Symmetry
(Sep 2022)
Liouville Theory for Fully Analytic Studies of Transverse Beam Dynamics in Laser-Plasma Ion Accelerators
Alessandro Curcio,
Jon Imanol Apiñaniz Aginako,
Teresa Cebriano Ramírez,
Michael Ehret,
Berkahoum Kebladj,
Antonia Morabito,
Alberto Pérez Delgado,
Carlos Salgado López,
Luca Volpe,
Giancarlo Gatti
Affiliations
Alessandro Curcio
Centro de Laseres Pulsados (CLPU), Edificio M5. Parque Científico. C/Adaja, 8., 37185 Villamayor, Spain
Jon Imanol Apiñaniz Aginako
Centro de Laseres Pulsados (CLPU), Edificio M5. Parque Científico. C/Adaja, 8., 37185 Villamayor, Spain
Teresa Cebriano Ramírez
Centro de Laseres Pulsados (CLPU), Edificio M5. Parque Científico. C/Adaja, 8., 37185 Villamayor, Spain
Michael Ehret
Centro de Laseres Pulsados (CLPU), Edificio M5. Parque Científico. C/Adaja, 8., 37185 Villamayor, Spain
Berkahoum Kebladj
Fundamental Physics Department, University of Salamanca, 37008 Salamanca, Spain
Antonia Morabito
Centro de Laseres Pulsados (CLPU), Edificio M5. Parque Científico. C/Adaja, 8., 37185 Villamayor, Spain
Alberto Pérez Delgado
Centro de Laseres Pulsados (CLPU), Edificio M5. Parque Científico. C/Adaja, 8., 37185 Villamayor, Spain
Carlos Salgado López
Centro de Laseres Pulsados (CLPU), Edificio M5. Parque Científico. C/Adaja, 8., 37185 Villamayor, Spain
Luca Volpe
Centro de Laseres Pulsados (CLPU), Edificio M5. Parque Científico. C/Adaja, 8., 37185 Villamayor, Spain
Giancarlo Gatti
Centro de Laseres Pulsados (CLPU), Edificio M5. Parque Científico. C/Adaja, 8., 37185 Villamayor, Spain
DOI
https://doi.org/10.3390/sym14091875
Journal volume & issue
Vol. 14,
no. 9
p.
1875
Abstract
Read online
The exact solution of the Liouville equation expressed in terms of exponential operators can describe the phase space evolution of particle beams in transport lines. In this paper, we generalize the solution of the above equation for the case of beam losses induced by apertures and for particle beams with large spreads in the momentum space. We discuss the applicability of such approach to ion beams produced by high-intensity lasers interacting with critical plasmas, based on the comparison between theoretical findings and measurements.
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