On the basis of the recently proposed thermal wave model (TWM) for particle beams, we give a description of the longitudinal charge particle dynamics in circular accelerating machines by taking into account both radiation damping and quantum excitation (stochastic effect), in the presence of a RF potential well. The longitudinal dynamics is governed by a 1-D Schrodinger-like equation for a complex wave function whose squared modulus gives the longitudinal bunch density profile. In this framework, the appropriate r.m.s. emittance scaling law, due to the damping effect, is naturally recovered, and the asymptotic equilibrium condition for the bunch length, due to the competition between quantum excitation (QE) and radiation damping (RD), is found. This result opens the possibility to apply the TWM, already tested for protons, to electrons, for which QE and RD are very important.

Radiation Damping and Quantum Excitation for Longitudinal Charged Particle Dynamics in the Thermal Wave Model / Fedele, Renato; Miele, Gennaro; L., Palumbo. - In: PHYSICS LETTERS A. - ISSN 0375-9601. - STAMPA. - 194:1-2(1994), pp. 113-118. [10.1016/0375-9601(94)00749-F]

Radiation Damping and Quantum Excitation for Longitudinal Charged Particle Dynamics in the Thermal Wave Model

FEDELE, RENATO;MIELE, GENNARO;
1994

Abstract

On the basis of the recently proposed thermal wave model (TWM) for particle beams, we give a description of the longitudinal charge particle dynamics in circular accelerating machines by taking into account both radiation damping and quantum excitation (stochastic effect), in the presence of a RF potential well. The longitudinal dynamics is governed by a 1-D Schrodinger-like equation for a complex wave function whose squared modulus gives the longitudinal bunch density profile. In this framework, the appropriate r.m.s. emittance scaling law, due to the damping effect, is naturally recovered, and the asymptotic equilibrium condition for the bunch length, due to the competition between quantum excitation (QE) and radiation damping (RD), is found. This result opens the possibility to apply the TWM, already tested for protons, to electrons, for which QE and RD are very important.
1994
Radiation Damping and Quantum Excitation for Longitudinal Charged Particle Dynamics in the Thermal Wave Model / Fedele, Renato; Miele, Gennaro; L., Palumbo. - In: PHYSICS LETTERS A. - ISSN 0375-9601. - STAMPA. - 194:1-2(1994), pp. 113-118. [10.1016/0375-9601(94)00749-F]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/476317
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