Comparison of recoil properties of nuclei formed from the target $^{65}\mathrm{Cu}$ with theoretical calculations
Proceedings of the Yerevan State University. Physical and mathematical sciences, no. 3 (2006), pp. 36-39.

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The recoil properties of nuclei formed from the target $\mathrm{^{65}Cu}$ by the photons beam with the energy $E_{\gamma_{max}}=4.5~ GeV$ were compared with the theoretical calculations made by three versions of LAQGSM03 (Los-Aalamos version of the quark-gluon string model) model. the comparison showed that the experimental results are the best described by the LAQGSM0303.S1 and LAQGSM0303.G1 models.
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A. R. Balabekyan. Comparison of recoil properties of nuclei formed from the target $^{65}\mathrm{Cu}$ with theoretical calculations. Proceedings of the Yerevan State University. Physical and mathematical sciences, no. 3 (2006), pp. 36-39. http://geodesic.mathdoc.fr/item/UZERU_2006_3_a4/

[1] N. Sugarman, M. Campos, K. Wlelgoz, “Recoil Studies of High-Energy Proton Reactions in Bismuth”, Phys.Rev., 101 (1956), 388 | DOI

[2] L. Winsberg, “The analysis of thick-target thick-catcher nuclear recoil experiments”, Nucl. Instrum. Methods, 150 (1978), 465–477 | DOI

[3] L. Winsberg, “Systematics of particle-nucleus reactions. I. Parameters”, Phys. Rev. C, 22 (1978), 2116 | DOI

[4] R.G. Kortelling, C.R. Toren, E.K. Hyde, “Energy Spectra of Fragments from Silver and Uranium Bombarded with $5.0~GeV$ Protons”, Phys.Rev. C, 7 (1973), 1611 | DOI

[5] A. A. Arakelyan, A. R. Balabekyan et al., “Recoil properties of nuclei produced in the photospallation of $^{65}Cu$”, Nucl. Phys. A, 534 (1991), 535 | DOI

[6] S. G. Mashnik, K. K. Gudima, M. I. Baznat et al., “CEM03 and LAQGSM03: Extension of the CEM2k+GEM2 and LAQGSM Codes to Describe Photo-Nuclear Reactions at Intermediate Energies ($30~ Me$ to $1.5~ GeV$)”, J. Nucl. and Radiochemical Sci., 6:2 (2005), A1–A19 | DOI

[7] S. G. Mashnik, K. K. Gudima, M. I. Baznat et al., LANL Report LA-UR-05-2686, Los-Alamos, 2005

[8] S. G. Mashnik, K. K. Gudima, M. I. Baznat et al., LANL Report, LA-UR-06-1764, Los-Alamos, 2006

[9] S. G. Mashnik, K. K. Gudima, A. J. Sierk, User Manual for the code LAQGSM, LANL Report, LA-UR-01-6804, Los-Alamos, 2001

[10] V. D. Toneev, K. K. Gudima, “Particle emission in light and heavy ion reactions”, Nucl. Phys. A, 400 (1983), 173–189 | DOI

[11] S. G. Mashnik, K. K. Gudima, M. I. Baznat et al., CEM03.01 User Manual, LANL Report, LA-UR-05-7321, Los-Alamos, 2005

[12] S. G. Mashnik, K. K. Gudima, V. D. Toneev, “Cascade-exciton model of nuclear reactions”, Nucl. Phys. A, 401 (1983), 329 | DOI

[13] S. Furihata, “Statistical analysis of light fragment production from medium energy proton-induced reactions”, Nucl. Instrum. Methods B, 171 (2000), 251–258 | DOI

[14] J. P. Bondorf, A. S. Botvina et al., “Statistical multifragmentation of nuclei”, Phys. Rep., 257 (1995), 133–221 | DOI

[15] R.J. Charity, M.A. McMahan et al., “Systematics of complex fragment emission in niobium-induced reactions”, Nucl. Phys. A, 483 (1988), 371–405 | DOI