-
[Mcx]
-
See http://www.mcxtrace.org (cit. on pp. 29, 43).
-
[Tra]
-
See http://trac.edgewall.com (cit. on p. 29).
-
[Nis]
-
See http://www.nist.gov/pml/data/ffast/index.cfm (cit. on pp. 40, 128,
157).
-
[Mcz]
-
See http://trac.mccode.org/report (cit. on p. 44).
-
[Sha]
-
See http://www.esrf.eu/computing/scientific/raytracing/ (cit. on p. 51).
-
[ANM11]
-
J Als-Nielsen and D McMorrow. Elements of modern X-ray physics. Wiley,
2011 (cit. on p. 71).
-
[Bac75]
-
G.E. Bacon. Neutron Diffraction. Oxford University Press, 1975 (cit. on pp.
184, 217).
-
[Bau+07]
-
Sondes Trabelsi Bauer et al. “Simulation of X-ray beamlines with the new ray
tracing tool¡ i¿ X¡/i¿ Trace”. In: Nuclear Instruments and Methods in Physics
Research Section A: Accelerators, Spectrometers, Detectors and Associated
Equipment 582.1 (2007), pp. 90–92 (cit. on p. 51).
-
[Bea67]
-
J A Bearden. “X-ray wavelengths”. In: Reviews of Modern Physics 39.1
(1967), p. 78 (cit. on pp. 97, 100).
-
[BK+13]
-
Erik Bergbäck Knudsen et al. “McXtrace”. English. In: Journal of Applied
Crystallography 46.3 (2013), pp. 679–696. issn: 00218898, 16005767. doi:
10.1107/S0021889813007991 (cit. on p. 114).
-
[Ber17]
-
Mads Bertelsen. “Software for simulation and design of neutron scattering
instrumentation”. PhD thesis. University of Copenhagen, 2017 (cit. on pp.
788, 805).
-
[BJL17]
-
Mads Bertelsen, Henrik Jacobsen, and Kim Lefmann. “Expanding the
McStas sample simulation logic with McStas Union components”. In: Review
of Scientific Instruments 88 (2017), p. 085106. doi: 10.1063/1.4994697
(cit. on p. 788).
-
[GRR92]
-
Grimmett, G. R., and Stirzakerand D. R. Probability and Random Processes,
2nd Edition. Clarendon Press, Oxford, 1992 (cit. on p. 51).
-
[Jam80]
-
F. James. In: Rep. Prog. Phys. 43 (1980), p. 1145 (cit. on pp. 50, 51, 60).
-
[Knu+14]
-
E. B. Knudsen et al. Users’ and Programmers’ Guide to the X-ray tracing
Package McXtrace, version 1.2. DTU Physics, 2014 (cit. on pp. 28, 43, 44,
183).
-
[Kra23]
-
H. A. Kramers. “XCIII. On the theory of X-ray absorption and of
the continuous X-ray spectrum”. In: Philosophical Magazine Series 6
46.275 (Nov. 1923), pp. 836–871. issn: 1941-5982. doi: 10 . 1080 /
14786442308565244 (cit. on p. 97).
-
[KO79]
-
MO Krause and JH Oliver. “Natural widths of atomic K and L levels, Ka
X-ray lines and several KLL Auger lines”. In: J. Phys. Chem. Ref. Data 8
(1979), pp. 329–338 (cit. on pp. 97, 100).
-
[LN99]
-
K. Lefmann and K. Nielsen. “McStas, a general software package for neutron
ray-tracing simulations”. In: Neutron News 10 (1999), pp. 20–23. doi: 10.
1080/10448639908233684 (cit. on p. 28).
-
[MN98]
-
Makoto Matsumoto and Takuji
Nishimura. “Mersenne twister: a 623-dimensionally equidistributed uniform
pseudo-random number generator”. In: ACM Transactions on Modeling and
Computer Simulation (TOMACS) 8.1 (1998), pp. 3–30 (cit. on p. 824).
-
[Pre+86]
-
W. H. Press et al. Numerical Recipes in C. Cambridge University Press, 1986
(cit. on p. 824).
-
[Rio+11]
-
M Sanchez del Rio et al. “SHADOW3: a new version of the synchrotron
X-ray optics modelling package”. In: Journal of Synchrotron Radiation 18.5
(2011), p. 0 (cit. on pp. 51, 306).
-
[Sch08]
-
F Schäfers. “The BESSY raytrace program RAY”. In: Modern Developments
in X-Ray and Neutron Optics (2008), pp. 9–41 (cit. on p. 51).
-
[SKS96]
-
A Snigirev, V Kohn, and I Snigireva. “A compound refractive lens for
focusing high-energy X-rays”. In: Nature (1996) (cit. on p. 138).
-
[Squ78]
-
G.L. Squires. Thermal Neutron Scattering. Cambridge University Press, 1978
(cit. on p. 220).
-
[TK01]
-
Takashi Tanaka and Hideo Kitamura. “SPECTRA: a synchrotron radiation
calculation code”. In: Journal of Synchrotron Radiation 8.6 (2001),
pp. 1221–1228. doi: 10.1107/S090904950101425X (cit. on p. 71).
-
[WCC94]
-
C Welnak, G J Chen, and F Cerrina. “SHADOW: A synchrotron radiation
and X-ray optics simulation tool”. In: Nuclear Instruments and Methods
in Physics Research Section A: Accelerators, Spectrometers, Detectors and
Associated Equipment 347.1-3 (1994), pp. 344–347 (cit. on p. 51).