle ``is the most pressing problem in current philosophy of physi...
A Canonical Basis m ethod is presented for computing the cut-constructible parts of loop ...
International audienceWe address the Hamiltonian formulation of classical gauge field theories while...
It has been known for some time that there are many inequivalent quantizations possible when the con...
We discuss the canonical quantization of systems formulated on discrete spacetimes. We start by anal...
Sometime ago it was shown that the operatorial approach to classical mechanics, pioneered in the 30'...
The canonical quantization formalism is applied to the Lagrange density of chromodynamics in a gener...
We outline three principles that should guide us in the construction of a theory of canonical quantu...
The elucidation of the gauge principle "is the most pressing problem in current philosophy of physic...
Starting from the temporal gauge Hamiltonian for classical pure Yang-Mills theory with the gauge gro...
It it known that to get the usual Hamiltonian formulation of lattice Yang-Mills theory in the tempor...
Yang-Mills theories in algebraic noncovariant gauges: Canonical quantization and renormalizatio
The covariant canonical analysis for Yang-Mills theory expressed as a BF-like action is performed. W...
A non-Abelian theory of fermions interacting with gauge bosons, the constrained system, is studied. ...
Yang-Mills gauge theories have become an important way in which to describe matter at a fundamental ...
The elucidation of the gauge principle ``is the most pressing problem in current philosophy of physi...
A Canonical Basis m ethod is presented for computing the cut-constructible parts of loop ...
International audienceWe address the Hamiltonian formulation of classical gauge field theories while...
It has been known for some time that there are many inequivalent quantizations possible when the con...
We discuss the canonical quantization of systems formulated on discrete spacetimes. We start by anal...
Sometime ago it was shown that the operatorial approach to classical mechanics, pioneered in the 30'...
The canonical quantization formalism is applied to the Lagrange density of chromodynamics in a gener...
We outline three principles that should guide us in the construction of a theory of canonical quantu...
The elucidation of the gauge principle "is the most pressing problem in current philosophy of physic...
Starting from the temporal gauge Hamiltonian for classical pure Yang-Mills theory with the gauge gro...
It it known that to get the usual Hamiltonian formulation of lattice Yang-Mills theory in the tempor...