R. Tatchyn et T. Cremer, A FAST ANALYTICAL UNDULATOR MODEL FOR REALISTIC HIGH-ENERGY FEL SIMULATIONS, Nuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment, 393(1-3), 1997, pp. 114-118
A number of leading FEL simulation codes used for modeling gain in the
ultralong undulators required for SASE saturation in the < 100 Angstr
om range employ simplified analytical models both for field and error
representations. Although it is recognized that both the practical and
theoretical validity of such codes could be enhanced by incorporating
realistic undulator held calculations, the computational cost of doin
g this can be prohibitive, especially for point-to-point integration o
f the equations of motion through each undulator period. In this paper
we describe a simple analytical model suitable for modeling realistic
permanent magnet (PM), hybrid/PM, and non-PM undulator structures, an
d discuss selected techniques for minimizing computation time.