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采用Damman光栅实现冷原子或冷分子囚禁的光阱阵列
引用本文:纪宪明,陆俊法,沐仁旺,印建平.采用Damman光栅实现冷原子或冷分子囚禁的光阱阵列[J].物理学报,2006,55(7):3396-3402.
作者姓名:纪宪明  陆俊法  沐仁旺  印建平
作者单位:(1)教育部光谱学与波谱学重点实验室,华东师范大学物理系,上海 200062; (2)教育部光谱学与波谱学重点实验室,华东师范大学物理系,上海 200062;东华理工学院物理系,抚州 344000; (3)南通大学理学院,南通 226007; (4)南通大学理学院,南通 226007;教育部光谱学与波谱学重点实验室,华东师范大学物理系,上海 200062
基金项目:国家高技术研究发展计划(863计划);江苏省教育厅高校自然科学基金;上海市重点学科建设项目;教育部"211"工程建设项目
摘    要:提出了一种采用Damman光栅和球面透镜组合光学系统产生二维光阱阵列的新方案. 在使用红失谐高斯激光束照射的条件下,推导了计算光阱阵列的周期、光强分布、光强梯度和光阱几何参数的经验公式,讨论了此光阱阵列的特点以及在原子光学和分子光学中的应用. 研究结果表明,这种光阱阵列方案比已有的光阱阵列方案更为简单可行、操作方便,非常适用于冷原子或冷分子的阵列囚禁,以及制备新颖的光学晶格. 关键词: 冷原子或冷分子 光阱阵列 Damman光栅 光偶极势

关 键 词:冷原子或冷分子  光阱阵列  Damman光栅  光偶极势
文章编号:1000-3290/2006/55(07)/3396-07
收稿时间:05 30 2005 12:00AM
修稿时间:2005-05-302005-10-27

Array of micro-optical traps for cold atoms or cold molecules using a Damman grating
Ji Xian-Ming,Lu Jun-Fa,Mu Ren-Wang,Yin Jian-Ping.Array of micro-optical traps for cold atoms or cold molecules using a Damman grating[J].Acta Physica Sinica,2006,55(7):3396-3402.
Authors:Ji Xian-Ming  Lu Jun-Fa  Mu Ren-Wang  Yin Jian-Ping
Institution:1 School of Science, Nantong University, Nantong 226007, China;2 Key Laboratory for Optical and Magnetic Resonance Spectroscopy of Ministry of Education, Department of Physics, East China Normal University, Shanghai 200062, China;3 Department of Physics , East China lnstitute of Technology , Fuzhou 344000, China
Abstract:We propose a novel scheme to produce an array of micro-optical traps by using an optical system composed of a Damman grating and a spherical lens, which is illuminated by a red detuned Gaussian laser beam. We derive formulas to calculate the periodical structures of the micro-optical well arrays, and characteristics of each well, such as the spatial intensity distribution, intensity gradient, and geometrical parameters. Applications of our micro-optical traps in the fields of atom and molecule optics are briefly discussed. Our study shows that the proposed array of micro-optical wells can be used to trap cold atoms or cold molecules more efficiently than previous optical traps, even to prepare novel optical lattices.
Keywords:cold atoms or cold molecules  array of optical traps  Damman grating  optical dipole potential
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