Numerical simulation and experimental study of PbWO4/EPDM and Bi2WO6/EPDM for the shielding of γ-rays
- Received Date: 2016-01-11
- Accepted Date: 2016-03-22
- Available Online: 2016-08-05
Abstract: null
[1] | Y. L. Ye, X. H. Zhou, and W. P. Liu et al, Chin. Phys. C, 32:1-7 (2008) |
[2] | J. Vervier, Nuclear Physics and Nuclear Astrophysics with Radioactive Nuclear Beams (Berlin, Heidelberg: Springer, 1995) |
[3] | X. Wei, Y. L. Zhou, and Y. J. Li, J. Funct. Mater, 44: 216-220 (2013) (in Chinese) |
[4] | D. Rezaei-Ochbelagh, S. Azimkhani, and H. G. Mosavinejad, Nucl. Sci. Tech., 4: 215-218 (2012) |
[5] | G. L. Stukenbroeker, C. F. Bonilla, and R. W. Peterson, Nucl. Eng. Des., 13:3-145 (1970) |
[6] | V. V. Belyakov, V. A. Grigor'Ev, V. V. Kozlov et al, Sov. At. Energy, 43:913-913 (1977) |
[7] | S. E. Gwaily, M. Madani, and H. H. Hassan, Polym. Test, 21:513-517 (2002) |
[8] | V. Harish, N. Nagaiah, T. N. Prabhu et al, J. Appl. Polym. Sci, 112:1503-1508 (2009) |
[9] | Y. L. Zhou, K. P. Song, F. F. He et al, Radiat. Prot., 28: 36-40 (2008) (in Chinese) |
[10] | L. Du, P. He, and Y. L. Zhou et al, Radiat. Prot., 32:160-164 (2012) (in Chinese) |
[11] | Y. L. Zhou, X. N. Zhu, Y. J. Li et al, Adv. Mater. Res., 418-420:835-839 (2011) |
[12] | X. N. Zhu, Y. L. Zhou, S. K. Luo et al, New. Chem. Mater., 39: 45-47 (2011) (in Chinese) |
[13] | Y. L. Zhou, K. P. Song, and Z. J. Li, Chinese Patent CN101328281B (2011) (in Chinese) |
[14] | L. Wang, Y. L. Zhou, and Y. J. Li, J. Funct. Mater., 45:120-124 (2014) (in Chinese) |
[15] | S. X. Zhang, J. Gao, T. A. Buchholz et al, Biomed. Microdevices, 11:925-933 (2009) |
[16] | S. Sharifi, R. Bagheri, S. P. Shirmardi, Ann. Nucl. Energy, 53:529-534 (2013) |
[17] | M. Jalali, A. Mohammadi, Radiat. Phys. Chem., 77:523-527 (2008) |
[18] | J. F. Briesmeister, MCNP4C-a General MontCarlo n-particle Transport Code(New Mexico: Los Alamos National Laboratory, 2000), p. 1-10 |
[19] | H. Hu, Q. Wang, J. Qin et al, IEEE Trans. Nucl. Sci., 55:2376-2384 (2008) |
[20] | X. B. Jiang, D. Chen, Z. S. Xie et al, Comput. Phys., 18: 285 (2001) (in Chinese). |
[21] | Z. W. Han,W. L. Luan,Y. L. Han et al, Nucl. Tech., 38:1-6 (2015) (in Chinese) |
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[14] | Zhao Peiying , Wu Jimin . Phase Structure of U(l) Lattice Gauge Theory by Variational Study with Independent Plaquette Effective Action. Chinese Physics C, 1996, 20(S1): 47-54. |
[15] | Wang Jiajun , Sun Hongzhou . Branching Rules for U(N) SP(N) O(3). Chinese Physics C, 1994, 18(3): 269-276. |
[16] | Zheng Xite , Lei Chunhong , Li Yuliang , Chen Hong . Study of Higher Order Cumulant Expansion of U(l) Lattice Gauge Model at Finite Temperature. Chinese Physics C, 1993, 17(S3): 271-276. |
[17] | Wang Jiajun , Sun Hongzhou . Branching Rules for U(N)⊃SP(N)⊃O(3). Chinese Physics C, 1993, 17(S4): 395-402. |
[18] | Zheng Bo , Guo Shuohong . A Solvable 1 + 1 Dimensional U(l) gauge model. Chinese Physics C, 1990, 14(S1): 65-69. |
[19] | Zheng Bo . A (l+l)-Dimensional Lattice U(l) Gauge Model and the Fermion Species Doubling. Chinese Physics C, 1990, 14(S3): 249-254. |
[20] | ZHANG Yue-Zhong . AXIAL VECTOR WARD IDENTITIES AND DIMENSIONAL REGULARIZATION IN RENORMALIZABLE SU(2)L×U(1)Y MODEL. Chinese Physics C, 1985, 9(4): 430-436. |
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Abstract: null