Phys. Rev. ST Accel. Beams 10, 060701 (2007)
Wavefront tracking within the stationary phase approximation
Johannes Bahrdt
(Some reference links may require a separate subscription.)
-
TESLA-Technical Design Report (Supplement), TESLA-FEL Note 2002-9, edited by R. Brinkmann et al., 2002.
-
Linac Coherent Light Source (LCLS), Conceptual Design Report, SLAC-R-593, 2002.
-
T. Shintake, Nucl. Instrum. Methods Phys. Res., Sect. A 507, 382 (2003) [CrossRef][ADS][CAS].
-
R. Bonifacio et al., Nucl. Instrum. Methods Phys. Res., Sect. A 296, 787 (1990) [CrossRef][ADS].
-
L. H. Yu, Phys. Rev. A 44, 5178 (1991) [SPIN][INSPEC][CAS].
-
X. J. Wang et al., Proceedings of the 26th International FEL Conference, Trieste, Italy, 2004, pp. 209–211.
-
J. Bahrdt et al., Proceedings of the EPAC 2006, Edinburgh, Scotland, pp. 59–61.
-
C. Bochetta et al., Proceedings of the 27th International FEL Conference, Stanford, CA, 2005, pp. 632–685.
-
The BESSY Soft X-ray Free Electron Laser, Technical Design Report, 2004, edited by D. Krämer, E. Jaeschke, and W. Eberhardt (BESSY, Berlin, 2004).
-
M.-E. Couprie et al., Proceedings of the 27th International FEL Conference, Stanford, CA, 2005, pp. 55–58.
-
A. Andersson et al., Proceedings of the 26th International FEL Conference, Trieste, Italy, 2004, pp. 190–192.
-
D. Wang et al., Proceedings of 2005 PAC, Knoxville, Tennessee, pp. 1961–1963.
-
J. Qi-ka et al., Proceedings of the 26th International FEL Conference, Trieste, Italy, 2004, pp. 494–497.
-
J. Feldhaus et al., Opt. Commun. 140, 341 (1997) [INSPEC][ADS][CAS].
-
J. Bahrdt et al., Proceedings of the 28th International FEL Conference, Berlin, Germany, 2006, pp. 521–528.
-
K. Goldammer et al., Proceedings of the 27th International FEL Conference, Stanford, CA, 2005, pp. 23–26.
-
M. Abo-Bakr et al., Proceedings of the 27th International FEL Conference, Stanford, CA, 2005, pp. 19–22.
-
J. Bahrdt, Appl. Opt. 34, 114 (1995) [SPIN].
-
J. Bahrdt, Appl. Opt. 36, 4367 (1997) [SPIN].
-
J. D. Jackson, Classical Electrodynamics (John Wiley and Sons, New York, 1975), 2nd ed., p. 431.
-
J. W. Goodman, Introduction to Fourier Optics, McGraw-Hill Physical and Quantum Electronics Series (McGraw-Hill, New York, 1968).
-
G. N. Lawrence, Optical Modeling, in Applied Optics and Optical Engineering, edited by R. R. Shannon and J. C. Wyant (Academic, New York, 1992), Vol. 11.
-
GLAD, Theory Manual, Applied Optics Research, 1087 Lewis River Road, 217 Woodland, WA, 2004.
-
ZEMAX, Optical Design Program, User’s Manual, ZEMAX Development Corporation, 2005.
-
L. Mandel and E. Wolf, Optical Coherence and Quantum Optics (Cambridge University Press, Cambridge, England, 1995) [ADS].
-
M. Born and E. Wolf, Principles of Optics (Pergamon Press, Oxford, 1980), 6th ed [ADS].
-
W. B. Westerfeld et al., Appl. Opt. 24, 2256 (1985) [SPIN][INSPEC][ADS][CAS].
-
R. Feynman, QED–The Strange Theory of Light and Matter (Princeton University Press, Princeton, 1985).
-
W. Press, B. Flannery, S. Teukolsky, and W. Vetterling, Numerical Recipes in C (Cambridge University Press, Cambridge, England, 1991) [ADS].
-
S. Reiche, Nucl. Instrum. Methods Phys. Res., Sect. A 429, 243 (1999) [CrossRef][INSPEC][ADS][CAS].
-
A. Meseck et al., 27th International FEL Conference, Stanford, CA, 2005, pp. 43–46.
-
J. Bahrdt and U. Flechsig, in Gratings and Grating Monochromators for Synchrotyron Radiation, Proc. SPIE Int. Soc. Opt. Eng. Vol. 3150 (SPIE-International Society for Optical Engineering, San Diego, 1997), pp. 158–170.
-
A. C. Hearn, REDUCE 3.5, A General Purpose Algebra System (RAND, Santa Monica, California, 1993), http://www.uni-koeln.de/REDUCE/.
-
PORT 3 Mathematical Subroutine Library, AT&T Bell Laboratories, New Jersey, USA, 1984.
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