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《中国物理C》(英文)编辑部
2024年10月30日

EXCITATION CURVES FOR SOME REACTIONS OF Al、Ti、V AND I

  • Excitation curves for the reaction 27Al(n,α24Na,46Ti(n,p46Sc,48Ti(n,p48Sc,51V(n,α48Sc and 127I(n,2n126I have been measured by the activation method in the4.5—18.3 MeV energy region.The cross section for the reactio 27Al(n,α24Na was determined at 14.61±0.20 MeV.The measurement of neutron flux was performed using the associated particle method.The cross sections for other reactions were de-termined relative to the measured 27Al(n,α24Na cross section.The resulting activities were measured employing a calibrated NaI(TI)scintillation counter.The values obtained were 117.5±3.0 mb,291.4±14.0mb,63.7±3.2 mb,16.8±0.9mb and 1656±68 mb respectively.A brief comparison with existing data was made.
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  • [1] 李际周等,高能物理与核物理,2 (1978), 550.[2] J. C. Robertson et al., J. Nucl. Energy, 27 (1973), 139.[3] H. Vonach et al., Z. Phys., 237 (1970), 155.[4] P. Boshung et al., Helv. Phys., Acta, 42 (1969), 252.[5] R. C. Barrall et al., Nucl. Phys., A138 (1969), 387.[6] D. Crumpton et al, J. Inorg. and Nucl. Chem., 31 (1969), 1.[7] A. Paulsen et al., J. Nucl. Energy, 19 (1965), 907.[8] G. C. Bonazzola et al., Nucl. Phys., 51 (1964), 337.[9] J. D. Hemingway et al., Proo. Roy. Soc., A292 (1966), 180[10] J. P. Butler et. al.,Can. J. Phys., 41 (1963), 372.[11] H. W. Schmitt et al., Phys. Rev., 121 (1961), 827.[12] H. Liskien et al., Nucl. Phys., 63 (1965), 393.[13] H. L. Pai, Can. J. Phys., 44 (1966), 2337.[14] A. Poularikas, Phys. Rev., 115 (1959), 989.[15] D. L. Allan, Nucl. Phys., 24 (1961), 274.[16] Y. Likic et al., Trans. Amer. Nucl. Soc., 12(1969), 283.[17] B. H. Левковский. Я. Ф. 10 (1969), 44.[18] S. H. Ghorai et al., J. Nucl. Energy, 25 (1971), 319.[19] W.Mannhart et al., Z. Phys., A272 (1975), 279.[20] F. Gabband et al., Phys. Rev., 128 (1962), 1276.[21] E. B. Paul et al., Can. J. Phys., 31 (1953), 267.[22] D. Crumpton, J, Inorg. Nucl. Chem., 31 (1969), 3727.[23] M. Hillman, Nucl. Phys., 37 (1962), 78.[24] M. Bormann et al., J. Phys. Rad., 22 (1961), 602.[25] I. Kumabe, J. Phys. Soc., Japan, 13 (1958), 325.[26] A. Paulsen et al., Atomkern Energie, 22 (1973), 291.[27] S. Cieriacks, BNL-325.(1976).[28] R. Spangler et al., Trans. Amer. Nucl. Soc., 22 (1975), 818.[29] J. C. Robertson et al., J. Nucl. Energy, 27 (1973), 531.[30] Wen-deh Lu et al., Phys. Rev., C1(1970), 350.[31] Maslov et al., YK-9 (1972), 50.[32] Araminowicz, BNL-325 (1976).[33] H.C. Martin et al., Phys. Rev., 89 (1953), 1302.[34] M.Bormann et al., Z. Phys.. 166 (1962), 477.[35] S.M.Qaim et al., J. Inorg. Nucl. Chem.,30(1968), 2577.[36] S. J. Bame et al., Phys. Rev., 107 (1957), 1616.
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LU HAN-LIN, WANG DA-HAI, XIA YI-JUN, CUI YUN-FEN and G CHEN PAO-LIN. EXCITATION CURVES FOR SOME REACTIONS OF Al、Ti、V AND I[J]. Chinese Physics C, 1979, 3(1): 88-96.
LU HAN-LIN, WANG DA-HAI, XIA YI-JUN, CUI YUN-FEN and G CHEN PAO-LIN. EXCITATION CURVES FOR SOME REACTIONS OF Al、Ti、V AND I[J]. Chinese Physics C, 1979, 3(1): 88-96. shu
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Received: 1978-04-25
Revised: 1900-01-01
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EXCITATION CURVES FOR SOME REACTIONS OF Al、Ti、V AND I

Abstract: Excitation curves for the reaction 27Al(n,α24Na,46Ti(n,p46Sc,48Ti(n,p48Sc,51V(n,α48Sc and 127I(n,2n126I have been measured by the activation method in the4.5—18.3 MeV energy region.The cross section for the reactio 27Al(n,α24Na was determined at 14.61±0.20 MeV.The measurement of neutron flux was performed using the associated particle method.The cross sections for other reactions were de-termined relative to the measured 27Al(n,α24Na cross section.The resulting activities were measured employing a calibrated NaI(TI)scintillation counter.The values obtained were 117.5±3.0 mb,291.4±14.0mb,63.7±3.2 mb,16.8±0.9mb and 1656±68 mb respectively.A brief comparison with existing data was made.

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