A Fokker-Planck treatment of stochastic particle motion within the framework of a fully coupled 6-dimensional formalism for electron-positron storage rings including classical spin motion in linear approximation
Barber, D.P.; Heinemann, K.; Mais, H.; Ripken, G.
Deutsches Elektronen-Synchrotron (DESY), Hamburg (Germany)1991
Deutsches Elektronen-Synchrotron (DESY), Hamburg (Germany)1991
AbstractAbstract
[en] In the following report we investigate stochastic particle motion in electron-positron storage ring in the framework of a Fokker-Planck treatment. The motion is described by using the canonical variables χ, pχ, z, pz, σ = s - cxt, pσ = ΔE/E0 of the fully six-dimensional formalism. Thus synchrotron- and betatron-oscillations are treated simultaneously taking into account all kinds of coupling (synchro-betatron coupling and the coupling of the betatron oscillations by skew quadrupoles and solenoids). In order to set up the Fokker-Planck equation, action-angle variables of the linear coupled motion are introduced. The averaged dimensions of the bunch, resulting from radiation damping of the synchro-betatron oscillations and from an excitation of these oscillations by quantum fluctuations, are calculated by solving the Fokker-Planck equation. The surfaces of constant density in the six-dimensional phase space, given by six-dimensional ellipsoids, are determined. It is shown that the motion of such an ellipsoid under the influence of external fields can be described by six generating orbit vectors which may be combined into a six-dimenional matrix B(s). This 'bunch-shape matrix', B(s), contains complete information about the configuration of the bunch. Classical spin diffusion in linear approximation has also been included so that the dependence of the polarization vector on the orbital phase space coordinates can be studied and another derivation of the linearized depolarization time obtained. (orig.)
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Dec 1991; 85 p
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Report
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Descriptors (DEI)
BEAM BUNCHING, BEAM DYNAMICS, BEAM FOCUSING MAGNETS, BEAM TRANSPORT, BETATRON OSCILLATIONS, CLASSICAL MECHANICS, COLLIDING BEAMS, COUPLING, DAMPING, DEPOLARIZATION, ELECTROMAGNETIC FIELDS, ELECTRON BEAMS, EQUATIONS OF MOTION, FLUCTUATIONS, FOKKER-PLANCK EQUATION, MANY-DIMENSIONAL CALCULATIONS, NONLINEAR PROBLEMS, ORBITS, PHASE SPACE, POSITRON BEAMS, QUADRUPOLES, QUASILINEAR PROBLEMS, SOLENOIDS, SPIN ORIENTATION, STOCHASTIC PROCESSES, STORAGE RINGS, SYNCHROTRON OSCILLATIONS
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