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Peláez Sagredo, José Ramón and Rodas, Arkaitz (2022) Dispersive πK → πK and ππ → KK amplitudes from scattering data, threshold parameters, and the lightest strange resonance κ or K0∗ (700). Physics reports-review section of Physics letters, 969 . pp. 1-126. ISSN 0370-1573
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Official URL: http://dx.doi.org/10.1016/j.physrep.2022.03.004
Abstract
We discuss the simultaneous dispersive analyses of nK -> nK and nn -> KK over bar scattering data and the K/K0*(700) resonance. The unprecedented statistics of present and future hadron experiments, modern lattice QCD calculations, and the wealth of new states and decays require such precise and model-independent analyses to describe final state interactions. We review the existing and often conflicting data and explain in detail the derivation of the relevant dispersion relations, maximizing their applicability range. Next, we review and extend the caveats on some data, showing their inconsistency with dispersion relations. Our main result is the derivation and compilation of precise amplitude parameterizations constrained by several nK -> nK and nn -> KK over bar dispersion relations. These constrained parameterizations are easily implementable and provide the rigor and accuracy needed for modern experimental and phenomenological hadron physics.
As applications, after reviewing their status and interest, we will provide new precise threshold and subthreshold parameters and review our dispersive determination of the controversial K/K0*(700) resonance and other light-strange resonances.
Item Type: | Article |
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Additional Information: | ©2022 The Author(s). |
Uncontrolled Keywords: | Chiral perturbation theory; Partial wave analysis; Convergent extrapolation procedure; Axiomatic analyticity domain; Pi-elastic-scattering; Gamma gamma asterisk; Scalar meson nonet; S-wave; Kpi scattering; Production mechanisms |
Subjects: | Sciences > Physics > Physics-Mathematical models Sciences > Physics > Mathematical physics |
ID Code: | 73213 |
Deposited On: | 11 Jul 2022 17:32 |
Last Modified: | 19 Jan 2023 12:39 |
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