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Progress on Deuteron-Induced Activation Cross Section Evaluation

PN2_IDEI_149/2007 [ http://proiecte.nipne.ro/pn2/ ] [ http://www.cncsis.ro/ ]. FENDL-3 1st Research Co-ordination Meeting NDS/IAEA, Vienna, 2-5 December 2008. Progress on Deuteron-Induced Activation Cross Section Evaluation.

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Progress on Deuteron-Induced Activation Cross Section Evaluation

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  1. PN2_IDEI_149/2007 [ http://proiecte.nipne.ro/pn2/] [ http://www.cncsis.ro/] FENDL-3 1st Research Co-ordination Meeting NDS/IAEA, Vienna, 2-5 December 2008 Progress on Deuteron-Induced Activation Cross Section Evaluation Marilena Avrigeanu1, Wolfram von Oertzen2, Robin Forrest3, Aura Obreja1, Faustin Roman1, Vlad Avrigeanu1 • http://tandem.nipne.ro/~vavrig/, http://fp6.cordis.lu/fp6/partners/RCN 49105 • EURATOM-MEdC Fusion Association, "Horia Hulubei" National Institute for Physics and • Nuclear Engineering, P.O. Box MG-6, Bucharest, Romania • Freie Universitat Berlin, Fachbereich Physik, 14195 Berlin, and Hahn-Meitner-Institut, • 14109 Berlin, Germany • (3) EURATOM-UKAEA Fusion Association, Culham Science Centre, Abingdon OX14 3DB, UK FENDL-3 1st Research Co-ordination Meeting, 2-5 December 2008, IAEA, Vienna

  2. Activation/transmutation data • General purpose neutron data library • Urgent need for qualified IFMIF reference data library • IEAF/EAF (n, p, d), to be further developed, improved and validated • Cross section measurements required for • neutrons (E >20 MeV): Cr, Co, V, W, Ta, Pb, Bi, Au, Mn • deuterons (E < 40 MeV): Cu,Al, Nb, • protons (E < 12 MeV): Cu, Al, Nb, Ta, W, Au, Pb • Validation experiments, to be extended/continued • Reliable gas production cross-section data (H, He) • Dosimetry data file to be developed for E > 20 MeV (IRDF) IFMIF Data Needs[U. Fischer,ND2007 & "Nuclear Data Libraries for Advanced Systems: Fusion Devices“, TM, Nov 2007, IAEA, Vienna] FENDL-3 1st Research Co-ordination Meeting, 2-5 December 2008, IAEA, Vienna

  3. Optical Potential - key ingredient of cross-sections calculations • NO GLOBAL OPTICAL POTENTIAL (OP) for d + Nucleus (A<27) • (basis of TW5-TTMI-004-D5) • COMPARATIVE ANALYSISofglobal OMPs for d + 27Al, 63,65Cu, 54,56,58Fe, 93Nb: • Lohr-Haeberli (1974): A~40-209, E=8-13 MeV • Perey-Perey (1963,1976): A~40-208, E=12-25 MeV • Daehnick et al. (1980): A~27-238, E=11.8-90 MeV • Bojowald et al. (1988): 27Al, 89Y, 120Sn, and 208Pb at Ed=58.7 and 85 MeV • None of these global OMP describes data at E<15 MeV • Semi-microscopic OMP byusing realistic nucleon-nucleon interaction • Average of the local OMP parameters for d+27Al,54,56Fe,63,65Cu,93Nb: • Phenomenological OMP → cross-sections calculations • Analysis of deuteron breakup mechanism: • Contribution of breakup to the reaction and activation cross sections • Direct Reactions contribution considered through stripping mechanism • Activation cross sections calculations for d+27Al interaction INTRODUCTION FENDL-3 1st Research Co-ordination Meeting, 2-5 December 2008, IAEA, Vienna

  4. 27Al + d: most recent phenomenological potentials FENDL-3 1st Research Co-ordination Meeting, 2-5 December 2008, IAEA, Vienna

  5. Nuclear Model Calculations OPTICAL MODEL: prime tool for all cross section calculations Phenomenological OMPglobal parameter sets: codes default Microscopic OPs:reduced uncertainties • SCAT 2000 [O. Bersillon] • - pure elastic scattering OP analysis M. Avrigeanu et al., Phys. Rev. C62 (2000) 017001 M. Avrigeanu et al., Nucl. Phys. A693 (2001) 616 M. Avrigeanu et al. Eur. Phys. J. A12 (2001) 399 M. Avrigeanu et al., Int. J. of Mod. Phys. E, 11 (2002) 249 M. Avrigeanu et al., Nucl. Phys. A723 (2003) 104 M. Avrigeanu et al., Nucl. Phys. A 759 (2005) 327 M. Avrigeanu et al, Nucl. Phys. A 764 (2006) 246 • DFOLD [M. Avrigeanu] • - double folding method (nucleons, d, 4,6,8He + 4-124A-target nuclei) • FRESCO - 2.3 [I.J. Thompson] • - Coupled Reaction Channel • STAPRE - H95 (updated) [V.Avrigeanu, M.Avrigeanu] • - OMP:SCAT2000; GDH / EXCITON; Hauser-Feshbach • TALYS - 1.0 [A. Koning, S. Hilaire, M. Duijvestijn] • - OMP:ECIS’97; EXCITON; Hauser-Feshbach FENDL-3 1st Research Co-ordination Meeting, 2-5 December 2008, IAEA, Vienna

  6. Microscopic Real Optical Potential FENDL-3 1st Research Co-ordination Meeting, 2-5 December 2008, IAEA, Vienna

  7. Approximations FENDL-3 1st Research Co-ordination Meeting, 2-5 December 2008, IAEA, Vienna

  8. Density distributions & NN-interactions FENDL-3 1st Research Co-ordination Meeting, 2-5 December 2008, IAEA, Vienna

  9. DF-real & phenomenological imaginary/s.o. potentials Phenomenological OMP FENDL-3 1st Research Co-ordination Meeting, 2-5 December 2008, IAEA, Vienna

  10. 1 (a)fpTBU= 0.087 – 0.0066 Z + 0.00163 Z A1/3 + 0.0017 A1/3E – 2E-6 ZE2 • 1 (b)fELBU= 0.031 – 0.0028 Z + 0.00051 Z A1/3 + 0.0005 A1/3E – 1E-6 ZE2 d breakup elastic 27Al + d27Al + n+ p inelastic(27Al + n)+p(28Al*) +p27Mg + p +p(2p ch. of 29Si* )24Na + α+p(pα ch. of 29Si*) inelastic(27Al +p)+n(28Si*) +n27Si + n +n(2n ch. of 29Si*) EmpiricalbreakupenhancementfBU from (d,p) & (d,n) systematics FENDL-3 1st Research Co-ordination Meeting, 2-5 December 2008, IAEA, Vienna

  11. Stripping contribution (FRESCO-code; 18 levels of 28Si) FENDL-3 1st Research Co-ordination Meeting, 2-5 December 2008, IAEA, Vienna

  12. Stripping contribution (FRESCO-code; 35 levels of 28Al) FENDL-3 1st Research Co-ordination Meeting, 2-5 December 2008, IAEA, Vienna

  13. Breakup energies for n & p Breakup & DR 27Al + d(27Al + n) + p (T) (B) (27Al + p) + n peak centroid: Ex = Ax/Ad*(Einc – 1.44ZdZT/(1.5AT1/3 + Rd) + 1.44ZxZB/(1.5AT1/3 + Rd) FWHM: D = 0.3 (Einc + 15 MeV ) (1 – AT/1500) [Kalbach, 2007] FENDL-3 1st Research Co-ordination Meeting, 2-5 December 2008, IAEA, Vienna

  14. BREAKUP contribution to the SECOND particle emission σBF(p)vsEdσBF(p)vsEdσBF(n)vsEd 27Al(n,p)27MgvsEn27Al(n,α)24NavsEn 27Al(p,n)27SivsEp 27Al(n,p)27MgvsEd 27Al(n,α)24NavsEd27Al(p,n)27SivsEd [via BF] [via BF] [via BF] FENDL-3 1st Research Co-ordination Meeting, 2-5 December 2008, IAEA, Vienna

  15. d + 27Al:Activation cross-sections FENDL-3 1st Research Co-ordination Meeting, 2-5 December 2008, IAEA, Vienna

  16. Activation cross sections ford + 63,65Cu [ former approach ] FENDL-3 1st Research Co-ordination Meeting, 2-5 December 2008, IAEA, Vienna

  17. CONCLUSIONS • Starting point: available (d,d) andsR data for d+27Al,54,56,58,natFe,63,65,natCu,93Nb • poor description by global OMP parameter sets • Semi-microscopic OMP analysis • UDF:ρd (charge) & ρAl (charge) & M3Y Paris-NN • WD & VSOphenomenological • improved agreement with data adding the dispersion corrections • Phenomenological OMP analysis for27Al • agreement with all available measured data • good description of (d,d) data vs. TALYS defaultOMPs • improved description of (d,d) data vs. globalOMPs • Completion of d+27Al activation cross sections • Deuteron break-up mechanism contribution taken into account • DR mechanism considered trough n & pstripping contributions • Comparison of STAPRE-H / TALYS-1 activation cross sections • NEED to UPDATE the d-activation libraries FENDL-3 1st Research Co-ordination Meeting, 2-5 December 2008, IAEA, Vienna

  18. Thank you FENDL-3 1st Research Co-ordination Meeting, 2-5 December 2008, IAEA, Vienna

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