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This presentation covers recent updates to the Free Electron Laser (FEL) simulation, including new particle files contributed by L. Wang and G. Marcus. It highlights the performance metrics of different configurations such as slice properties, wakefield impacts, and seed performance in both SXR and HXR modes. Key results include energy resolution improvements, stability of undulator performance across multiple runs, and the effects of filtering methods on energy bandwidth. These insights are vital for optimizing future FEL experiments.
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FEL simulation update • New particle files from L. Wang on 5/13/2014 G. Marcus 5/28/20104
100 pC, 1kA: Slice properties Insert Presentation Title in Slide Master
100 pC, 1 kA: Matching properties Insert Presentation Title in Slide Master
100 pC, 1kA: RW wakefield Insert Presentation Title in Slide Master
SXR SASE, Eγ = 1.24 keV E ~ 220 μJ FWHM ~ 69 fs ΔEFWHM ~ 2.0 eV σE ~ 1.6 x 10-3 Saturation after 12 undulators Insert Presentation Title in Slide Master
SXRSS, Eγ = 1.24 keV, 7 undulators in first stage, typical run E ~ 1.5 μJ FWHM ~ 3.2 eV 2.6 e-3 Insert Presentation Title in Slide Master
Perfect seed ΔEγ 82 meV σE = 6.6 e-5 Insert Presentation Title in Slide Master
R = 5000, phenominalogicalmonochromator, typical run Before Filter ΔEγ 226 meV σE = 1.8 e-4 After Filter Insert Presentation Title in Slide Master
R = 5000, stage 2 E ~ 200 μJ ΔEγ ~ 64 meV σE = 5.1 e-5 Insert Presentation Title in Slide Master
Stage 2, 10 independent runs ΔEγ = 121 meV σE = 9.8 e-5 Insert Presentation Title in Slide Master
SXRSS, Eγ = 1.24 keV, 8 undulators in first stage Insert Presentation Title in Slide Master
Perfect seed ΔEγ 79 meV σE = 6.4 e-5 Insert Presentation Title in Slide Master
R = 5000, phenominalogicalmonochromator Before Filter ΔEγ 64 meV σE = 5.1 e-5 After Filter Insert Presentation Title in Slide Master
R = 5000, stage 2 ΔEγ 140 meV σE = 1.1 e-5 Insert Presentation Title in Slide Master
HXR SASE, Eγ = 5 keV E ~ 7.4 μJ ΔEγ = 2.9 eV σE = 5.9 x 10-4 Insert Presentation Title in Slide Master