296
References
[13] A. W. Chao and M. Tigner, editors. Handbook of Accelerator Physics
and Engineering. World Scientific, New Jersey, second edition, 1999.
[14] J. D. Cockcroft and E. T. S. Walton. Experiments with high velocity
positive ions. – (I) Further developments in the method of obtaining
high velocity positive ions. Proceedings of the Royal Society of London,
A, 136:619–630, 1932.
[15] M. Conte and W. W. MacKay. An Introduction to the Physics of Particle
Accelerators. World Scientific, New Jersey, second edition, 2008.
[16] E. D. Courant and H. S. Snyder. Theory of the alternating-gradient
synchrotron. Annals of Physics, 3:1, 1958.
[17] K. R. Crandall, R. H. Stokes, and T. P. Wangler. RF quadrupole
beam dynamics design studies. In R. L. Witkover, editor, Proceedings
of the 1979 Linac Accelerator Conference, pages 205–216. Brookhaven
National Laboratory, 1979. BNL-51134.
[18] R. J. Van de Graaff. Electrostatic generator. US Patent 1,991,236, 1935.
Filed 1931.
[19] R. J. Van de Graaff. Tandem electrostatic accelerators. Nuclear Instruments and Methods, 8:195–202, 1960.
[20] R. J. Van de Graaff, K. T. Compton, and L. C. Van Atta. The electrostatic production of high voltage for nuclear investigations. Physical
Review, 43(3):149–157, 1933.
[21] L. Deniau, F. Schmidt, C. Iselin, et al. MAD – Methodical Accelerator
Design.
http://mad.web.cern.ch/mad/, (accessed August 2014).
[22] A. J. Dragt. MaryLie code and MaryLie manual information and download page.
http://www.physics.umd.edu/dsat/dsatmarylie.html, (accessed August
2014).
[23] A. J. Dragt, L. M. Healy, F. Neri, and R. Ryne. MARYLIE 3.0 – a
program for nonlinear analysis of accelerators and beamlines. IEEE
Transactions on Nuclear Science, NS-3,5:2311, 1985.
[24] D. A. Edwards and M. J. Syphers. An Introduction to the Physics of
High Energy Accelerators. Wiley, New York, 1993.
[25] D. A. Edwards and L. C. Teng. Parametrization of linear coupled motion
in periodic systems. IEEE Transactions Nuclear Science, 20(3):885–888,
1973.
[26] D. Einfeld, J. Schaper, and M. Plesko. Design of a diffraction limited
light source (DIFL). In Proceedings of the 1995 Particle Accelerator
Conference, volume 1, pages 177–179. IEEE, 1996.
References
[13] A. W. Chao and M. Tigner, editors. Handbook of Accelerator Physics
and Engineering. World Scientific, New Jersey, second edition, 1999.
[14] J. D. Cockcroft and E. T. S. Walton. Experiments with high velocity
positive ions. – (I) Further developments in the method of obtaining
high velocity positive ions. Proceedings of the Royal Society of London,
A, 136:619–630, 1932.
[15] M. Conte and W. W. MacKay. An Introduction to the Physics of Particle
Accelerators. World Scientific, New Jersey, second edition, 2008.
[16] E. D. Courant and H. S. Snyder. Theory of the alternating-gradient
synchrotron. Annals of Physics, 3:1, 1958.
[17] K. R. Crandall, R. H. Stokes, and T. P. Wangler. RF quadrupole
beam dynamics design studies. In R. L. Witkover, editor, Proceedings
of the 1979 Linac Accelerator Conference, pages 205–216. Brookhaven
National Laboratory, 1979. BNL-51134.
[18] R. J. Van de Graaff. Electrostatic generator. US Patent 1,991,236, 1935.
Filed 1931.
[19] R. J. Van de Graaff. Tandem electrostatic accelerators. Nuclear Instruments and Methods, 8:195–202, 1960.
[20] R. J. Van de Graaff, K. T. Compton, and L. C. Van Atta. The electrostatic production of high voltage for nuclear investigations. Physical
Review, 43(3):149–157, 1933.
[21] L. Deniau, F. Schmidt, C. Iselin, et al. MAD – Methodical Accelerator
Design.
http://mad.web.cern.ch/mad/, (accessed August 2014).
[22] A. J. Dragt. MaryLie code and MaryLie manual information and download page.
http://www.physics.umd.edu/dsat/dsatmarylie.html, (accessed August
2014).
[23] A. J. Dragt, L. M. Healy, F. Neri, and R. Ryne. MARYLIE 3.0 – a
program for nonlinear analysis of accelerators and beamlines. IEEE
Transactions on Nuclear Science, NS-3,5:2311, 1985.
[24] D. A. Edwards and M. J. Syphers. An Introduction to the Physics of
High Energy Accelerators. Wiley, New York, 1993.
[25] D. A. Edwards and L. C. Teng. Parametrization of linear coupled motion
in periodic systems. IEEE Transactions Nuclear Science, 20(3):885–888,
1973.
[26] D. Einfeld, J. Schaper, and M. Plesko. Design of a diffraction limited
light source (DIFL). In Proceedings of the 1995 Particle Accelerator
Conference, volume 1, pages 177–179. IEEE, 1996.
