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Cluster Chemistry And Dynamics Special Feature: Electron and boson clusters in confined geometries: Symmetry breaking in quantum dots and harmonic traps

机译:团簇化学与动力学特殊功能:有限几何中的电子和玻色子团簇:量子点和谐波陷阱中的对称性破裂

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摘要

We discuss the formation of crystalline electron clusters in semiconductor quantum dots and of crystalline patterns of neutral bosons in harmonic traps. In a first example, we use calculations for two electrons in an elliptic quantum dot to show that the electrons can localize and form a molecular dimer. The calculated singlet–triplet splitting (J) as a function of the magnetic field (B) agrees with cotunneling measurements with its behavior reflecting the effective dissociation of the dimer for large B. Knowledge of the dot shape and of J(B) allows determination of the degree of entanglement. In a second example, we study strongly repelling neutral bosons in two-dimensional harmonic traps. Going beyond the Gross–Pitaevskii (GP) mean-field approximation, we show that bosons can localize and form polygonal-ring-like crystalline patterns. The total energy of the crystalline phase saturates in contrast to the GP solution, and its spatial extent becomes smaller than that of the GP condensate.
机译:我们讨论了半导体量子点中晶体电子簇的形成以及谐波陷阱中中性玻色子的晶体图案。在第一个示例中,我们对椭圆形量子点中的两个电子进行了计算,以表明电子可以定位并形成分子二聚体。计算得出的单重态-三重态分裂(J)作为磁场(B)的函数与共隧穿测量相符,其行为反映了大B的二聚体的有效离解。纠缠程度。在第二个示例中,我们研究了二维谐波陷阱中的强排斥中性玻色子。超出了Gross–Pitaevskii(GP)的平均场近似值,我们证明了玻色子可以定位并形成多边形环状的晶体图案。与GP溶液相比,结晶相的总能量饱和,其空间范围小于GP冷凝物的空间范围。

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