Anker Th, Albiez M, Gati R, Hunsmann S, Eiermann B, Trombettoni A, Oberthaler M K
Kirchhoff Institut für Physik, Universität Heidelberg, Im Neuenheimer Feld 227, 69120 Heidelberg, Germany.
Phys Rev Lett. 2005 Jan 21;94(2):020403. doi: 10.1103/PhysRevLett.94.020403. Epub 2005 Jan 19.
We report the first experimental observation of nonlinear self-trapping of Bose-condensed 87Rb atoms in a one-dimensional waveguide with a superimposed deep periodic potential . The trapping effect is confirmed directly by imaging the atomic spatial distribution. Increasing the nonlinearity we move the system from the diffusive regime, characterized by an expansion of the condensate, to the nonlinearity dominated self-trapping regime, where the initial expansion stops and the width remains finite. The data are in quantitative agreement with the solutions of the corresponding discrete nonlinear equation. Our results reveal that the effect of nonlinear self-trapping is of local nature, and is closely related to the macroscopic self-trapping phenomenon already predicted for double-well systems.
我们报道了在具有叠加深周期势的一维波导中玻色凝聚的87Rb原子非线性自俘获的首次实验观测。通过对原子空间分布进行成像直接证实了俘获效应。增加非线性程度,我们可将系统从以凝聚体膨胀为特征的扩散区域,转变到非线性主导的自俘获区域,在该区域中初始膨胀停止且宽度保持有限。数据与相应离散非线性方程的解在数量上相符。我们的结果表明,非线性自俘获效应具有局部性质,并且与双阱系统中已经预测的宏观自俘获现象密切相关。