NUCLEAR PHYSICS |
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Observation of a Possible New Isomer in 175Ir |
WANG Hua-Lei1, SONG Li-Tao1, ZHAO Wei-Juan1, LIU Zhong-Xia1, ZHANG Yu-Hu2, ZHOU Xiao-Hong2, GUO Ying-Xiang2, LEI Xiang-Guo2 |
1College of Physical Science and Engineering, Zhengzhou University, Zhengzhou 4500012Institute of Modern Physics, Chinese Academy of Sciences, Lanzhou 730000 |
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Cite this article: |
WANG Hua-Lei, SONG Li-Tao, ZHAO Wei-Juan et al 2010 Chin. Phys. Lett. 27 022301 |
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Abstract The neutron deficient nuclide 175Ir was produced by irradiation of 146Nd with 210 MeV 35Cl via a fusion-evaporation reaction channel. The reaction products were transported to a low-background location using a helium-jet recoil fast-moving tape-transport system for measurement. The experimental devices and data analysis method are introduced. Based on the decay-curve fitting of the β-delayed γ ray from 175Ir, realized by the least-square method, a new long-lived isomeric state of 175Ir is proposed and briefly discussed.
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Keywords:
23.20.Lv
23.40.-s
25.70.Gh
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Received: 31 August 2009
Published: 08 February 2010
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PACS: |
23.20.Lv
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(γ-transitions and level energies)
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23.40.-s
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(β-decay;double β-decay; electron and muon capture)
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25.70.Gh
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(Compound nucleus)
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[1] Schmidt-Ott W D, Salewski H, Meissner F, Bosch-Wicke U, Koschel P, Kunze V and Michaelsen R 1992 Nucl. Phys. A 545 646 [2] Xu S W, Li Z K, Xie Y X, Pan Q Y, Yu Y, Adam J, Wang J P, Hu Q Y, Li S H, Chen H Y, Zhang T M, Jin G M, Luo Y X, Penionzhkevich Y and Gangrsky Y 1999 Phys. Rev. C 60 061302 [3] Huang W X, Ma R C, Xu S W, Guo J S, Sun X F, Xie Y X, Li Z K, Ge Y X, Wang Y Y, Wang C F, Zhang T M, Jin G M and Luo Y X 1999 Phys. Rev. C 59 2402 [4] Wang X D, Xu S W, Li Z K, Xie Y X, Wu Z Y, Xu F R, Guo B, Leng C G, Wang C F and Yu Y 2003 High Energy Phys. Nucl. Phys. 27 309 (in Chinese) [5] Siivola A 1967 Nucl. Phys. A 92 475 [6] Bouldjedri A, Duffait R, B\'{eraud R, Emsallem A, Redon N, Gizon A, Genevey J, Barneoud D and Blachot J 1992 Z. Phys. A 342 267 [7] Basunla M S 2004 Nucl. Data Sheets 102 719 [8] Dracoulis G D, Fabricius B, Kib\`{edi T, Baxter A M, Byrne A P, Lieb K P and Stuchbery A E 1991 Nucl. Phys. A 534 173 [9] Fabricius B, Dracoulis G D, Bark R A, Stuchbery A E, Kib\`{edi T and Baxter A M 1990 Nucl. Phys. A 511 345 [10] Wang H L, Zhang Y H, Zhou X H, Guo Y X, Lei X G, Xu S W, Xie Y X, Liu M L, Zheng Y, Xing Y B, Xie C Y, Song L T, Luo P, Yu H P and Guo W T 2005 Chin. Phys. Lett. 22 2211 [11] Robinson D C 1970 Nucl. Instrum. Methods 79 65 [12] Mukoyama T 1982 Nucl. Instrum. Methods 197 397 [13] Winn W G, Gutbrod H H, and Blann M 1972 Nucl. Phys. A 188 423 [14] Sterna L L, Haustein P E, Ansaldo E J, Naumann R A and Ward T E 1975 Phys. Lett. B 53 432 [15] Singh B 1995 Nucl. Data Sheets 75 199 [16] Audi G and Wapstra A H 1995 Nucl. Phys. A 595 409 [17] Konopinski E J 1943 Rev. Mod. Phys. 15 209 |
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