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Monte Carlo treatment of multiple Coulomb scattering in pion‐beam dose calculations
1.J. E. Turner, J. Dutrannois, H. A. Wright, R. N. Hamm, J. Baarli, A. H. Sullivan, M. J. Berger, and S. M. Seltzer, Radiat. Res. 52, 229 (1972).
2.H. A. Wright, R. N. Hamm, and J. E. Turner (unpublished).
3.Bruno Rossi, High‐Energy Particles (Prentice‐Hall, Englewood Cliffs, N.J., 1952), p. 569.
4.Hans A. Bethe and Julius Ashkin in Experimental Nuclear Physics, edited by E. Segrè (Wiley, New York, 1953), Vol. 1, p. 166.
5.William T. Scott, Rev. Mod. Phys. 35, 231 (1963).
6.U. Fano, Ann. Rev. Nucl. Sci. 13, 1 (1963).
7.Martin J. Berger in Methods in Computational Physics, Vol. 1 of Statistical Physics (Academic, New York, 1963), p. 135.
8.Hans Bichsel in American Institute of Physics Handbook, 3rd ed., edited by Dwight E. Gray (McGraw‐Hill, New York, 1972), p. 8–20.
9.P. H. Fowler and D. H. Perkins, Nature 189, 524 (1961).
10.These formulas were also utilized by Curtis and Raju (Ref. 11), but with different numerical coefficients, in their treatment of a pion‐beam incident on a water target.
11.Stanley B. Curtis and Mudundi R. Raju, Radiat. Res. 34, 239 (1968).
12.IBM 360 Model 91.
13.G. Molière, Z. Naturforsch A 3, 78 (1948).
14.Bruno Rossi, High‐Energy Particles (Prentice‐Hall, Englewood Cliffs, N.J., 1952), p. 71, Eq. (6).
15.V. E. Anderson, R. N. Hamm, J. E. Turner, H. A. Wright, R. G. Alsmiller, Jr., and T. W. Armstrong, Oak Ridge National Laboratory Report No. ORNL‐TM‐4296, 1974 (unpublished).
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