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2024年10月30日

Nuclear data for the cyclotron production of 117Sb and 90Nb

  • This presented study is to make comparison of cross sections to produce 117Sb and 90Nb via different reactions with particle incident energy up to 70 MeV as a part of systematic studies on particle-induced activations on enriched Sn, Y2O3 and ZrO2 targets, theoretical calculation of production yield, calculation of required thickness of target and suggestion of optimum reaction to produce Antimony-117 and Niobium-90.
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  • [1] Rosch F, Herzog H, Stolz B et al. Eur. J. Nucl. Med., 1999, 26: 358-3662 Thisgaard H, Jensen M. Med. Phys., 2008, 35: 3839-38463 Thisgaard H. Accelerator Based Production of Auger-Electron Emitting Isotopes for Radionuclide Therapy. PhD Thesis. Ris-PhD-42(EN), 20084 Bishayee A, Rao D V, Howell R W. Acta Oncology, 2000, 39: 713-7175 Kassis A, J. Nucl. Med., 2003, 44: 1479-14816 Kassis A, Adelstein S J, J. Nucl. Med., 2005, 46: 4S-12S7 Kassis A I, Semin. J. Nucl. Med., 2008, 38: 358-3668 Maiti M, Lahiri S, J. Radioanal. Nucl. Chem., 2010, 283:637-6409 Busse S, Rosch F, Qaim S M, Radiochim. Acta., 2000, 90: 1-510 Qaim S M. Radiochim. Acta., 2001, 89: 189-35511 Stocklin G, Qaim S M, Rosch F. Radiochim. Acta., 1995, 249: 70-7112 Blann M. ALICE-91-RSIC CODE PACKAGE PSR-146, 1991 USA13 Konobeyev A Yu, Korovin, Yu A, Pereslavtsev P E. Code ALICE/ASH for Calculation of Excitation Functions, Energy and Angular Distributions of Emitted Particles in Nuclear Reactions. Report of the Obninsk Institute of Nuclear Power Engineering, 199714 Broeders C H M, Konobeyev A Yu, Korovin Yu A. 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. Forschungszentrum Karlsruhe GmbH, Karlsruhe, Report FZKA, 2006 15 Koning A J, Hilaire S, Duijvestijn M. TALYS-1.2 A Nuclear Reaction Program, User Manual. NRG, Netherlands, 200916 Sato K, Iwamoto A, Harada K. Phys. Rev. C, 1983, 28: 1527-153717 Blann M, Vonach H K. Phys. Rev. C, 1983, 28: 1475-149218 Kaplan A, Aydin A. PRAMANA J. Phys., 2009, 72: 343-353.19 Buyukuslu H, Kaplan A, Tel E, Aydin A, Ylldlrlm G, Bolukdemir M H. Ann. Nucl. Energy, 2010, 37: 534-53920 Raynal J. Notes on ECIS-94. CEA Saclay Report No. CEAN-2772, 199421 Koning A J, Delaroche J P. Nucl. Phys. A, 2003, 713: 231-31022 Watanabe S. Nucl. Phys., 1958, 8: 484-49223 Belgya T, Bersillon O, Capote R, Fukahori T, Zhigang G, Goriely S et al. Handbook for Calculations of Nuclear Reaction Data, Reference Input Parameter Library-2, Tech. Rep. IAEA-TECDOC-1506. IAEA, Vienna, Austria, 2006, 1-15924 Moldauer P A. Nucl. Phys. A, 1980, 344: 185-19525 Koning A J, Duijvestijn M C. Nucl. Phys. A, 2004, 744: 15-7626 Kalbach C. Phys. Rev. C, 2005, 71: 03460627 Dilg W, Schantl W, Vonach H, Uhl M. Phys. A, 1973, 217: 269-29828 Aslam M N, Sudar S, Hussain M, Malik A A, Shah H A, Qaim S M. Appl. Radiat. Isot., 2010, 68: 1760-177329 Ziegler J F, Biersack J P, Littmark U. SRIM Code. USA, 200630 Sadeghi M, Zali A, Zeinali B. Appl. Radiat. Isot., 2009, 67:1393-139631 Ignatyuk A V, Istekov K K, Smirenkin G N. Yad. Fiz., 1979, 29: 875-88332 Blaser P, Boehm F, Marmier P, Peaslee D. Helvetica Phys. Acta, 1951, 24: 3-533 Lovchikova G N, Salnikov O A, Simakov S P et al. Sov. J. Nucl. Phys., 1980, 31: 1-534 Batij V G, Skakun E A. Nucl. Struct C, 1991, 91: 24835 Levkovskij V N. Activation Cross Section Nuclides of Average Masses (A=40-100) by Protons and Alpha-Particles with Average Energies (E=10-50 MeV). Moscow, 199136 Singh N L, Gadkari M S, Chintalapudi S N. Phys. Scripta, 2000, 61: 550-554
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Get Citation
Enferadi Milad and Sadeghi Mahdi. Nuclear data for the cyclotron production of 117Sb and 90Nb[J]. Chinese Physics C, 2011, 35(3): 248-254. doi: 10.1088/1674-1137/35/3/007
Enferadi Milad and Sadeghi Mahdi. Nuclear data for the cyclotron production of 117Sb and 90Nb[J]. Chinese Physics C, 2011, 35(3): 248-254.  doi: 10.1088/1674-1137/35/3/007 shu
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Received: 2010-04-13
Revised: 2010-06-12
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Nuclear data for the cyclotron production of 117Sb and 90Nb

Abstract: This presented study is to make comparison of cross sections to produce 117Sb and 90Nb via different reactions with particle incident energy up to 70 MeV as a part of systematic studies on particle-induced activations on enriched Sn, Y2O3 and ZrO2 targets, theoretical calculation of production yield, calculation of required thickness of target and suggestion of optimum reaction to produce Antimony-117 and Niobium-90.

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