When a nonrelativistic particle interacts with a scalar quantum field, the standard perturbation theory leads to a dependence of the energy of its ground state on an undefined parameter---"momentum cutoff"---due to the ultraviolet divergence. We show that the use of nonasymptotic states of the system results in a calculation scheme in which all observable quantities remain finite and continuously depend on the coupling constant without any additional parameters. It is furthermore demonstrated that the divergence of traditional perturbation series is caused by the energy being a function with a logarithmic singularity for small values of the coupling constant
The Pauli–Villars regularization procedure confirms and sharpens the conclusions reached previously ...
For a large class of quantum mechanical models of matter and radiation we develop an analytic pertur...
The Pauli–Villars regularization procedure confirms and sharpens the conclusions reached previously ...
When a nonrelativistic particle interacts with a scalar quantum field, the standard perturbation the...
It is well known that for a neutral scalar field in scalar interaction with infinitely heavy, fixed ...
In this thesis we investigate a regularized model of quantum electrodynamics in perturbation expansi...
The usual mathematical formalism of quantum field theory is not rigorous because it contains diverge...
Within the framework of the recently proposed Taylor-Lagrange regularization procedure, we reanalyze...
AbstractA certain pattern of divergence of perturbative expansions in quantum field theories, relate...
AbstractA certain pattern of divergence of perturbative expansions in quantum field theories, relate...
Some quantum mechanical potentials, singular at short distances, lead to ultraviolet divergences whe...
A recently proposed normalization condition for the imaginary part of the self-energy of an unstable...
In this paper we analyze different regularization schemes used in calculating the fermion and photon...
A recently proposed normalization condition for the imaginary part of the self-energy of an unstable...
Some of the motivations and basic properties of noncommutative field models are presented. I also co...
The Pauli–Villars regularization procedure confirms and sharpens the conclusions reached previously ...
For a large class of quantum mechanical models of matter and radiation we develop an analytic pertur...
The Pauli–Villars regularization procedure confirms and sharpens the conclusions reached previously ...
When a nonrelativistic particle interacts with a scalar quantum field, the standard perturbation the...
It is well known that for a neutral scalar field in scalar interaction with infinitely heavy, fixed ...
In this thesis we investigate a regularized model of quantum electrodynamics in perturbation expansi...
The usual mathematical formalism of quantum field theory is not rigorous because it contains diverge...
Within the framework of the recently proposed Taylor-Lagrange regularization procedure, we reanalyze...
AbstractA certain pattern of divergence of perturbative expansions in quantum field theories, relate...
AbstractA certain pattern of divergence of perturbative expansions in quantum field theories, relate...
Some quantum mechanical potentials, singular at short distances, lead to ultraviolet divergences whe...
A recently proposed normalization condition for the imaginary part of the self-energy of an unstable...
In this paper we analyze different regularization schemes used in calculating the fermion and photon...
A recently proposed normalization condition for the imaginary part of the self-energy of an unstable...
Some of the motivations and basic properties of noncommutative field models are presented. I also co...
The Pauli–Villars regularization procedure confirms and sharpens the conclusions reached previously ...
For a large class of quantum mechanical models of matter and radiation we develop an analytic pertur...
The Pauli–Villars regularization procedure confirms and sharpens the conclusions reached previously ...