We develop and apply methods for solving non-perturbative quantum field theories in the Hamiltonian formalism. The current work is a first step towards an ab initio approach to QCD bound-state problems. In particular, we investigate heavy quarkonium within the basis light-front quantization approach. We implement a phenomenological confinement from the Light-Front Holographic QCD and a theoretically derived one-gluon exchange effective interaction. We adopt the holographic light-front wavefunctions as our basis and solve the bound-state problem by diagonalizing the Hamiltonian matrix. We obtain the mass spectrum for charmonium and bottomonium. We also ...
Ab initio no core methods have become major tools for understanding the properties of light nuclei b...
This dissertation contains two completely independent parts. In Part 1, I investigate effective fiel...
We extend a systematic renormalization procedure for quantum field theory to include particle masses...
We develop and apply a relativistic and non-perturbative approach to bound states and their properti...
We develop and apply methods for solving non-perturbative quantum field theories in the ...
In this thesis, we propose a set of techniques to study the non-perturbative behavior of quantum fie...
The book is a self-contained introduction to perturbative and nonperturbative Quantum chromodynamics...
We report on the first non-perturbative calculation of the scalar Yukawa model in the single-nucleon...
The goal of this thesis is to present some novel applications of the light-front quantization formal...
AbstractWe propose a new method for the nonperturbative solution of quantum field theories and illus...
Hamiltonian light-front quantum field theory constitutes a framework for the non-perturbative soluti...
The non-relativistic QCD theory developed by the NRQCD collaboration is employed in simulations repr...
The accurate calculation of atomic spectra, including radiative corrections, is one of the rather ch...
In this thesis we build a model that can be used to describe baryon dynamics, and in particular we l...
Since the discovery of strongly interacting constituents of nuclei nearly 60 years ago, there has be...
Ab initio no core methods have become major tools for understanding the properties of light nuclei b...
This dissertation contains two completely independent parts. In Part 1, I investigate effective fiel...
We extend a systematic renormalization procedure for quantum field theory to include particle masses...
We develop and apply a relativistic and non-perturbative approach to bound states and their properti...
We develop and apply methods for solving non-perturbative quantum field theories in the ...
In this thesis, we propose a set of techniques to study the non-perturbative behavior of quantum fie...
The book is a self-contained introduction to perturbative and nonperturbative Quantum chromodynamics...
We report on the first non-perturbative calculation of the scalar Yukawa model in the single-nucleon...
The goal of this thesis is to present some novel applications of the light-front quantization formal...
AbstractWe propose a new method for the nonperturbative solution of quantum field theories and illus...
Hamiltonian light-front quantum field theory constitutes a framework for the non-perturbative soluti...
The non-relativistic QCD theory developed by the NRQCD collaboration is employed in simulations repr...
The accurate calculation of atomic spectra, including radiative corrections, is one of the rather ch...
In this thesis we build a model that can be used to describe baryon dynamics, and in particular we l...
Since the discovery of strongly interacting constituents of nuclei nearly 60 years ago, there has be...
Ab initio no core methods have become major tools for understanding the properties of light nuclei b...
This dissertation contains two completely independent parts. In Part 1, I investigate effective fiel...
We extend a systematic renormalization procedure for quantum field theory to include particle masses...