Advances in Basis Light-front Quantization
arXiv:1411.7748 · doi:10.1007/s00601-015-1003-y
Abstract
Basis Light-front Quantization has been developed as a first-principles nonperturbative approach to quantum field theory. In this article we report our recent progress on the applications to the single electron and the positronium system in QED. We focus on the renormalization procedure in this method.
9 pages, 8 figures, proceeding of the Lightcone 2014 conference (Raleigh, NC, USA, May 26-30, 2014)
References in corpus (7)
- Light-Front Holography: A First Approximation to QCD
- Basis Light-Front Quantization Approach to Positronium
- Electron g-2 in Light-Front Quantization
- Electron in a transverse harmonic cavity
- Non-perturbative quantum time evolution on the light-front
- Generalized parton distributions in a light-front nonperturbative approach
- Non-perturbative Calculation of the Positronium Mass Spectrum in Basis Light-Front Quantization
Cited by in corpus (10)
- Light mesons with one dynamical gluon on the light front
- Nonperturbative light-front Hamiltonian methods
- Simulating Hadronic Physics on NISQ devices using Basis Light-Front Quantization
- Light-Front Field Theory on Current Quantum Computers
- Nucleon spin decomposition with one dynamical gluon
- Transverse structure of electron in momentum space in basis light-front quantization
- Particle distribution in intense fields in a light-front Hamiltonian approach
- Trends and Progress in Nuclear and Hadron Physics: a straight or winding road
- Scattering in strong electromagnetic fields: transverse size effects in tBLFQ
- Nucleon Structure from Basis Light-Front Quantization : Status and Prospects