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Optical Trapping of Cold Neutral Atoms Using a Two-Color Evanescent Light Field Around a Carbon Nanotube

机译:使用碳纳米管周围的双色渐逝光场的冷中性原子的光学捕获

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We suggest a new schema of trapping cold atoms using a two-color evanescent light field around a carbon nanotube. The two light fields circularly polarized sending through a carbon nanotube generates an evanescent wave around this nanotube. By evanescent effect, the wave decays away from the nanotube producing a set of trapping minima of the total potential in the transverse plane as a ring around the nanotube. This schema allows capture of atoms to a cylindrical shell around the nanotube. We consider some possible boundary conditions leading to the non-trivial bound state solution. Our result will be compared to some recent trapping models and our previous trapping models.
机译:我们建议使用碳纳米管周围的双色渐逝光场捕获冷原子的新架构。通过碳纳米管圆偏振的两个光场产生围绕该纳米管的渐逝波。通过渐逝效果,波远离纳米管衰减,从横向平面中的总电位的一组俘获最小值作为纳米管周围的环。该图案允许捕获原子在纳米管周围的圆柱形壳中。我们考虑一些可能导致非琐碎界定状态解决方案的边界条件。我们的结果将与最近的一些诱捕模型和我们之前的诱捕模型进行比较。

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