Local spatial densities for composite spin-3/2 systems
arXiv:2212.11505 · doi:10.1007/JHEP02(2023)163
Abstract
The definition of local spatial densities by using sharply localized one-particle states is applied to spin-3/2 systems. Matrix elements of the electromagnetic current and the energy-momentum tensor are considered and integral expressions of associated spatial distributions in terms of form factors are derived.
References in corpus (12)
- Electromagnetic excitation of the Delta(1232)-resonance
- Defining the Proton Radius: a Unified Treatment
- Ambiguities in the definition of local spatial densities in light hadrons
- On the definition of local spatial densities in hadrons
- Singular Charge Density at the Center of the Pion?
- Gravitational form factors of a baryon with spin-3/2
- On the definition of electromagnetic local spatial densities for composite spin- systems
- 2D energy-momentum tensor distributions of nucleon in a large- quark model from ultra-relativistic to non-relativistic limit
- Mechanical structure of a spin-1 particle
- Transverse charge distributions of the nucleon and their Abel images
- Electromagnetic multipole structure of a spin-one particle: Abel tomography case
- Energy-momentum tensor of the nucleon on the light front: Abel tomography case
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- Mapping the transverse spin sum rule in position space
- Inclusive probability to record an electron in elastic electromagnetic scattering by a spin one-half hadron wave packet