...
首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >An enhanced far-field-diffracted optical trap for cold atoms or molecules on an optical chip
【24h】

An enhanced far-field-diffracted optical trap for cold atoms or molecules on an optical chip

机译:用于光学芯片上冷原子或分子的增强型远场衍射光阱

获取原文
获取原文并翻译 | 示例
           

摘要

An enhanced or improved far-field-diffracted optical dipole trap with a red or blue detuning for cold atoms or molecules on an optical chip is proposed, and our trap scheme is formed by an optical system composed of a binary phase plate and a circular aperture illuminated by a plane light wave. The relative radial and axial intensity distributions of the far-field optical trap and its optical potentials for ~(87)Rb atoms are calculated, and the dependences of the relative intensity of the far-field optical trap and its well depth on the modulated phase φ of the phase plate are studied. Also, the feasibility of our enhanced far-field optical trap is analyzed, and some potential applications of our optical trap are briefly discussed. Our research shows that some geometric and optical parameters of the far-field optical trap can be greatly improved, and the evolution of the far-field optical trap from a red-detuned optical trap to a blue-detuned one can be realized by using our proposed binary phase plate. Particularly, with the change of the modulated phase φ from 0 to -π, the maximum intensity (i.e., the well depth) of the far-field optical trap and its trapping volume will be increased by about four and eight times, respectively. While the modulated phase φ of the phase plate is changed from 0 to π, a red-detuned optical trap will be evolved as a blue-detuned one, and the corresponding trapping intensity and volume will be enhanced by about 4 times. So such an enhanced far-field optical trap scheme has some important applications in the fields of laser cooling and trapping; atomic, molecular, and optical physics; integrated atom or molecule optics; quantum information science; and so on.
机译:提出了一种增强的或改进的具有红色或蓝色失谐的远场衍射光学偶极子陷阱,用于对光学芯片上的冷原子或分子进行失谐,并且我们的陷阱方案由一个由二元相板和一个圆形孔径组成的光学系统形成被平面光波照亮。计算了远场光阱的相对径向和轴向强度分布及其〜(87)Rb原子的光势,并且远场光阱的相对强度及其阱深度对调制相位的依赖性研究了相板的φ。此外,分析了我们增强型远场光阱的可行性,并简要讨论了我们的光阱的一些潜在应用。我们的研究表明,可以大大改善远场光阱的一些几何和光学参数,并且可以通过使用我们的实现来实现远场光阱从红色失谐光阱到蓝色失谐光阱的演变。建议的二元相板。特别地,随着调制相位φ从0到-π的变化,远场光阱的最大强度(即阱深度)及其捕获体积将分别增加大约四倍和八倍。当相位板的调制相位从0变为π时,红色失谐的光陷阱将演变为蓝色失谐的光陷阱,并且相应的陷波强度和体积将提高约4倍。因此,这种增强的远场光阱方案在激光冷却和捕获领域具有重要的应用。原子,分子和光学物理学;集成原子或分子光学;量子信息科学等等。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号