arXiv · 2408.09535
Dissecting a strongly coupled scalar nucleon
Abstract
We continue our investigation of the stress within a strongly coupled scalar nucleon, and now dissect the gravitational form factors into contributions from its constituents, the (mock) nucleon and the (mock) pion. The computation is based on a non-perturbative solution of the scalar Yukawa model in the light-front Hamiltonian formalism with a Fock sector expansion including up to one nucleon and two pions. By employing the ``good currents" $T^{++}_i$, $T^{+-}_i$ and $T^{12}_i$, we extract the full set of gravitational form factors $A_i$, $D_i$, $\bar c_i$ without the contamination of the spurious form factors, and free of uncanceled UV divergences. With these results, we decompose the mass of the system into its constituents and compute the matter and mechanical radii, gaining insights into the strongly coupled system.
Explore related subjects
Keep this discovery
Xianghui Cao, Yang Li, James P. Vary. 2024-08-18. Dissecting a strongly coupled scalar nucleon. https://doi.org/10.1103/physrevd.110.076025
Cite the original work for its findings. Save a collection to share your selection of sources.