Meson/Baryon/Tetraquark Supersymmetry from Superconformal Algebra and Light-Front Holography
arXiv:1606.04638 · doi:10.1142/S0217751X16300295
Abstract
Superconformal algebra leads to remarkable connections between the masses of mesons and baryons of the same parity -- supersymmetric relations between the bosonic and fermionic bound states of QCD. Supercharges connect the mesonic eigenstates to their baryonic superpartners, where the mesons have internal angular momentum one unit higher than the baryons. We also predict the existence of tetraquarks which are degenerate in mass with baryons with the same angular momentum. An effective supersymmetric light-front Hamiltonian for hadrons composed of light quarks can be constructed by embedding superconformal quantum mechanics into AdS space. The breaking of conformal symmetry determines a unique quark-confining light-front potential for light hadrons including spin-spin interactions in agreement with the soft-wall AdS/QCD approach and light-front holography. The mass-squared of the light hadrons can be expressed as a frame-independent decomposition of contributions from the constituent kinetic energy, the confinement potential, and spin-spin contributions. The mass of the pion eigenstate vanishes in the chiral limit. Only one mass parameter appears; it sets the confinement mass scale, a universal value for the slope of all Regge trajectories, the nonzero mass of the proton and other hadrons in the chiral limit, as well as the mass parameter of the pQCD running coupling. The result is an effective coupling defined at all momenta. The matching of the high and low momentum-transfer regimes determines a scale which sets the interface between perturbative and nonperturbative hadron dynamics. as well as the factorization scale for structure functions and distribution amplitudes. This procedure, in combination with the scheme-independent PMC procedure for setting renormalization scales, can greatly improve the precision of QCD predictions.
Presented at the Conference "New Physics at the Large Hadron Collider", 29 February to 4 March 2016, at the Nanyang Executive Centre, Nanyang Technological University, Singapore. arXiv admin note: text overlap with arXiv:1601.06328
References in corpus (16)
- Hadronic Spectra and Light-Front Wavefunctions in Holographic QCD
- Light-Front Dynamics and AdS/QCD Correspondence: The Pion Form Factor in the Space- and Time-Like Regions
- Light-Front Holography: A First Approximation to QCD
- Nucleon electromagnetic and gravitational form factors from holography
- Eliminating the Renormalization Scale Ambiguity for Top-Pair Production Using the Principle of Maximum Conformality
- Baryon Spectrum from Superconformal Quantum Mechanics and its Light-Front Holographic Embedding
- Superconformal Baryon-Meson Symmetry and Light-Front Holographic QCD
- Kinematical and Dynamical Aspects of Higher-Spin Bound-State Equations in Holographic QCD
- Highly Excited Mesons, Linear Regge Trajectories and the Pattern of the Chiral Symmetry Realization
- Effective confining potentials for QCD
- Universal Effective Hadron Dynamics from Superconformal Algebra
- Generalization of the Brodsky-Lepage-Mackenzie optimization within the -expansion and the Principle of Maximal Conformality
- Nuclear physics in soft-wall AdS/QCD: Deuteron electromagnetic form factors
- Chiral symmetry and the string description of excited hadrons
- The Light-Front Schrödinger Equation and Determination of the Perturbative QCD Scale from Color Confinement
- Recursion relations for multi-gluon off-shell amplitudes on the light-front and Wilson lines
Cited by in corpus (25)
- The Large Hadron-Electron Collider at the HL-LHC
- Exotic hadrons: review and perspectives
- QCD Running Couplings and Effective Charges
- The transverse structure of the pion in momentum space inspired by the AdS/QCD correspondence
- Cubic interaction vertices for continuous-spin fields and arbitrary spin massive fields
- Decay constants of pseudoscalar and vector mesons with improved holographic wavefunction
- Spin effects in the pion holographic light-front wavefunction
- Dynamical spin effects in the holographic light-front wavefunctions of light pseudoscalar mesons
- Light-front holographic distribution amplitudes of pseudoscalar mesons and their application to -meson decays
- Extending light-front holographic QCD using the 't Hooft Equation
- Predicting the light-front holographic TMDs of the pion
- Light-front holographic -meson distributions in the momentum space
- Impact of DCSB and dynamical diquark correlations on proton GPDs
- Light-front holographic radiative transition form factors for light mesons
- Anyonic Defect Branes and Conformal Blocks in Twisted Equivariant Differential (TED) K-theory
- Nucleon electroweak form factors using spin-improved holographic light-front wavefunctions
- Application of the light-front holographic wavefunction for heavy-light pseudoscalar meson in decays
- Isospectrality and configurational entropy as testing tools for bottom-up AdS/QCD
- How Often Do Diquarks Form? A Very Simple Model
- The QCD running coupling at all scales and the connection between hadron masses and Λ_s
- Hadron and Nuclear Physics on the Light Front
- QCD-constrained dynamical spin effects in the pion holographic light-front wavefunction
- Fermions in worldline holography
- Chiral Symmetry Restoration using the Running Coupling Constant from the Light-Front Approach to QCD
- Hadron spectroscopy using the light-front holographic Schrödinger equation and the 't Hooft equation