We provide a suitable theoretical foundation for the notion of the quantum coherent state which describes the electrostatic field due to a static external macroscopic charge distribution introduced by the author in 1998 and use it to rederive the formulae obtained in 1998 for the inner product of a pair of such states. (We also correct an incorrect factor of 4pi in some of those formulae.) Contrary to what one might expect, this inner product is usually non-zero whenever the total charges of the two charge distributions are equal, even if the charge distributions themselves are different. We actually display two different frameworks that lead to the same inner-product formulae, in the second of which Gauss’s law only holds in expectation va...
The quantum Gauss Law as an interacting field equation is a prominent feature of QED with eminent im...
We present a covariant quantum formalism for scalar particles based on an enlarged Hilbert space. Th...
Starting from the fact that electrically charged particles are massive, we derive a criterion which ...
We present a short account of our work to provide quantum electrodynamics with a 'product picture'. ...
In the canonical approach to Lorentzian quantum general relativity in four spacetime dimensions an i...
The lattice model of scalar quantum electrodynamics (Maxwell field coupled to a complex scalar field...
We study statistical properties of states of massive quantized charged Dirac and Klein-Gordon fields...
Talk given at the International Workshop on QCD Green's Functions, Confinement and Phenomenology, Se...
To make sense of quantum field theory in an arbitrary (globally hyperbolic) curved space–time, the t...
To make sense of quantum field theory in an arbitrary (globally hyperbolic) curved spacetime, the th...
A C*-algebra containing the CCR and CAR algebras as its subalgebras and naturally described as the s...
The electromagnetic field inside a spherical cavity of large radius R is considered in the presence ...
First, we will show how the notion of clothing in quantum field theory (QFT), put forward by Greenbe...
Abstract We argue that the ground state of a field theory, in the presence of charged particles, bec...
4 pages, latex, needs sprocl.styThis talk reports on work aimed at improving our understanding of ch...
The quantum Gauss Law as an interacting field equation is a prominent feature of QED with eminent im...
We present a covariant quantum formalism for scalar particles based on an enlarged Hilbert space. Th...
Starting from the fact that electrically charged particles are massive, we derive a criterion which ...
We present a short account of our work to provide quantum electrodynamics with a 'product picture'. ...
In the canonical approach to Lorentzian quantum general relativity in four spacetime dimensions an i...
The lattice model of scalar quantum electrodynamics (Maxwell field coupled to a complex scalar field...
We study statistical properties of states of massive quantized charged Dirac and Klein-Gordon fields...
Talk given at the International Workshop on QCD Green's Functions, Confinement and Phenomenology, Se...
To make sense of quantum field theory in an arbitrary (globally hyperbolic) curved space–time, the t...
To make sense of quantum field theory in an arbitrary (globally hyperbolic) curved spacetime, the th...
A C*-algebra containing the CCR and CAR algebras as its subalgebras and naturally described as the s...
The electromagnetic field inside a spherical cavity of large radius R is considered in the presence ...
First, we will show how the notion of clothing in quantum field theory (QFT), put forward by Greenbe...
Abstract We argue that the ground state of a field theory, in the presence of charged particles, bec...
4 pages, latex, needs sprocl.styThis talk reports on work aimed at improving our understanding of ch...
The quantum Gauss Law as an interacting field equation is a prominent feature of QED with eminent im...
We present a covariant quantum formalism for scalar particles based on an enlarged Hilbert space. Th...
Starting from the fact that electrically charged particles are massive, we derive a criterion which ...