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arXiv:2604.26537·v1·High Energy Physics — Phenomenology

Particle seismology: mechanical and gravitational properties from parton-hadron duality

Enrique Ruiz Arriola🇪🇸 · Wojciech Broniowski🇵🇱

Abstract

The internal structure of hadrons is characterized by form factors which correspond to matrix elements of currents. Among those, the stress-energy-momentum tensor is a universally conserved quantity providing the gravitational form factors, from which mechanical properties may be derived via the response to the space-time fluctuations. They have received much attention because of their role as moments of the Generalized Parton Distributions, where the stress-energy-momentum tensor couples to two photons, and more recently, due to the explicit lattice QCD determination for the pion and nucleon. In these lectures we attempt a pedagogical review of the topic from a purely hadronic point of view, based on the notion of dispersion relations, meson dominance, and parton-hadron duality. We show that despite the overwhelming simplicity of the approach, a rather successful description of the lattice QCD data is achieved.

Comments: 62 pages, 8 figures, Lectures presented by E.R.A. at the 65-th Cracow School of Theoretical Physics, Zakopane, Poland, 14-21 June 2025

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