Light-Front Holographic QCD and the Confinement Potential
Description
Light-Front Hamiltonian theory, derived from the quantization of the QCD Lagrangian at fixed light-front time τ=t+z/c, provides a rigorous frame-independent framework for solving nonperturbative QCD. The eigenvalues of the light-front QCD Hamiltonian predict the hadronic mass spectrum, and the corresponding eigensolutions provide the light-front wavefunctions which describe hadron structure. The valence Fock-state wavefunctions of the light-front QCD Hamiltonian satisfy a single-variable relativistic equation of motion, analogous to the nonrelativistic radial Schrödinger equation, with an effective confining potential U which systematically incorporates the effects of higher quark and gluon Fock states. In fact, the potential U has a unique form if one requires that the action for zero quark mass remains conformally invariant. We also show that the holographic mapping of gravity in AdS space to QCD with a specific soft-wall dilaton yields the same light-front Schrödinger equation. Light-front holography also leads to a precise relation between the bound-state amplitudes in the fifth dimension z of AdS space and the boost-invariant light-front wavefunctions describing the internal structure of hadrons in physical space-time. The elastic and transition form factors of the pion and the nucleons are found to be well described in this framework. The predictions of the LF equations of motion include a zero-mass pion in the chiral mq→0 limit, and linear Regge trajectories M2(n,L)∝n+L with the same slope in the radial quantum number n and orbital angular momentum L. The light-front AdS/QCD holographic approach thus gives a frame-independent representation of color-confining dynamics, Regge spectroscopy, and the excitation spectra of relativistic light-quark meson and baryon bound states in QCD in terms of a single mass parameter. We also briefly discuss the implications of the underlying conformal template of QCD for renormalization scale-setting and the implications of light-front quantization for the value of the cosmological constant
Availability note (English)
Available from http://dx.doi.org/10.1016/j.nuclphysbps.2014.04.001Additional details
Identifiers
- DOI
- 10.1016/j.nuclphysbps.2014.04.001;
- arXiv
- arXiv:1308.5251v1;
- PII
- S0920-5632(14)00066-8;
Publishing Information
- Journal Title
- Nuclear Physics. B, Proceedings Supplements
- Journal Volume
- 251-252
- Journal Page Range
- p. 1-9
- ISSN
- 0920-5632
- CODEN
- NPBSE7
Conference
- Title
- Hadronic and particle physics
- Acronym
- International conference on light-cone physics
- Dates
- 10-15 Dec 2012
- Place
- New Delhi (India)
INIS
- Country of Publication
- Netherlands
- Country of Input or Organization
- International Atomic Energy Agency (IAEA)
- INIS RN
- 46125564
- Subject category
- S72: PHYSICS OF ELEMENTARY PARTICLES AND FIELDS;
- Resource subtype / Literary indicator
- Conference
- Descriptors DEI
- COLOR MODEL; COSMOLOGICAL CONSTANT; D QUARKS; EQUATIONS OF MOTION; GLUONS; HAMILTONIANS; LAGRANGIAN FUNCTION; MASS SPECTRA; ORBITAL ANGULAR MOMENTUM; QUANTUM CHROMODYNAMICS; REGGE TRAJECTORIES; RELATIVISTIC RANGE; RENORMALIZATION; SCHROEDINGER EQUATION; U QUARKS; WAVE FUNCTIONS
- Descriptors DEC
- ANGULAR MOMENTUM; BOSONS; COMPOSITE MODELS; DIFFERENTIAL EQUATIONS; ENERGY RANGE; EQUATIONS; FERMIONS; FIELD THEORIES; FUNCTIONS; MATHEMATICAL MODELS; MATHEMATICAL OPERATORS; PARTIAL DIFFERENTIAL EQUATIONS; PARTICLE MODELS; QUANTUM FIELD THEORY; QUANTUM OPERATORS; QUARK MODEL; QUARKS; SPECTRA; WAVE EQUATIONS
Optional Information
- Copyright
- Copyright (c) 2014 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.