References
[1] L. W. Alvarez. Linear accelerator. US Patent 2,545,595, 1951. Filed
1947.
[2] J. Arthur, P. Anfinrud, P. Audebert, et al. Linac Coherent Light Source
(LCLS) conceptual design report. Technical Report SLAC-R-593, SLAC
National Accelerator Laboratory, 2002.
[3] U. Bechstedt, J. Dietrich, R. Maier, et al. The cooler synchrotron COSY
in J¨ ulich. Nuclear Instruments and Methods, B113(1-4):26–29, 1996.
[4] M. Berz. Differential algebraic description of beam dynamics to very high
orders. Technical Report SSC-152, also ON: DE90013777 and TRN: 90023092, Lawrence Berkeley National Laboratory, SSC Central Design
Group, 1988. OSTI ID: 6876262. Also Particle Accelerators, 24:109,
1989.
[5] M. Berz. Modern Map Methods in Particle Beam Physics. Academic
Press, San Diego, 1999.
[6] M. Berz, H. C. Hofmann, and H. Wollnik. COSY 5.0, the fifth order
code for corpuscular optical systems. Nuclear Instruments and Methods,
A258:402–406, 1987.
[7] M. Berz and K. Makino. COSY INFINITY.
http://cosyinfinity.org, (accessed August 2014).
[8] I. G. Brown, editor. The Physics and Technology of Ion Sources. WileyVCH, Weinheim, second edition, 2004.
[9] K. L. Brown, F. Rothacker, D. C. Carey, and C. Iselin. TRANSPORT
a computer program for designing charged particle beam transport systems. Technical Report SLAC-91 Rev. 3, also CERN-80-04 and NAL-91,
Stanford Linear Accelerator Center, Fermi National Accelerator Laboratory, CERN, 1983.
[10] P. J. Bryant and K. Johnsen. The Principles of Circular Accelerators
and Storage Rings. Cambridge University Press, Cambridge, 1993.
[11] D. C. Carey. The Optics of Charged Particle Beams. Harwood Academic,
New York, 1987.
[12] A. W. Chao. Physics of Collective Beam Instabilities in High Energy
Accelerators. Wiley, New York, 1993.
295
[1] L. W. Alvarez. Linear accelerator. US Patent 2,545,595, 1951. Filed
1947.
[2] J. Arthur, P. Anfinrud, P. Audebert, et al. Linac Coherent Light Source
(LCLS) conceptual design report. Technical Report SLAC-R-593, SLAC
National Accelerator Laboratory, 2002.
[3] U. Bechstedt, J. Dietrich, R. Maier, et al. The cooler synchrotron COSY
in J¨ ulich. Nuclear Instruments and Methods, B113(1-4):26–29, 1996.
[4] M. Berz. Differential algebraic description of beam dynamics to very high
orders. Technical Report SSC-152, also ON: DE90013777 and TRN: 90023092, Lawrence Berkeley National Laboratory, SSC Central Design
Group, 1988. OSTI ID: 6876262. Also Particle Accelerators, 24:109,
1989.
[5] M. Berz. Modern Map Methods in Particle Beam Physics. Academic
Press, San Diego, 1999.
[6] M. Berz, H. C. Hofmann, and H. Wollnik. COSY 5.0, the fifth order
code for corpuscular optical systems. Nuclear Instruments and Methods,
A258:402–406, 1987.
[7] M. Berz and K. Makino. COSY INFINITY.
http://cosyinfinity.org, (accessed August 2014).
[8] I. G. Brown, editor. The Physics and Technology of Ion Sources. WileyVCH, Weinheim, second edition, 2004.
[9] K. L. Brown, F. Rothacker, D. C. Carey, and C. Iselin. TRANSPORT
a computer program for designing charged particle beam transport systems. Technical Report SLAC-91 Rev. 3, also CERN-80-04 and NAL-91,
Stanford Linear Accelerator Center, Fermi National Accelerator Laboratory, CERN, 1983.
[10] P. J. Bryant and K. Johnsen. The Principles of Circular Accelerators
and Storage Rings. Cambridge University Press, Cambridge, 1993.
[11] D. C. Carey. The Optics of Charged Particle Beams. Harwood Academic,
New York, 1987.
[12] A. W. Chao. Physics of Collective Beam Instabilities in High Energy
Accelerators. Wiley, New York, 1993.
295
