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The effect of the negative coupling parameter on the spectrum of a trapped Bose gas

机译:负耦合参数对捕集的玻色气体光谱的影响

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The interest in attractive Bose–Einstein Condensates arises due to the chemical instabilities generate when the number of trapped atoms is above a critical number. In this case, recombination process promotes the collapse of the cloud. This behavior is normally geometry dependent. Within the context of the mean field approximation, the system is described by the Gross–Pitaevskii equation. We have considered the attractive Bose–Einstein condensate, confined in a nonspherical trap, investigating numerically and analytically the solutions, using controlled perturbation and self-similar approximation methods. This approximation is valid in all interval of the negative coupling parameter allowing interpolation between weak-coupling and strong-coupling limits. When using the self-similar approximation methods, accurate analytical formulas were derived. These obtained expressions are discussed for several different traps and may contribute to the understanding of experimental observations. Keywords Bose–Einstein condensation - Negative coupling parameter
机译:人们对有吸引力的玻色-爱因斯坦凝聚物产生了兴趣,这是因为当捕获的原子数超过临界数时会产生化学不稳定性。在这种情况下,重组过程会促进云的崩溃。此行为通常取决于几何形状。在平均场近似的背景下,系统由Gross–Pitaevskii方程描述。我们已经考虑了局限在一个非球形圈闭中的有吸引力的玻色-爱因斯坦冷凝物,使用受控扰动和自相似近似方法对溶液进行了数值和分析研究。该近似值在负耦合参数的所有间隔内均有效,从而可以在弱耦合和强耦合极限之间进行插值。当使用自相似近似方法时,可以得出准确的分析公式。这些获得的表达式讨论了几种不同的陷阱,可能有助于对实验观察的理解。玻色-爱因斯坦凝聚-负耦合参数

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