# Import the OSCARS SR module import oscars.sr # Import basic plot utilities (matplotlib). You don't need these to run OSCARS, but it's used here for basic plots from oscars.plots_mpl import * # Create a new OSCARS object. Default to 8 threads and always use the GPU if available osr = oscars.sr.sr(nthreads=8, gpu=1) # Clear any existing fields (just good habit in notebook style) and add an undulator field osr.clear_bfields() dist_between_centers = 0.049*15 osr.add_bfield_gaussian(bfield=[0, +0.08, 0], sigma=[0, 0, 0.05], translation=[0, 0, -1.8]) osr.add_bfield_undulator(bfield=[0, 1, 0], period=[0, 0, 0.049], nperiods=21, translation=[0, 0, -dist_between_centers]) osr.add_bfield_gaussian(bfield=[0, -0.16, 0], sigma=[0, 0, 0.05], translation=[0, 0, 0]) osr.add_bfield_undulator(bfield=[0, 1, 0], period=[0, 0, 0.049], nperiods=21, translation=[0, 0, +dist_between_centers]) osr.add_bfield_gaussian(bfield=[0, +0.08, 0], sigma=[0, 0, 0.05], translation=[0, 0, 1.8]) # Just to check the field that we added seems visually correct plot_bfield(osr, -2, 2) # Setup beam similar to NSLSII osr.clear_particle_beams() osr.set_particle_beam(energy_GeV=3, current=0.500) # Set the start and stop times for the calculation osr.set_ctstartstop(-3, 3) # Run the particle trajectory calculation trajectory = osr.calculate_trajectory() # Plot the trajectory position and velocity plot_trajectory_position(trajectory) plot_trajectory_velocity(trajectory) # Setup beam similar to NSLSII with different starting position from above # (this makes more sense for some scenarios) osr.clear_particle_beams() osr.set_particle_beam(x0=[0, 0, -3], energy_GeV=3, current=0.500) # Set the start and stop times for the calculation osr.set_ctstartstop(0, 6) # Run the particle trajectory calculation trajectory = osr.calculate_trajectory() # Plot the trajectory position and velocity plot_trajectory_position(trajectory) plot_trajectory_velocity(trajectory)