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Structural properties of the condensate in two-dimensional mesoscopic systems of strongly correlated excitons

机译:高相关激子的二维介观体系中凝结物的结构性质

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A two-dimensional mesoscopic Bose system of dipoles in a 2D trap is considered using computer simulation by the quantum path-integral Monte Carlo method. The model describes a rarefied system of spatially indirect excitons in a confining potential. Bose condensation in the system and its superfluid and structural properties are studied over a wide range of interparticle spatial correlations, from an almost ideal Bose gas to the regime of a strongly correlated system. It is found that, at strong interparticle spatial correlations, particles in the condensate form a crystal-like structure. In this case, the spatial correlations of particles in the condensate are less pronounced than the correlations of noncondensed particles. The effect of recurrent crystallization is observed in the regime of strong interparticle correlations. (C) 2004 MAIK "Nauka / Interperiodica".
机译:通过量子路径积分蒙特卡罗方法的计算机模拟,考虑了二维陷井中偶极子的二维介观玻色系统。该模型描述了一种有限的空间间接激子稀疏系统。在从几乎理想的玻色气体到强相关系统的范围内,广泛的粒子间空间相关性研究了系统中的玻色凝结及其超流体和结构特性。发现在强的颗粒间空间相关性下,冷凝物中的颗粒形成晶体状结构。在这种情况下,凝结物中颗粒的空间相关性不如未凝结颗粒的相关性明显。在强的颗粒间相关性机制中观察到了反复结晶的影响。 (C)2004 MAIK“ Nauka / Interperiodica”。

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