USE of SCILAB BASED Xcos MODELLING FOR CALCULATION OF UNDULATOR RADIATION PARAMETERS

Hussain Jeevakhan, Mahazbeen Sayed, Kamal Kushwaha

Abstract


The SCILAB Xcos model is designed to simulate the electron trajectories and intensity of planar undulator radiation using a numerical approach. The SCILAB 6.1.1 software was used to design the present model, which was designed to simulate the on-axis undulator radiation at various harmonics. A comparison of the results from this model with those obtained using the analytical method with the Bessel function is also given in this paper. The designed model can be modified for the numerical computation of the trajectories of the innovative and novel undulator schemes.

Keywords


SCILAB, Model-based simulation, Undulator, Undulator radiation, On-axis radiation

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References


E. Prat, A. Al Haddad, C. Arrell, et al, An X-ray free-electron laser with a highly configurable undulator and integrated chicanes for tailored pulse properties, Nature communications, 14.1 (2023) 5069

H. Zen, R., Hajima, & H. Ohgaki,Full characterization of superradiant pulses generated from a free-electron laser oscillator, Scientific Reports, 13.1 (2023) 6350..

G.Dattoli, et.al, Lectures on FEL Theory and Related Topics, World Scientific, Singapore.

Marshall, T.C. “Free electron lasers” Macmillan Publishing Co. New York (1985).

Garcia, Bryant W., et al. "Comparing FEL Codes for Advanced Configurations." Proceedings of the International Free Electron Laser Conference. Vol. 2017. No. SLAC-PUB-17138. SLAC National Accelerator Lab., Menlo Park, CA (United States), 2018.

Giannessi, Luca. "Simulation codes for high brightness electron beam free-electron laser experiments." Physical Review Special Topics-Accelerators and Beams 6.11 (2003): 114802.

Huang, Z., and W. M. Fawley. "GINGER simulations of short pulse effects in the Leutl FEL." PACS2001. Proceedings of the 2001 Particle Accelerator Conference (Cat. No. 01CH37268). Vol. 4. IEEE, 2001

SCILAB, https://www.scilab.org/.

H Jeevakhan, M Sayed, KK Kushwaha, G Mishra. " Design and Analyses of Xcos Simulation Model for On-Axis Planar Undulator Radiation." IEEE Transactions on Plasma Science 50.12 (2022) 5046-5050.

H. Jeevakhan, S. Kumar and G Mishra, Analysis of electron trajectories in harmonic undulator with SCILAB's model-based design codes, Proc. 60th ICFA Advanced Beam Dynamics Workshop on Future Light Sources, ISBN: 978-3-95450-206-6,doi:10.18429/JACoW-FLS2018-WEA2WD03.

H. Jeevakhan and G Mishra, XcosSCILAB model for simulation of intensity and gain of planar undulator radiation, Proc. 39th Free Electron Laser Conf., ISBN: 978-3-95450-210-3, doi:10.18429/JACoW-FEL2019-TUP04.

Dattoli, G., L. Giannessi, and G. Voykov. "Analytical and numerical computation of undulator brightness: a comparison." Computers & Mathematics with Applications 27.6 (1994): 63-78.

G. Dattoli, G. Voykov, Spectral properties of two-harmonic undulator radiation, Physical Review E, 48.4 (1993) 3030.

J. D. Jackson, Classical Electrodynamics, Wiley, New York, 1975.




DOI: http://dx.doi.org/10.21533/scjournal.v13i1.291

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Copyright (c) 2024 Hussain Jeevakhan, Mahazbeen Sayed, Kamal Kushwaha

ISSN 2233 -1859

Digital Object Identifier DOI: 10.21533/scjournal

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