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2024年10月30日

Cross-Section Measurements for Reactions on Platinum Isotopes in the Neutron Energy Range of 13.5 to 14.6MeV

  • Cross-sections for (n,2n) and (n,p) reactions have been measured on platinum isotopes at the neutron energies of 13.5 to 14.6 MeV using the activation technique. Data were reported for the following reactions: Pt(n,2n)197m+gPt,198Pt(n,2n)197mPt,192Pt(n,2n)191Pt, 194Pt(n,p)194Ir, 195Pt(n, p)195mIr, and 196Pt(n,p)196mIr. At the neutron energies of 13.5, 14.1 and 14.6 MeV, the cross sections in mb are 2038±159, 1919±73 and 1836±68 for 198Pt(n,2n)197m+gPt reaction; 974±37, 1055±39 and 1042±39 for 198Pt(n, 2n)197mPt reaction, respectively. The cross sections are 1680±103, 1810±67 and 2047±97 for 192Pt(n,2n)191Pt reaction, and 1.0±0.2, 1.6±0.2 and 1.8±0.2 for 195Pt(n, p)195mIr reaction, respectively, at energies of 14.1, 14.4 and 14.6MeV. At 14.1 and 14.4 MeV neutron energies, the cross sections are 3.8±0.4 and 5.4±0.5 for 194Pt(n,p)194Ir reaction. While, the data are (1.13±0.07) and (1.18±0.06) mb at energies of 13.5 and 14.4 MeV, respectively, for 196Pt(n,p)196mIr reaction.The neutron fluences were determined using the monitor reaction 93Nb(n, 2n)92mNb or 27Al(n, a)24Na. A comparison was made between the present cross sections and the collected data for the measured reactions.
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  • [1] .Lewis V E,Zieba KJ.Nucl.Instrum.Methods,1980,174,141 —1442.Browne E,Firestone R B.Table of Isotopes.Wiley,New York,19963.WANG Yong-Chang,YUAN Jun-Qian,REN Zhong-Liang et al.High Energy Phys.Nucl.Phys.,1990,14:923 (in Chinese)(王永昌,袁俊谦,任忠良等.高能物理与核物理,1990,14:923)4.Hankla A K,Fink R W.Nucl.Phys.,1972,A180:157 —1765.Mangel S K,Khurana.Nucl.Phys.,1965,69:1586.Coleman R F,Hawker B E,O’Connor L P.Proc.Phys.Soc.,1959,73:2157.Winiwarter P.Nucl.Phys.,1970,A158:778.Qaim S M.Nucl.Phys.,1972,A185:6149.Bormann M,Bissem H H,Magiera E.Nucl.Phys.,1970,A157:48110.Hlavac S,Kristiak J,Oblozinsky P.Acta.Phys.Slov.,1976,26:6411.YANGWei-Fan,LI Ying-Jun.Chin.Nucl.Phys.,1984,6:37312.Qaim S M,Molla N I.Nucl.Phys.,1977,A283:26913.Wagner M,Vonach H,Pavlik A et al.Physik Daten Physics Data,Evaluation of Cross Sections for 14 Important Neutron-Dosimetry Reactions,1990,No.1325
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LUO Jun-Hua, ZHOU Feng-Qun and KONG Xiang-Zhong. Cross-Section Measurements for Reactions on Platinum Isotopes in the Neutron Energy Range of 13.5 to 14.6MeV[J]. Chinese Physics C, 2005, 29(6): 561-564.
LUO Jun-Hua, ZHOU Feng-Qun and KONG Xiang-Zhong. Cross-Section Measurements for Reactions on Platinum Isotopes in the Neutron Energy Range of 13.5 to 14.6MeV[J]. Chinese Physics C, 2005, 29(6): 561-564. shu
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Received: 2004-11-02
Revised: 1900-01-01
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Cross-Section Measurements for Reactions on Platinum Isotopes in the Neutron Energy Range of 13.5 to 14.6MeV

    Corresponding author: LUO Jun-Hua,
  • Department of Modern Physics,Lanzhou University,Lanzhou 7300002 Department of Physics,Hexi University,Zhangye 734000

Abstract: Cross-sections for (n,2n) and (n,p) reactions have been measured on platinum isotopes at the neutron energies of 13.5 to 14.6 MeV using the activation technique. Data were reported for the following reactions: Pt(n,2n)197m+gPt,198Pt(n,2n)197mPt,192Pt(n,2n)191Pt, 194Pt(n,p)194Ir, 195Pt(n, p)195mIr, and 196Pt(n,p)196mIr. At the neutron energies of 13.5, 14.1 and 14.6 MeV, the cross sections in mb are 2038±159, 1919±73 and 1836±68 for 198Pt(n,2n)197m+gPt reaction; 974±37, 1055±39 and 1042±39 for 198Pt(n, 2n)197mPt reaction, respectively. The cross sections are 1680±103, 1810±67 and 2047±97 for 192Pt(n,2n)191Pt reaction, and 1.0±0.2, 1.6±0.2 and 1.8±0.2 for 195Pt(n, p)195mIr reaction, respectively, at energies of 14.1, 14.4 and 14.6MeV. At 14.1 and 14.4 MeV neutron energies, the cross sections are 3.8±0.4 and 5.4±0.5 for 194Pt(n,p)194Ir reaction. While, the data are (1.13±0.07) and (1.18±0.06) mb at energies of 13.5 and 14.4 MeV, respectively, for 196Pt(n,p)196mIr reaction.The neutron fluences were determined using the monitor reaction 93Nb(n, 2n)92mNb or 27Al(n, a)24Na. A comparison was made between the present cross sections and the collected data for the measured reactions.

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