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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 1 Lecture 15 Radiation Damping Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Alex Bogacz, Geoff Krafft and Timofey Zolkin
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 2 Lecture 15 Radiation Damping Outline Beam dynamics with synchrotron radiation: Define action-angle variables for describing symplectic motion of a particle along a beam line. Discuss the effect of synchrotron radiation on the (linear) motion of particles in storage rings. Derive expressions for the damping times of the vertical, horizontal and longitudinal emittances. Introduce the synchrotron radiation integrals (Sand’s Integrals). Discuss the effects of quantum excitation, and derive expressions for the equilibrium horizontal and longitudinal beam emittances in an electron storage ring. M. Sands, “The physics of electron storage rings, an introduction” SLAC-121. 1970 A. Wolski, University of Liverpool and the Cockcroft Institute, CAS 2009, http://cas.web.cern.ch/cas/Germany2009/Lectures/PDF-Web/Wolski-1.pdf USPAS, Fort Collins, CO, June 10-21, 2013
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 3 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Coordinate system
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 4 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Longitudinal coordinate
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 5 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Energy deviation
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 6 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Canonical variables
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 7 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Symplectic matrices U U U U
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 8 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Twiss parameters and the particle action
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 9 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Cartesian variables and action-angle variables
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 10 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Action and Emittance
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 11 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Action and Radiation
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 12 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Radiation damping of vertical emittance
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 13 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Radiation damping of vertical emittance
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 14 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Radiation damping of vertical emittance
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 15 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Radiation damping of vertical emittance
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 16 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Radiation damping of vertical emittance
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 17 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Synchrotron radiation energy loss U 0
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 18 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Synchrotron radiation energy loss
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 19 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 The first synchrotron radiation integral
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 20 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Damping of horizontal emittance
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 21 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Horizontal-longitudinal coupling
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 22 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Damping of horizontal emittance
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 23 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Radiation damping of horizontal emittance
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 24 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Appendix A: Damping of horizontal emittance
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 25 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Appendix A: Damping of horizontal emittance
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 26 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Appendix A: Damping of horizontal emittance
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 27 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Appendix A: Damping of horizontal emittance
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 28 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Appendix A: Damping of horizontal emittance
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 29 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Appendix A: Damping of horizontal emittance
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 30 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Damping of synchrotron oscillations
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 31 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Damping of synchrotron oscillations
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 32 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Damping of synchrotron oscillations
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 33 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Damping of synchrotron oscillations
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 34 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Damping of synchrotron oscillations
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 35 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Damping of synchrotron oscillations
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 36 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Damping of synchrotron oscillations
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 37 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Damping of synchrotron oscillations
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 38 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Damping of synchrotron oscillations
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 39 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Summary: Synchrotron radiation damping
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 40 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Quantum excitation
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 41 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Quantum excitation of horizontal emittance
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 42 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Quantum excitation of horizontal emittance
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 43 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Appendix B: Quantum excitation of horizontal emittance
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 44 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Appendix B: Quantum excitation of horizontal emittance
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 45 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Appendix B: Quantum excitation of horizontal emittance
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 46 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Appendix B: Quantum excitation of horizontal emittance
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 47 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Equilibrium horizontal emittance
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 48 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Quantum excitation of vertical emittance
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 49 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Quantum excitation of synchrotron oscillations
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 50 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Quantum excitation of synchrotron oscillations
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 51 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Natural energy spread
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 52 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Summary: Radiation Damping
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 53 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Summary: Synchrotron radiation integrals
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 54 Lecture 15 Radiation Damping USPAS, Fort Collins, CO, June 10-21, 2013 Summary: Sand’s Integrals
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Operated by JSA for the U.S. Department of Energy Thomas Jefferson National Accelerator Facility 55 Lecture 15 Radiation Damping Summary So far we have: discussed the effect of synchrotron radiation on the (linear) motion of particles in storage rings; derived expressions for the damping times of the vertical, horizontal and longitudinal emittances; discussed the effects of quantum excitation, and derive expressions for the equilibrium horizontal and longitudinal beam emittances in an electron storage ring. USPAS, Fort Collins, CO, June 10-21, 2013
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