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Technical Paper

The Fragment Distribution of Nb, Au, and Pb from Proton-Induced Reactions with Energies Ranging from 100 MeV to 3 GeV

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Pages 219-226 | Published online: 10 Apr 2017

References

  • C. D. BOWMAN, E. D. ARTHUR, P. W. LISOWSKI, P. LAWRENCE, R. J. JENSEN, J. L. ANDERSON, B. BLIND, M. CAPPIELLO, J. W. DAVIDSON, T. R. ENGLAND, L. N. ENGEL, R. C. HAIGHT, H. G. HUGHES, J. R. IRELAND, R. A. KRAKOWSKI, R. J. LABAUVE, B. C. LETELLIER, R. T. PERRY, G. J. RUSSELL, K. P. STAUDHAMMER, G. VERSAMIS, and W. B. WILSON, “Nuclear Energy Generation and Waste Transmutation Using an Accelerator-Driven Intense Thermal Neutron Source,” Nucl. Instrum. Methods A, 320, 336 (1992).
  • C. RUBBIA, J. A. RUBIO, S. BUONO, F. CARMINATI, N. FIETIER, J. GALVEZ, C. GELES, Y. KADI, R. KLAPISCH, P. MANDRILLON, J. P. REVOL, and CH. ROCHE, “Conceptual Design of a Fast Neutron Operated High Power Energy Amplifier,” CERN/AT/95-45(ET), CERN (1995).
  • R. MICHEL, M. GLORIS, H. J. LANGE, I. LEYA, M. LUEPKE, U. HERPERS, B. DITTRICH-HANNEN, R. ROESEL, TH. SCHIEKEL, D. FILGES, P. DRAGOVITSCH, M. SUTER, H. J. HOFMANN, W. WOELFLI, P. W. KUBIK, H. BAUR, and R. WIELER, “Nuclide Production by Proton-Induced Reactions on Elements (6 < Z < 29) in the Energy Range from 800 to 2600 MeV,” Nucl. Instrum. Methods B, 103, 183 (1995).
  • M. GLORIS, R. MICHEL, U. HERPERS, F. SUDBROCK, and D. FILGES, “Production of Residual Nuclei from Irradiation of Thin Pb-Targets with Protons up to 1.6 GeV,” Nucl. Instrum. Methods B, 113, 429 (1996).
  • R. MICHEL, R. BODEMANN, H. BUSEMANN, R. DAUNKEM.GLORIS, H. J. LANGE, B. KLUG, A. KRINS, I. LEYA, M. LUEPKE, S. NEUMANN, H. REINHARDT, M. SCHNATZ-BUETTGEN, U. HERPERS, TH. SCHIEKEL, F. SUDBROCK, B. HOLMQVIST, H. CONDE, P. MALMBORG, M. SUTER, B. DITTRICH-HANNEN, P. W. KUBIK, H. A. SYNAL, and D. FILGES, “Cross Sections for the Production of Residual Nuclides by Low-and Medium-Energy Protons from the Target C, N, O, Mg, al, Al, Si, Ca, Ti, V, Mn, Fe, Co, Ni, Cu, Sr, Y, Zr, Nb, Ba, and Au,” Nucl. Instrum. Methods B, 129, 153 (1997).
  • M. GLORIS, R. MICHEL, F. SUDBROCK, U. HERPERS, P. MALMBORG, and B. HOLMQVIST, “Proton-Induced Production of Residual Radionulides in Lead at Intermediate Energies,” Nucl. Instrum. Methods A, 463, 593 (2001).
  • S. B. KAUFMAN, M. W. WEISBELD, F. P. STEINBERG, B. D. WILKING, and D. HENDERSON, “Nuclear Reaction of 197Au with 11.5-and 300-GeV Protons,” Phys. Rev. C, 14, 1121 (1976).
  • S. B. KAUFMAN and F. P. STEINBERG, “Cross-Section Measurements of Nuclides Formed by the Reaction of 0.206.0 GeV Protons with 197Au,” Phys. Rev. C, 22, 167 (1980).
  • K. SUEMMERER, W. BRUECHLE, D. J. MORRISSEY, M. SCHAEDEL, B. SZWERYD, and Y. WEIFAO, “Target Fragmentation of Au and Th by 2.6 GeV Protons,” Phys. Rev. C, 42, 2456 (1990).
  • T. A. CABRIEL, R. G. ALSMILLER, and M. P. GUTHRIE, “An Extrapolation Method for Predicting Nucleon and Pion Differential Production Cross Sections from High-Energy (>3GeV) Nucleon-Nucleus Collisions,” ORNL-4542, Oak Ridge National Laboratory (1970).
  • R. E. PRAEL and H. LICHTENSTEIN, “User Guide to LCS: The LAHET Code System,” LA-UR-89-3014, Los Alamos National Laboratory (1989); available on the Internet at 〈http://www-xdiv.lanl.gov/XTM/LSC/lahet-doc.html〉.
  • J. AICHELIN, G. PEILERT, A. BOHNET, A. ROSEN-HAUER, H. STOCKER, and W. GREINER, “Quantum Molecular Dynamics Approach to Heavy Ion Collisions: Description of the Model, Comparison with Fragmentation Data, and the Mechanism of Fragment Formation,” Phys. Rev. C, 37, 2451 (1988).
  • G. PEILERT, J. KONOPKA, H. STOCKER, W. GREINER, M. BLANN, and M. G. MUSTAFA, “Dynamical Treatment of Fermi Motion in a Microscopic Description of Heavy Ion Collisions,” Phys. Rev. C, 46, 1457 (1992).
  • S. FAN, Z. LI, and Y. XIAO, “Fragment Distribution Analysis of Proton-Induced Reactions with Intermediate Energy Using Quantum Molecular Dynamics plus Fission Models,” Nucl. Sci. Eng., 137, 89 (2001).
  • S. FAN, Z. LI, Z. ZHAO, and D. DING, “Analysis of Proton-Induced Reactions on 208Pb with Incident Energies590 MeV and 322 MeV,” Eur. Phys. J. A, 4, 61 (1999).
  • K. K. GUDIMA, S. G. MSHNIK, and V. D. TONEEV, “Cascade-Exciton Model of Nuclear Reactions,” Nucl. Phys. A, 401, 329 (1983).
  • S. G. MSHNIK, A. J. SIERK, O. BERSILLON, and T. GABRIEL, “Cascade-Exciton Model Detailed Analysis of Proton Reduced Reactions from 10-MeV to 5-GeV,” Nucl. Instrum. Methods A, 414, 68 (1998).
  • A. DEMENTYEV and N. SOBOLEVSKY, “SHIELD-Universal Monte Carlo Hadron Transport Code: Scope and Applications,” Radiat. Measurements, 30, 553 (1999).
  • A. DEMENTYEV, V. GURENTSOV, O. RYAZHSKAYA, and N. SOBOLEVSKY, “Production and Transport of Hadrons Generated in Nuclear Cascade Initiated by Muons in the Rock,” Nucl. Phys. B (Proc. Suppl), 70, 486 (1999).
  • K. NIITA, S. CHIBA, T. MARUYAMA, T. MARUYAMA, H. TAKADA, T. FUKAHORI, Y. NAKAHARA, and A. IWAMOTO, “Analysis of the (n, xn’) Reactions by Quantum Molecular Dynamics plus Statistical Decay Model,” Phys. Rev. C, 52, 2620 (1995).
  • S. CHIBA, O. IWAMOTO, T. FUKAHORI, K. NIITA, T. MARUYAMA, T. MARUYAMA, and A. IWAMOTO, “Analysis of Proton-Induced Fragment Production Cross Sections by Quantum Molecular Dynamics plus Statistical Decay Model,” Phys. Rev. C, 54, 285 (1996).

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