光子学报, 2009, 38 (10): 2682, 网络出版: 2011-11-17  

利用双面腔制备n原子GHZ态

Generation of n-Atom GHZ State via Two-sided Cavity QED*
作者单位
华南师范大学 信息光电子科技学院 光子信息技术实验室,广州 510006
引用该论文

吕园园, 王发强, 金锐博, 杨昊, 梁瑞生. 利用双面腔制备n原子GHZ态[J]. 光子学报, 2009, 38(10): 2682.

LV Yuan-yuan, WANG Fa-qiang, JIN Rui-bo, YANG Hao, LIANG Rui-sheng. Generation of n-Atom GHZ State via Two-sided Cavity QED*[J]. ACTA PHOTONICA SINICA, 2009, 38(10): 2682.

参考文献

[1] BENNETT C H,BRASSARD G, CREPEAU C, et al. Teleporting an unknown quantum state via dual classical and Einstein-Podolsky-Rosen channels[J]. Phys Rev Lett, 1993, 70(13):1895-1899.

[2] LIU X S, LONG G L, TONG D M, et al. General scheme for superdense coding between multiparties[J]. Phys Rev A, 2002,65(2):022304.

[3] EKERT A K. Quantum cryptography based on Bell′s theorem[J]. Phys Rev Lett, 1991, 67(6): 661-663.

[4] DING Sheng-chao, JIN Zhi. Review on the study of entanglement in quantum computation speedup[J]. Chinese Science Bulletin, 2007, 52(16): 2161-2166.

[5] GREENBERGER D M, HORNE M A, ZEILINGER A. Bell's theorem without inequalities[J]. Am J Phys, 1990, 58(12):1131-1143.

[6] DAVIDOCICH L, ZAGURY N, BRUNE M, et al. Teleportation of an atomic state between two cavities using nonlocal microwave fields[J]. Phys Rev A, 1994, 50(2):R895-R898.

[7] GUO Guang-can, ZHANG Yong-sheng. Scheme for preparation of the W state via cavity quantum electrodynamics[J]. Phys Rev A, 2002, 65(5):054302.

[8] SU Xiao-long, JIA Xiao-jun, XIE Chang-de, et al. Generation of GHZ-like and cluster-like quadripartite entangled states for continuous variable using a set of quadrature squeezed states[J]. Science in China Series G: Physics Mechanics& Astronomy, 2008, 51(1): 1-13.

[9] XU Wen-hu, ZHAO Xin, LONG Gui-lu. Efficient generation of multi-photon W states by joint-measurement[J]. Progress in Natural Science, 2008, 18(1): 119-122.

[10] CHEN Mei-feng, MA Song-she. Generation of W-type entangled coherent states of three-cavity field by raman interaction[J]. Acta Photonica Sinica, 2007, 36(5):950-954.

[11] BOUWMEESTER D, PAN Jian-wei, DANIELL M, et al. Observation of three-photon greenberger- horne- zeilinger entanglement[J]. Phys Rev Lett,1999, 82(7):1345-1349.

[12] ZHAO Zhi, YANG Tao, CHEN Yu-ao, et al. Experimental violation of local realism by four- photon greenberger-horne-zeilinger entanglement[J]. Phys Rev Lett, 2003, 91(18):180401.

[13] RAUSCHENBEUTRL A, NOGUES G., OSNAGHI S, et al. Step-by-step engineered multiparticle entanglement[J]. Science, 2000, 288(5473):2024-2028.

[14] CIRAC J I, ZOLLER P. Preparation of macroscopic superpositions in many-atom systems[J]. Phys Rev A, 1994, 50(4):R2799-R2802.

[15] LEIBFRIED D, BARRETT M D, SCHAETZ T, et al. Toward heisenberg-limited spectroscopy with multiparticle entangled states[J]. Science, 2004, 304(5676):1476-1478.

[16] ZHENG Shi-Biao. One-step synthesis of multiatom greenberger-horne-zeilinger states[J]. Phys Rev Lett, 2001, 87(23): 230404.

[17] RAIMOND J M, BRUNE M, HAROCHE S. Manipulating quantum entanglement with atoms and photons in a cavity[J]. Rev Mod Phys, 2001, 73(3):565-582.

[18] ZOU Xu-bo, PAHLKE K, MATHIS W. Conditional generation of the greenberger-horne-zeilinger state of four distant atoms via cavity decay[J]. Phys Rev A, 2003, 68(2):024302.

[19] ZOU Xu-bo, PAHLKE K, MATHIS W. Conditional generation of quantum entanglement of many distant atoms via multifold coincidence detection[J]. Phys Rev A, 2004, 69(1):013811.

[20] MAN Zhong-xiao, SU Fang, XIA Yun-jie. Efficient generation of Bell and W-type states in cavity QED[J]. Chinese Science Bulletin, 2008, 53(15):2410-2413.

[21] CHO J, LEE H W. Generation of atomic cluster states through the cavity input-output process[J]. Phys Rev Lett, 2005, 95(16):160501.

[22] LIN Xiu-min, XUE Peng, CHEN Mei-ying, et al. Scalable preparation of multiple-particle entangled states via the cavity input-output process[J]. Phys Rev A, 2006, 74(5): 052339..

[23] WAKS E, VUCKOVIC J. Dipole induced transparency in drop-filter cavity-waveguide systems[J]. Phys Rev Lett, 2006, 96(15):153601.

[24] WANG B, DUAN L M. Implementation scheme of controlled SWAP gates for quantum fingerprinting and photonic quantum computation[J]. Phys Rev A, 2007, 75(5): 050304.

[25] WALLS, MILBURN G. Quantum optics[M]. 2nd ed. Berlin: Springer Verlag,1994: 121-127.

[26] MCKEEVER J, BUCK J R, BOOZER A D, et al. Determination of the number of atoms trapped in an optical cavity[J]. Phys Rev Lett, 2004, 93(14):143601.

吕园园, 王发强, 金锐博, 杨昊, 梁瑞生. 利用双面腔制备n原子GHZ态[J]. 光子学报, 2009, 38(10): 2682. LV Yuan-yuan, WANG Fa-qiang, JIN Rui-bo, YANG Hao, LIANG Rui-sheng. Generation of n-Atom GHZ State via Two-sided Cavity QED*[J]. ACTA PHOTONICA SINICA, 2009, 38(10): 2682.

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