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2024年10月30日

Mixed symmetry states and electromagnetic transition in the N=Z nucleus 28Si

  • The interacting boson model with isospin (IBM-3) has been used to study mixed symmetry states and electromagnetic transitions at low-lying states for a 28Si nucleus. The theoretical calculations show that the 24+ state is the lowest mixed symmetry state in 28Si and the 43+ state is also a mixed symmetry state.
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  • [1] SUN Yang, LIU Wei-Ping. Chinese Science Bulletin, 2012, 57(36): 4805-4806[2] ZHAO En-Guang. Chinese Science Bulletin, 2012, 57(34): 4394-4399[3] SUN Y, Guidry M. Phys. Rev. C, 1995, 52: 2844-2847[4] Frauendorf S, MENG J. Nucl. Phys. A, 1997, 617: 131-147[5] LIU Lang, ZHAO Peng-Wei. Science China Physics, Mechanics Astronomy, 2012, 55(12): 2420-2424[6] Bonche P, Krieger S J, Quentin P et al. Nuel. Phys. A, 1989, 500: 308[7] Afanasjev A V, Konig J, Ring P. Nucl. Phys. A, 1996, 608: 107-175[8] Johnson A, Ryde H, Sztarkier. Phys. Lett. B, 1971, 34: 605-608[9] Flibotte S, Andrews H R, Ball G C et al. Phys. Rev. Lett., 1993, 71: 4299-4302[10] Schnaek-Petersen H, Bengtsson R,Bark R A et al. Nucl. Phys. A, 1995, 594: 175[11] Dudek J, Werner T, Riedinger L L. Phys. Lett. B, 1988, 211: 252-258[12] Odegard S W, Hagemann G B, Jensen D R et al. Phys. Rev. Lett., 2001, 86: 5866[13] Madokoro H, MENG J, Matsuzaki M et al. Phys.Rev. C, 2000, 62(6): 061301[14] Iachell F, Arima A. The Interacting Boson Model. Cambridge: Cambridge University Press, 1987[15] Arima A, Iachello F. Ann. Phys. (N.Y.), 1978, 111: 201-238[16] Arima A, Iachello F. Ann. Phys. (N.Y.), 1979, 123: 468-492[17] L Li-Jun, ZHANG Jin-Fu. HEP NP, 2006, 30(2): 128-133 (in Chinese)[18] ZHANG Jin-Fu, Pak Jae-Yon, LIU Feng-Ying. HEP NP, 2000, 24(11): 1066-1072 (in Chinese)[19] LONG Gui-Lu. Tsinghua Science and Technology, 1996, 1(3): 231-236[20] BAI Hong-Bo, LIU Feng-Ying et al. Nuclear Physics Review, 2003, 20(3): 176-181[21] ZHANG Jin-Fu, L Li-Jun, BAI Hong-Bo. Chin. Phys., 2007, 16(7): 1841-1846[22] ZHANG Jin-Fu, L Li-Jun, BAI Hong-Bo. Commun. Thero. Phys., 2007, 47: 705-710[23] ZHANG Jin-Fu, Al-Khudair F H, LONG Gui-Lu et al. Commun. Thero. Phys., 2002, 37: 335-340[24] Failh. Al-Khudair, LONG Gui-Lu. HEP NP, 2004, 28(7): 717-724 (in Chinese)[25] GU Jin-Nan, WEN Wan-Xin, ZHAO Yu-MIN. HEP NP, 1992, 16(6): 563-570 (in Chinese)[26] WEN Wan-Xin, GU Jin-Nan. HEP NP, 1992, 16(4): 379-384 (in Chinese)[27] LONG Gui-Lu, ZHANG Wei-Lin et al. Joumal of Ningxia University (Natural Science Edition), 1998, 19(4): 334-336 (in Chinese)[28] Elliott J P, White A P. Phys. Lett. B, 1980, 97: 169-172[29] Elliott J P, Evans J A. Phys. Lett. B, 1981, 101: 216-218[30] LONG G L. Chinese J. Nucl. Phys., 1994, 16: 331-336[31] Al-Khudair F H, Li Y S, LONG G L. Phys. Rev. C, 2007, 75(5): 054316[32] Evans J A, LONG G L, Elliott J P. Nucl. Phys. A, 1993, 561: 201-231[33] Evans J A, Elliott J P, Lac V S, Long G L. Nucl. Phys. A, 1995, 593: 85-94[34] L Li-Jun, Al-Khudair F H, ZHANG Jin-Fu. Chin. Phys. C (HEP NP), 2009, 33(S1): 46-48
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LÜ Li-Jun, BAI Hong-Bo, ZHANG Jin-Fu and DONG Hong-Fei. Mixed symmetry states and electromagnetic transition in the N=Z nucleus 28Si[J]. Chinese Physics C, 2014, 38(10): 104102. doi: 10.1088/1674-1137/38/10/104102
LÜ Li-Jun, BAI Hong-Bo, ZHANG Jin-Fu and DONG Hong-Fei. Mixed symmetry states and electromagnetic transition in the N=Z nucleus 28Si[J]. Chinese Physics C, 2014, 38(10): 104102.  doi: 10.1088/1674-1137/38/10/104102 shu
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Received: 2013-11-15
Revised: 1900-01-01
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Mixed symmetry states and electromagnetic transition in the N=Z nucleus 28Si

Abstract: The interacting boson model with isospin (IBM-3) has been used to study mixed symmetry states and electromagnetic transitions at low-lying states for a 28Si nucleus. The theoretical calculations show that the 24+ state is the lowest mixed symmetry state in 28Si and the 43+ state is also a mixed symmetry state.

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