图书简介
Light-Cone 2015 belongs to a conference series that started in 1991 under the supervision of the International Light Cone Advisory Committee and showed, year by year, to play a vital role in promoting the research towards a rigorous description of hadrons and nuclei, based on Light-Cone quantization methods. A strong relation with the experimental activity represents an important commitment of the Light-Cone community, with the ambition ’’to assist in the development of crucial experimental tests at hadron facilities’’. This work is comprised of selected papers presented by researchers at new facilities, such as the 12 GeV upgrade of Th. Jefferson Natl. Lab, the FAIR facility at GSI, J-PARC, and other facilities around the globe, at the Light-Cone meeting in Frascati, Italy in 2015.
LIGHT-CONE 2015: Theoretical and experimental challenges onto the Light-Front.- TMD Phenomenology.- Quark and Gluon Orbital Angular Momentum: Where Are We?.- Quark Orbital Angular Momentum.- Covariance Constraints for Light Front Wave Functions.- Cancellation of Glauber Gluon Exchange in the Double Drell–Yan Process.- Generalized Valon Model for Double Parton Distributions.- Hadron Physics from Superconformal Quantum Mechanics and Its Light-Front Holographic Embedding.- Hadron Phenomenology from First-Principle QCD Studies.- Proton Structure in High-Energy High-Multiplicity p–p Collisions.- Double Parton Scattering and 3D Proton Structure: A Light-Front Analysis.- On Gravitational Form Factors and Transverse Spin Sum Rule.- Internal Structure of the Pion Inspired by the AdS/QCD Correspondence.- The Pion Renormalized Light-Cone Wave Function.- Glueball and Meson Spectrum in Large-N QCD.- Elastic and Transition Form Factors in DSEs.- Covariant Spectator Theory and Hadron Structure.- Non-perturbative Renormalization in Truncated Yukawa Model.- The Light-Front Vacuum.- A Comparative Study of Nucleon Structure in Light-Front Quark Models in AdS/QCD.- HERMES Results on the 3D Imaging of the Nucleon.- Towards a Microscopic Understanding of Nucleon Polarizabilities.- SU(2) Flavor Asymmetry of the Proton Sea in Chiral Effective Theory.- On J PC =0 ?? JPC=0?? exotic glueball.- Light-Front Quark Model Analysis of Meson-Photon Transition Form Factor.- Inverting the Nakanishi Integral Relation for a Bound State Euclidean Bethe–Salpeter Amplitude.- The Electron in Three-Dimensional Momentum Space.- Light-Front Dynamics and the 3He Spectral Function.- Identifying the Universal Part of TMDs.- Sensitivity of the DVCS Cross Section to the Compton form Factors in Scalar QED.- Light-Front Holography, Color Confinement, and Supersymmetric Features of QCD.- Parton Distribution Functions from Lattice QCD.- Nonperturbative True Muonium on the Light Front with TMSWIFT.- Light-Front Quantization of the Restricted Gauge Theory of QCD.- Proton Spin Structure from Large Momentum Effective Theory.- Asymptocic Freedom of Gluons in Hamiltonian Dynamics.- Deuteron Electromagnetic Form Factors in AdS/QCD.- Light-Front Perturbation Without Spurious Singularities.- Light-Front Quantization of the Vector Schwinger Model with a Photon Mass Term in Faddeevian Regularization.- T-Odd Gluon TMDs Inside a Transversely Polarized Hadron.- Overview of the COMPASS Experimental Programme on TMDs and GPDs.- Proton–Proton On Shell Optical Potential at High Energies and the Hollowness Effect.- Hadron Structures from Large Momentum Effective Field Theory.- Excited States of the Wick–Cutkosky Model with the Nakanishi Representation in the Light-Front Framework.- Pauli–Villars Regularization of Non-Abelian Gauge Theories.- Jefferson Lab: Present and Future.- Gluon TMDs in Quarkonium Production.- Radon Transform and Light-Cone Distributions.- Scattering Solutions of Bethe–Salpeter Equation in Minkowski and Euclidean Spaces.- Light-Front ? 4 1+1 Theory Using a Many-Boson Symmetric-Polynomial Basis.- Light Front Wave Function for Hadrons with Arbitrary Twist.- Two-Dimensional Massless Light Front Fields and Solvable Models.- Basis Light-Front Quantization: Recent Progress and Future Prospects.- Studies of the 3D Structure of the Nucleon at JLab.- Precise measurements of DVCS at JLab and quark orbital angular momentum.
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