AbstractBasis Light-front Quantization has been proposed as a nonperturbative framework for solving quantum field theory. We apply this approach to Quantum Electrodynamics and explicitly solve for the light-front wave function of a physical electron. Based on the resulting light-front wave function, we evaluate the electron anomalous magnetic moment. Nonperturbative mass renormalization is performed. Upon extrapolation to the infinite basis limit our numerical results agree with the Schwinger result obtained in perturbation theory to an accuracy of 0.06%
Hamiltonian light-front quantum field theory provides a framework for calculating both static and dy...
In this thesis, we propose a set of techniques to study the non-perturbative behavior of quantum fie...
The light-front quantization of gauge theories in light-cone gauge provides a frame-independent wave...
Basis Light-front Quantization has been proposed as a nonperturbative framework for solving quantum ...
AbstractBasis Light-front Quantization has been proposed as a nonperturbative framework for solving ...
Basis Light-front Quantization has been proposed as a nonperturbative framework for solving quantum ...
We apply the Basis Light-Front Quantization (BLFQ) approach to the Hamiltonian field theory of Quant...
Hamiltonian light-front theory has been proposed as a promising method for solving bound states prob...
Hamiltonian light-front quantum field theory provides a framework for calculating both static and dy...
We employ Hamiltonian light-front quantum field theory in a basis function approach to solve the non...
Hamiltonian light-front quantum field theory provides a framework for calculating both static and dy...
This paper introduces “time-dependent basis light-front quantization”, which is a covariant, nonpert...
Light-front wavefunctions provide a frame-independent representation of hadrons in terms of their ph...
A systematic formalism for quantum electrodynamics in a classical uniform magnetic field is discusse...
Light-front wavefunctions provide a frame-independent representation of hadrons in terms of their ph...
Hamiltonian light-front quantum field theory provides a framework for calculating both static and dy...
In this thesis, we propose a set of techniques to study the non-perturbative behavior of quantum fie...
The light-front quantization of gauge theories in light-cone gauge provides a frame-independent wave...
Basis Light-front Quantization has been proposed as a nonperturbative framework for solving quantum ...
AbstractBasis Light-front Quantization has been proposed as a nonperturbative framework for solving ...
Basis Light-front Quantization has been proposed as a nonperturbative framework for solving quantum ...
We apply the Basis Light-Front Quantization (BLFQ) approach to the Hamiltonian field theory of Quant...
Hamiltonian light-front theory has been proposed as a promising method for solving bound states prob...
Hamiltonian light-front quantum field theory provides a framework for calculating both static and dy...
We employ Hamiltonian light-front quantum field theory in a basis function approach to solve the non...
Hamiltonian light-front quantum field theory provides a framework for calculating both static and dy...
This paper introduces “time-dependent basis light-front quantization”, which is a covariant, nonpert...
Light-front wavefunctions provide a frame-independent representation of hadrons in terms of their ph...
A systematic formalism for quantum electrodynamics in a classical uniform magnetic field is discusse...
Light-front wavefunctions provide a frame-independent representation of hadrons in terms of their ph...
Hamiltonian light-front quantum field theory provides a framework for calculating both static and dy...
In this thesis, we propose a set of techniques to study the non-perturbative behavior of quantum fie...
The light-front quantization of gauge theories in light-cone gauge provides a frame-independent wave...