Collapsing dynamics of trapped Bose-Einstein condensates with attractive interactions

H. Saito, Masahito Ueda
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Abstract

Summary form only given. Bose-Einstein condensation (BEC) of trapped atomic vapor has been realized in several atomic species. The static and dynamical properties of BEC crucially depend on the sign of the interatomic interaction. When the interaction is attractive, BEC in a spatially uniform 3D system is unstable to collapse into a denser phase. In a spatially confined system, however, the zero-point energy serves as a kinetic obstacle against collapse, allowing metastable BEC to be formed if the number of BEC atoms is below a certain critical number. Above the critical number of atoms, BEC collapses. The BEC with attractive interactions, therefore, has been restricted to a small number of atoms (/spl sim/1000) and the number has not been controllable.
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具有吸引相互作用的俘获玻色-爱因斯坦凝聚体的坍缩动力学
只提供摘要形式。捕获原子蒸汽的玻色-爱因斯坦凝聚(BEC)已在几种原子中实现。BEC的静态和动态性质主要取决于原子间相互作用的符号。当相互作用具有吸引力时,空间均匀三维系统中的BEC不稳定坍缩成致密相。然而,在空间受限的系统中,零点能量作为防止坍缩的动能障碍,当BEC原子数低于某一临界数时,允许形成亚稳态BEC。超过临界数量的原子,BEC坍塌。因此,具有吸引相互作用的BEC被限制在少量原子(/spl sim/1000)中,并且数量是不可控制的。
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