Gravitational form factors and mechanical properties of quarks in protons: A basis light-front quantization approach

Author:

Nair Sreeraj12ORCID,Mondal Chandan12ORCID,Xu Siqi12,Zhao Xingbo12ORCID,Mukherjee Asmita3ORCID,Vary James P.4ORCID,

Affiliation:

1. Institute for Modern Physics

2. Institute of Modern Physics

3. Indian Institute of Technology Bombay

4. Iowa State University

Abstract

We compute the gravitational form factors (GFFs) and study their applications for the description of the mechanical properties such as the pressure, shear force distributions, and the mechanical radius of the proton from its light-front wave functions (LFWFs) based on basis light-front quantization (BLFQ). The LFWFs of the proton are given by the lowest eigenvector of a light-front effective Hamiltonian that incorporates a three-dimensional confining potential and a one-gluon exchange interaction with fixed coupling between the constituent quarks solved in the valence Fock sector. We find acceptable agreement between our BLFQ computations and the lattice QCD for the GFFs. Our D-term form factor also agrees well with the extracted data from the deeply virtual Compton scattering experiments at Jefferson Lab, and the results of different phenomenological models. The distributions of pressures and shear forces are similar to those from different models. Published by the American Physical Society 2024

Funder

Chinese Academy of Sciences

Key Research Program of Frontier Science, Chinese Academy of Sciences

Natural Science Foundation of Gansu Province

Science and Technology Department of Gansu Province

National Natural Science Foundation of China

National Key Research and Development Program of China

Science and Engineering Research Board

Basic Energy Sciences

Senior Scientist Program

Institute of Modern Physics

Publisher

American Physical Society (APS)

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