587
Views
18
CrossRef citations to date
0
Altmetric
Nuclear Reaction Data and Evaluated Data Libraries: Measurements

Determination of the Cross Sections of (n, x) Nuclear Reactions on Y, La, Ta, Pb and Bi at the Energy of Neutrons About 14 MeV

, , , , , & show all
Pages 425-428 | Published online: 27 Aug 2014

References

  • S.V. Begun, I.M. Kadenko, V.K. Maidanyuk, et al., “Cross sections of (n, x) nuclear reactions on 89Y, l39La and 181Ta at the energy of neutrons 14.6 MeV,” Izv. Akad. Nauk (Russia), Ser. Phys., 64[5], 1017 (2000).
  • S.V. Begun, I.M. Kadenko, V.K. Maidanyuk, et al., “Determination of the cross sections of (n, x) nuclear reactions for lead and bismuth at the energy of neutrons 14.6 MeV,” Scientific Papers of the Institute for Nuclear Research (Kyiv, Ukraine), 2[4], 53 (2001).
  • S.V. Begun, I.M. Kadenko, V.K. Maidanyuk, et al., “Excitation function of nuclear reaction 181Ta(n, α)178gLu in a neutron energy range 13.5÷14.6 MeV,” Bulletin of Kyiv University (Ukraine), Ser. Phys.& Math., 1, 396 (2001).
  • A.A. Filatenkov, S.V. Chuvaev, Systematic Activation Cross Section Measurement at Neutron Energies Around 14 MeV, Preprint RI-252, Khlopin Radium Institute (RI), (St.-Petersburg, Russia), (1999).
  • H. Vonach, 1991 NEANDC/INDC Nuclear Standards File. Nuclear Data Standards for Nuclear Measurements. The 27Al(n, a)24Na Cross Section, NEANDC–311 “U”, INDC(SEC)–101, Nuclear Energy Agency Nuclear Data Committee (NEANDC), p.75(1992).
  • Cross Section Information Storage and Retrieval System (EXFOR), IAEA, http://www-nds.iaea.or.at/exfor/.
  • Computer Index of Neutron Data (CINDA), IAEA, http://www–nds.iaea.or.at/cinda/cinda.html.
  • H.M. Agrawal, R. Pepelnik, “Determination of the mean neutron energy using the Zr/Nb and the Ni method, ” Nucl. Instrum. and Meth. in Phys. Res., A366, 349 (1995).
  • R.B. Firestone, Table of Isotopes CD-ROM, Eight Edition, Version 1.0, (1996).
  • S.Y.F. Chu, L.P. Ekstrőm, R.B. Firestone, The Lund/LBNL Nuclear Data Search, Version 2.0, February 1999, http://nucleardata.nuclear.lu.se/NuclearData/toi/mdex.asp.
  • G.J. McCallum, G.E. Coote, “Influence of source-detector distance on relative intensity and angular correlation measurements with Ge(Li) spectrometers, ” Nucl. Instrum, and Meth., 130[1], 189 (1972).
  • E. Dobreva, D. Kolev, N. Nenoff, “On coincidence summing effects and the influence of absorbers in close geometry measurements, ” Bulg. J. Phys., 16[2], 194 (1989).
  • F. de Corte, M. Carmo Freitas, “The correction for γ-γ, γ-KX and γ-LX true-coincidences in k0-standardized NAA with counting in a LEPD,” J. Radioanalyt. Nucl. Chem., Articles, 160[1], 253 (1992).
  • M. Uhl, B. Strohmaier, STAPRE. A Computer Code for Particle Induced Activation Cross Sections and Related Quantities, IRK 76/01 with Addenda, Institut fur Radiumforschung und Kemphysik der Österreichischen Akademie der Wissenschaften (IRK), (Vienna), (1976).
  • M. Avrigeanu, M. Ivascu, V. Avrigeanu, STAPRE-H. A Computer Code for Particle Induced Activation Cross Sections and Related Quantities, NP-63-1987, Institute for Physics and Nuclear Engineering (IPNE), (Bucharest), (1987).
  • M. Avrigeanu, V. Avrigeanu, Recent Improvements of the STAPRE-H95 Preequilibrium and Statistical Model Code, NP-86-1995, Institute for Physics and Nuclear Engineering (IPNE), (Bucharest), (1995).
  • M. Avrigeanu, V. Avrigeanu, “Energy-dependent singe-particle state density effects in the hybrid model of preequilibrium nuclear reactions,” J. Phys., G20, 613 (1994).
  • Reference Input Parameter Library. Handbook for Calculations of Nuclear Reaction Data. (Final Report of a Coordinated Research Project), IAEA–TECDOC. RIPL, International Atomic Energy Agency (IAEA), (1998).
  • F.D. Becchetti Jr., G.W. Greenlees, “Nucleon-nucleus optical-model parameters, A>40, E<50 MeV,” Phys. Rev., 182[4], 1190 (1969).
  • D. Wilmore, P.E. Hodgson, “The calculation of neutron cross-sections from optical potentials,” Nucl. Phys., 55[4], 673 (1964).
  • F.G. Perey, “Optical-model analysis of proton elastic scattering in the range of 9 to 22 MeV,” Phys. Rev., 131[2], 745 (1963).
  • L. McFadden, G.R. Satchler, “Optical-model analysis of the scattering of 24.7 MeV alpha particles,” Nucl. Phys., 84[1], 177 (1966).
  • C.M. Perey, F.G. Perey, “Deuteron optical-model analysis in the range of 11 to 27 MeV,” Phys. Rev., 132[2], 755 (1963).
  • W. Dilg, W. Schantl, H. Vonach, “Level density parameters for the back-shifted Fermi gas model in the mass range 40<A<250,” Nucl. Phys., A217, 269 (1973).
  • C. Kalbach, “The Griffin model, complex particles and direct nuclear reactions,” Z. Phys., A283[4], 401 (1977).
  • M. Avrigeanu, V. Avrigeanu, G. Căta, M. Ivaşcu, “EDBW model for the El gamma-ray strength function in the mass region 50≤A≤90,” Rev. Roum. Phys., 32[8], 837 (1987).

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.