Volume 45 Issue 1
Feb.  2016
Article Contents

LI Ming, LUO Yi, TANG Tao, WEN Jian-feng, CHEN Cui-ling. Squeezing Properties of Atomic Bose-Einstein Condensate Interacting with the Binomial States[J]. Journal of University of Electronic Science and Technology of China, 2016, 45(1): 77-79. doi: 10.3969/j.issn.1001-0548.2016.01.012
Citation: LI Ming, LUO Yi, TANG Tao, WEN Jian-feng, CHEN Cui-ling. Squeezing Properties of Atomic Bose-Einstein Condensate Interacting with the Binomial States[J]. Journal of University of Electronic Science and Technology of China, 2016, 45(1): 77-79. doi: 10.3969/j.issn.1001-0548.2016.01.012

Squeezing Properties of Atomic Bose-Einstein Condensate Interacting with the Binomial States

doi: 10.3969/j.issn.1001-0548.2016.01.012
  • Publish Date: 2016-02-15
  • [1] ANDERSON M H, ENSCHER J R, METHEWS M R, et al. Observation of Bose-Einstein condensation in a dilute atomic vapor[J]. Science, 1995, 269(5221): 198-201.
    [2] DAVIS K B, MEWES M O, ANDREWS M R, et al. Bose-Einstein condensation in a gas of sodium atoms[J]. Physical Review Letter, 1995, 75(22): 3969-3973.
    [3] MEMES M O, ANDREWS M R, KURN D M, et al. Output coupler for Bose-Einstein condensed atoms[J]. Physical Review Letter, 1997, 78(4): 582-584.
    [4] YOU L, LEWENSTEIN M, COOPER J. Quantum field theory of atoms interacting with photons[J]. Physical Review A, 1995, 51(6): 4712-4727.
    [5] JING Hui, CHEN Jing-ling, GE Mo-lin. Quantumdynamical theory for squeezing the output of a Bose-Einstein condensate[J]. Physical Review A, 2001, 63(1): 015601-015604.
    [6] KUANG Le-man, ZHOU Lan. Generation of atom-photon entangled states in atomic Bose-Einstein condensate via electromagnetically induced transparency[J]. Physical Review A, 2003, 68(4): 043606-043614.
    [7] ZHENG Gong-ping, LIANG Jiu-qing, LIU Wu-ming. Phase diagram of two-species Bose-Einstein condensates in an optical lattice[J]. Physical Review A, 2005, 71(5): 053608-053612.
    [8] XIE Zheng-wei, CAO Ze-xian, KATS E I, et al. Nonlinear dynamics of a dipolar Bose-Einstein condensate in an optical lattice[J]. Physical Review A, 2005, 71(2): 025601-025604.
    [9] JI An-chun, LIU Wu-ming, SONG Jun-liang, et al. Dynamical creation of fractionalized vortices and vortex lattices[J]. Physical Review Letter, 2008, 101(1): 010402-010405.
    [10] 李明, 陈鼎汉. 光场-原子BEC相互作用系统中的压缩 特性[J]. 电子科技大学学报, 2011, 40(4): 541-543. LI Ming, CHEN Ding-han. Squeezing properties of light field interacting with Bose-Einstein condensate of atoms[J]. Journal of University of Electronic Science and Technology of China, 2011, 40(4): 541-543.
    [11] 李明. 原子玻色-爱因斯坦凝聚体对V型三能级原子激 光压缩性质的影响[J]. 物理学报, 2011, 60(6): 063201. LI Ming. Influence of an atomic Bose-Einstein condensate on the squeezing properties of V-type three-level atomic lasers[J]. Acta Physica Sinica, 2011, 60(6): 063201.
    [12] 李明, 唐涛, 陈鼎汉. V型三能级原子双模光场系统中光 场压缩性质[J]. 物理学报, 2011, 60(7): 073203. LI Ming, TANG Tao, CHEN Ding-han. Squeezing properties of two-mode squeezed field interacting with V-type three-level atoms[J]. Acta Physica Sinica, 2011, 60(7): 073203.
    [13] 李明, 陈鼎汉, 陈翠玲. Ξ型三能级原子玻色-爱因斯坦 凝聚体对光场压缩性质的影响[J]. 物理学报, 2013, 62(18): 183201. LI Ming, CHEN Ding-han, CHEN Cui-ling. Influence of Ξ-type three-level atomic Bose-Einstein condensate on the squeezing properties of light field[J]. Acta Physica Sinica, 2013, 62(18): 183201.
    [14] 李明, 陈翠玲. 二能级原子玻色-爱因斯坦凝聚体与双 模光场相互作用系统中原子激光的压缩性质[J]. 物理学 报, 2014, 63(4): 043201. LI Ming, CHEN Cui-ling. Squeezing properties of atom laser from two-level atomic Bose-Einstein condensate interacting with two-mode light field[J]. Acta Physica Sinica, 2014, 63(4): 043201.
    [15] 农春选, 李明, 陈翠玲. Ξ型三能级原子玻色-爱因斯坦 凝聚体单模光场系统中双模原子激光的压缩性质[J]. 物 理学报, 2014, 63(4): 043202. NONG Chun-xuan, LI Ming, CHEN Cui-ling. Squeezing properties of two-mode atom laser in a system of Ξ-type three-level atomic Bose-Einstein condensate interacting with single-mode light field[J]. Acta Physica Sinica, 2014, 63(4): 043202.
    [16] 宫艳丽, 萨楚尔夫, 崔英华. 玻色-爱因斯坦凝聚与二项 式光场相互作用系统中的压缩特性[J]. 内蒙古师范大学 学报, 2007, 36(5): 605-609. GONG Yan-li, SACHUERFU, CUI Ying-hua. The squeezing properties of the binomial states field interacting with atomic Bose-Einstein condensate[J]. Journal of Inner Mongolia Normal University, 2007, 36(5): 605-609.
    [17] 倪光炯, 陈苏卿. 高等量子力学[M]. 上海: 复旦大学出 版社, 2000. NI Guang-jiong, CHEN Su-qing. Advanced quantum mechanics[M]. Shanghai: Fudan University Press, 2000.
    [18] 李明, 孙久勋. 原子间相互作用对光场和原子激光压缩 性质的影响[J]. 物理学报, 2006, 55(6): 2702-2707. LI Ming, SUN Jiu-xun. Influence of the interaction between atoms on the squeezing of light field and atomic lasers[J]. Acta Physica Sinica, 2006, 55(6): 2702-2707.
    [19] 王晓光, 于荣金, 李文. 位移二项式态与位移负二项式 态的性质及其与二能级原子的相互作用[J]. 物理学报, 1998, 47(11): 1798-1803. WANG Xiao-guang, YU Rong-jin, LI Wen. The properties of displaced binomial states and displaced negative binomial states and their interaction with two-level atoms[J]. Acta Physica Sinica, 1998, 47(11): 1798-1803.
    [20] 彭金生, 李高翔. 近代量子光学导论[M]. 北京: 科学出 版社, 1996. PENG Jin-sheng, LI Gao-xiang. Introduction of modern quantum optics[M]. Beijing: Science Press, 1996.
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Squeezing Properties of Atomic Bose-Einstein Condensate Interacting with the Binomial States

doi: 10.3969/j.issn.1001-0548.2016.01.012
LI Ming, LUO Yi, TANG Tao, WEN Jian-feng, CHEN Cui-ling. Squeezing Properties of Atomic Bose-Einstein Condensate Interacting with the Binomial States[J]. Journal of University of Electronic Science and Technology of China, 2016, 45(1): 77-79. doi: 10.3969/j.issn.1001-0548.2016.01.012
Citation: LI Ming, LUO Yi, TANG Tao, WEN Jian-feng, CHEN Cui-ling. Squeezing Properties of Atomic Bose-Einstein Condensate Interacting with the Binomial States[J]. Journal of University of Electronic Science and Technology of China, 2016, 45(1): 77-79. doi: 10.3969/j.issn.1001-0548.2016.01.012
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