English

Lectures on scattering theory in partial-wave amplitudes

High Energy Physics - Phenomenology 2024-09-26 v1

Abstract

These lectures treat scattering theory from a non-perturbative point of view. The course begins with a review of formal aspects in scattering theory, discussing the in/out states and the SS matrix that connects them. Unitarity relations, phase space, and the Lippmann-Schwinger equation for the TT matrix are discussed. The calculation of cross sections, the optical theorem and Boltzmann HH-theorem from unitarity of the SS matrix are also explained. Special emphasis is given to expansions in partial-wave amplitudes of two-body scattering amplitudes, both for massive and massless particles, and to unitarity in partial-wave amplitudes. In this way, partial-wave expansions in terms of SJ\ell SJ states, and using helicity states with definite total angular momentum JJ are discussed. Crossing symmetry is also explained, and connected to crossed channels, analyticity and crossed-channel cuts in partial-wave amplitudes. Different non-perturbative techniques and general parameterizations are developed for partial-wave amplitudes that satisfy unitarity and are consistent with the analyticity properties that they must have. Then, the N/DN/D method and additional solutions generated by adding CDD poles are covered in detail. The change to different non-physical Riemann sheets and the search for resonant poles is discussed as well. A differentiation is made between dynamically generated resonances by the degrees of freedom explicitly accounted for versus pre-existing resonances derived from short-distance dynamics. We exemplify it with the cases of the σ/f0(500)\sigma/f_0(500) and the ρ(770)\rho(770) resonances in ππ\pi\pi scattering. The reader is also introduced to final-state interactions, Watson's theorem, and general parameterizations to take them into account. It ends with an appendix dedicated to the Sugawara-Kanazawa theorem regarding the number of subtractions in dispersion relations.

Keywords

Cite

@article{arxiv.2409.16790,
  title  = {Lectures on scattering theory in partial-wave amplitudes},
  author = {J. A. Oller},
  journal= {arXiv preprint arXiv:2409.16790},
  year   = {2024}
}

Comments

60 pages, 6 figuers

R2 v1 2026-06-28T18:56:22.736Z