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Theoretical study of deuteron induced reactions on 6,7Li, 9Be and 19F targets

Theoretische Untersuchung von Deuteronen-induzierten Kernreaktionen an 6,7Li, 9Be und 19F Targets
  • M. Yiğit and E. Tel
From the journal Kerntechnik

Abstract

The nuclear reactions of the deuteron particles with light nuclei have been extensively investigated in the history of nuclear physics. In this work, the cross-sections of deuteron reactions 6Li(d,n)7Be, 6Li(d,t)5Li, 7Li(d,2n)7Be, 7Li(d,p)8Li, 7Li(d,t)6Li, 9Be(d,p)10Be, 9Be(d,t)8Be, 19F(d,n)20Ne and 19F(d,p)20F were studied for the investigation of structural fusion materials. Excitation functions of these reactions were determined by using ALICE-ASH code considering equilibrium (EQ) and pre-equilibrium (PEQ) effects. The calculated cross-sections, experimental results and TENDL-2011 library data are presented in graphical form.

Kurzfassung

Die Kernreaktionen von Deuteronen mit leichten Kernen wurden im Lauf der Zeit bereits umfangreich untersucht. In der vorliegenden Arbeit wurden die Wirkungsquerschnitte der Deuteron-Reaktionen 6Li(d,n)7Be, 6Li(d,t)5Li, 7Li(d,2n)7Be, 7Li(d,p)8Li, 7Li(d,t)6Li, 9Be(d,p)10Be, 9Be(d,t)8Be, 19F(d,n)20Ne und 19F(d,p)20F untersucht zur Erforschung von strukturellen Fusionsmaterialien. Die Anregungsfunktionen dieser Reaktionen wurden mit Hilfe des ALICE-ASH Codes bestimmt unter Berücksichtigung von Gleichgewichts- und Vor-Gleichgewichtseffekten. Die berechneten Wirkungsquerschnitte, die experimentellen Ergebnisse und Daten der TENDL-2011 Bibliothek werden in graphischer Form dargestellt.


* Corresponding Author, E-mail: ,

References

1 Yiğit, M.; Tel, E.; TanırG.: Calculations of Proton Emission Cross Sections in Deuteron Induced Reactions of Some Fusion Structural Materials. J. Fusion Energy.32 (2013) 317321 DOI: http://dx.doi.org/10.1007/s10894-012-9569-6Search in Google Scholar

2 Sadeghi, M.; Zandi, N.; Afarideh, H.: Targetry and specification of 167Tm production parameters by different reactions. J. Radioanal Nucl. Chem.291 (2012) 731738 DOI: http://dx.doi.org/10.1007/s10967-011-1422-2Search in Google Scholar

3 Sadeghi, M.; Enferadi, M.; Bakhtiari, M.: Accelerator production of the positron emitter zirconium-89. Annals of Nuclear Energy.41 (2012) 97103 DOI: http://dx.doi.org/10.1016/j.anucene.2011.11.014Search in Google Scholar

4 Hermanne, A.; Takács, S.; Adam-Rebeles, R.; Tárkányi, F.; Takács, M. P.: New measurements and evaluation of database for deuteron induced reaction on Ni up to 50 MeV. Nucl. Instrum. Methods Phys. Res. Sect. B.299 (2013) 823 DOI: http://dx.doi.org/10.1016/j.nimb.2013.01.005Search in Google Scholar

5 Yiğit, M.; Tel, E.; Kara, A.: Deuteron Induced (d, p) and (d, 2p) Nuclear Reactions up to 50 MeV. J. Fusion Energy.32 (2013) 362370 DOI: http://dx.doi.org/10.1007/s10894-012-9579-4Search in Google Scholar

6 Tárkányi, F.; Ditrói, F.; Takács, S.; Király, B.; HermanneA.; Sonck, M.; Baba, M.; Ignatyuk, A. V.: Investigation of activation cross-sections of deuteron induced nuclear reactions on natural Mo up to 50 MeV. Nucl. Instrum. Methods Phys. Res. Sect. B.274 (2012) 125 DOI: http://dx.doi.org/10.1016/j.nimb.2011.11.037Search in Google Scholar

7 Sitenko, A. G.: Interaction of Deuterons with Nuclei. Sov. Phys. Usp.67 (1959) 195342 DOI: http://dx.doi.org/10.1070/PU1959v002n02ABEH003121Search in Google Scholar

8 Adam Rebeles, R.; Van den Winkel, P.; Hermanne, A.; Tárkányi, F.; Takács, S.: Experimental excitation functions of deuteron induced reactions on natural thallium up to 50 MeV. Nucl. Instrum. Methods Phys. Res. Sect. B.288 (2012) 94101 DOI: http://dx.doi.org/10.1016/j.nimb.2012.05.044Search in Google Scholar

9 Tel, E.; Yiğit, M.; Tanır, G.: Cross Sections Calculations of (d, t) Nuclear Reactions up to 50 MeV. J. Fusion Energy.32 (2013) 273277 DOI: http://dx.doi.org/10.1007/s10894-012-9550-4Search in Google Scholar

10 Aydın, E. G.; Tel, E.; Kaplan, A.; Aydın, A.: New Calculations of excitation functions of some positron emitting and single photon emitting radioisotopes. Kerntechnik.73 (2008) 184189 DOI: http://dx.doi.org/10.3139/124.100563Search in Google Scholar

11 Büyükuslu, H.; Kaplan, A.; Yıldırım, G.; Aydın, A.; Tel, E.; Bolukdemir, M. H.: Production cross sections of medical In-110, In-111 radionuclides. Kerntechnik. 75 (2010) 103108 DOI: http://dx.doi.org/10.3139/124.110067Search in Google Scholar

12 Šimečková, E.; Bém, P.; Honusek, M.; Štefánik, M.: Low and medium energy deuteron-induced reactions on 63, 65Cu nuclei. Physical Review C.84 (2011) 014605 DOI: http://dx.doi.org/10.1103/PhysRevC.84.014605Search in Google Scholar

13 World Nuclear Association (http://www.world-nuclear.org/Nuclear-Basics/) (2013)Search in Google Scholar

14 Raole, P. M.; Deshpande, S. P.: Structural materials for fusion reactors. Transactions of the Indian Institute of Metals.62 (2009) 105111 DOI: http://dx.doi.org/10.1007/s12666-009-0014-0Search in Google Scholar

15 Tomberlin, T. A.: Beryllium-A Unique Material In Nuclear Applications. 36th International SAMPE Technical Conference. November 15 (2004)Search in Google Scholar

16 Rubel, M.: Structure Materials In Fusion Reactors: Issues Related To Tritium, Radioactivity And Radiation-Induced Effects. Fusion Sci. Technol.53 (2008) 45910.13182/FST08-A1731Search in Google Scholar

17 Rabaglino, E.: Helium and Tritium in Neutron-irradiated Beryllium. (2004)Search in Google Scholar

18 Holcomb, D. E.; Cetiner, S. M.: An Overview of Liquid-Fluoride-Salt Heat Transport Systems. ORNL/TM-2010/156. Oak Ridge National Laboratory. Oak Ridge Tenn. September (2010)10.2172/990239Search in Google Scholar

19 Kara, A.; Tel, E.: Neutronic Cross Section Calculations on Fluorine Nucleus. J. Fusion Energ32 (2013) 400404 DOI: http://dx.doi.org/10.1007/s10894-012-9585-6Search in Google Scholar

20 BlannM.; VonachH. K.: Global test of modified pre-compound decay models. Phys. Rev. C.28 (1983) 14751492 DOI: http://dx.doi.org/10.1103/PhysRevC.28.1475Search in Google Scholar

21 Blann, M.: Hybrid Model for pre-equilibrium decay in nuclear reactions. Phys. Rev. Lett.27 (1971) 337340 DOI: http://dx.doi.org/10.1103/PhysRevLett.27.1550Search in Google Scholar

22 Weisskopf, V. F.; Ewing, D. H.: On the yield of nuclear reactions with heavy elements. Phys. Rev.57 (1940) 472 DOI: http://dx.doi.org/10.1103/PhysRev.57.472Search in Google Scholar

23 Broeders, C. H. M.; Konobeyev, Yu. A.; Korovin, Yu. A.; Lunev, V. P.; Blann, M.: ALICE/ASH-Pre-compound and evaporation model code system for calculation of excitation functions energy and angular distributions of emitted particles in nuclear reactions at intermediate energies. (2006)Search in Google Scholar

24 Blann, M.: Code ALICE-91 PSR-146, Statistical Model Code System with Fission Competition, OAK Ridge National Laboratory, RSICC Peripheral Shielding Routine Collection, Lawrence Livermore National Laboratory, Livermore, California and IAEA, (1991)Search in Google Scholar

25 Strutinsky, V. M.: Proc. Int. Cong. Phys. Nucl. Appl. Paris. p. 617 (1958)Search in Google Scholar

26 Ericson, T.: Adv. Phys.9 (1960) 425 DOI: http://dx.doi.org/10.1080/00018736000101239Search in Google Scholar

27 Blann, M.: New Precompound Decay Model. Phys. Rev. C.54 (1996) 1341 DOI: http://dx.doi.org/10.1103/PhysRevC.54.1341Search in Google Scholar

28 Koning, A. J.; Rochman, D.: TALYS-based evaluated nuclear data library. Nuclear Research and Consultancy Group (NRG). Petten. The Netherlands. ftp://ftp.nrg.eu/pub/www/talys/tendl2011/deuteron_html/deuteron.html (2011)Search in Google Scholar

29 EXFOR/CSISRS (Experimental Nuclear Reaction Data File). Database Version of May 08. 2013. Brookhaven National Laboratory, National Nuclear Data Center. (http://www.nndc.bnl.gov/exfor/exfor00.htm) (2013)Search in Google Scholar

30 Vysotskij, O. N.; Gorpinich, O. K.; Zaritskij, V. S.; Kondratyev, S. N.; Prokopenko, V. S.; Rakitin, S. B.; Sklyarenko, V. D.; Stepanenko, V. A.; Tokarevskij, V. V.: Excitation Functions of 6Li(D, N)7Be and 7Li(D, 2N)7Be. Conf. 40. Conf. Nucl. Spectroscopy Nucl. Struct. Leningrad. (1990) p.338Search in Google Scholar

31 Guzhovskij, B. Ja.; Abramovich, S. N.; Zvenigorodskij, A. G.; Slepcov, G. N.; Trusillo, S. V.: Cross sections of Be-7 producing for the interactions of deutrons and tritons with lithium isotopes. Izv. Rossiiskoi Akademii Nauk. Ser. Fiz.44 (1980) p. 1983Search in Google Scholar

32 Macklin, R. L.; Banta, H. E.: Tritium Production from Lithium by Deuteron Bombardment. Phys. Rev.97 (1955) 753757 DOI: http://dx.doi.org/10.1103/PhysRev.97.753Search in Google Scholar

33 Abramovich, S. N.; Guzhovskij, B. Ja.; Zvenigorodskij, A. G.; Trusillo, S. V.; Dunaeva, S. A.: The investigation of the 9Be high excited states in the 6Li(t, p)8Li and 7Li(d, p)8Li reactions. Izv. Rossiiskoi Akademii Nauk. Ser. Fiz.50 (1986) p. 65Search in Google Scholar

34 McClenahan, C. R.; Segel, R. E.: Cross sections for the 7Li(d, p)8Li, 6Li(3He, n)8B, 6Li(d, α)4He, 6Li(d, p)7Li, and 6Li(d, n)7Be reactions. Phys. Rev. C.11 (1975) 370382 DOI: http://dx.doi.org/10.1103/PhysRevC.11.370Search in Google Scholar

35 Generalov, L. N.; Abramovich, S. N.; Zvenigorodskii, A. G.: 9Be(d, p0, 1) and 9Be(d, t0) reaction cross sections. Izv. Rossiiskoi Akademii Nauk. Ser. Fiz.64 (2000) p. 440Search in Google Scholar

36 Heft, R. E.; Libby, W. F.: Absolute Cross Sections for Deuterons on Beryllium. Phys. Rev.100 (1955) 799813 DOI: http://dx.doi.org/10.1103/PhysRev.100.799Search in Google Scholar

37 Bertrand, F.; Grenier, G.; Pornet, J.: Investigation of the reactions 9Be(d, a0)7Li, 9Be(d, a1)7Li*9Be(d, t)8Be and 9Be(d, p0)10Be in the energy interval from 300 keV to 1000 keV. Report: Centre d'Etudes Nucleaires, Saclay Reports. France. No. 3504 (1968)Search in Google Scholar

38 Wolegang, R. L.; Libby, W. F.: Absolute Excitation Function of the Be9(d, t) Reaction. Phys. Rev.85 (1952) 43744010.1103/PhysRev.85.437Search in Google Scholar

39 Serov, V. I.; Pereshivkii, V. A.; Andreev, M. F.; Aver'yanov, I. K.: Investigation of the reaction Be9(d, t)Be8. The Soviet Journal of Atomic Energy.11 (1962) 10841086 DOI: http://dx.doi.org/10.1007/BF01490493Search in Google Scholar

40 Zwieglinski, B.: Direct and resonance processes in 9Be(d, p0, 1)10Be and 9Be(d, t0)8Be at low energies. Nuclear Physics A.250 (1975) 93105 DOI: http://dx.doi.org/10.1016/0375-9474(75)90202-XSearch in Google Scholar

Received: 2013-10-23
Published Online: 2014-03-12
Published in Print: 2014-03-17

© 2014, Carl Hanser Verlag, München

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