论文标题

倾斜偶极子的分离管中的簇

Clusters in Separated Tubes of Tilted Dipoles

论文作者

Armstrong, Jeremy R., Jensen, Aksel S., Volosniev, Artem G., Zinner, Nikolaj T.

论文摘要

几个体体簇是气相中多体系统的构建块,只要温度最多就是该群集的结合能的顺序。在这里,我们通过考虑装有偶极区分颗粒的管系统来说明这一说法。我们计算分区函数,该函数决定了在给定温度下找到几个体簇的概率。我们的计算的输入 - 使用谐波近似值估算了几个体簇的能量。我们首先描述并证明了数值程序的有效性。然后,我们讨论将零温度多体状态熔化为自由颗粒和几个体簇的气体的结果。对于高于其结合能阈值高的温度,二聚体压倒性地占主导地位,在自由颗粒中剩余的概率。在非常高温下(谐波振荡器陷阱结合)最终达到了粒子优势。在每一层中,该结构演变都出现在一个和两个颗粒中,提供了有关超电压偶性气体行为的关键信息。该研究使用五个管中的十个偶极子系统解决了很少的和多体物理之间的过渡区域,这是温度的函数。

A few-body cluster is a building block of a many-body system in a gas phase provided the temperature at most is of the order of the binding energy of this cluster. Here we illustrate this statement by considering a system of tubes filled with dipolar distinguishable particles. We calculate the partition function, which determines the probability to find a few-body cluster at a given temperature. The input for our calculations -- the energies of few-body clusters -- is estimated using the harmonic approximation. We first describe and demonstrate the validity of our numerical procedure. Then we discuss the results featuring melting of the zero-temperature many-body state into a gas of free particles and few-body clusters. For temperature higher than its binding energy threshold, the dimers overwhelmingly dominate the ensemble, where the remaining probability is in free particles. At very high temperatures free (harmonic oscillator trap-bound) particle dominance is eventually reached. This structure evolution appears both for one and two particles in each layer providing crucial information about the behavior of ultracold dipolar gases. The investigation addresses the transition region between few and many-body physics as a function of temperature using a system of ten dipoles in five tubes.

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