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Inhomogeneity induced and appropriately parameterized semilocal exchange and correlation energy functionals in two-dimensions

机译:不均匀性诱导和适当参数化的半焦质交换和两个维度的相关能量函数

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摘要

The construction of meta generalized gradient approximations based on the density matrix expansion (DME) is considered as one of the most accurate techniques to design semilocal exchange energy functionals in two-dimensional density functional formalism. The exchange holes modeled using DME possess unique features that make it a superior entity. Parameterized semilocal exchange energy functionals based on the DME are proposed. The use of different forms of the momentum and flexible parameters is to subsume the non-uniform effects of the density in the newly constructed semilocal functionals. In addition to the exchange functionals, a suitable correlation functional is also constructed by working upon the local correlation functional developed for 2D homogeneous electron gas. The non-local effects are induced into the correlation functional by a parametric form of one of the newly constructed exchange energy functionals. The proposed functionals are applied to the parabolic quantum dots with a varying number of confined electrons and the confinement strength. The results obtained with the aforementioned functionals are quite satisfactory, which indicates why these are suitable for two-dimensional quantum systems. Published by AIP Publishing.
机译:基于密度矩阵膨胀(DME)的Meta广义梯度近似的构造被认为是设计二维密度功能形式主义中半型交换能量功能的最准确的技术之一。使用DME建模的交换孔具有独特的功能,使其成为优越的实体。提出了基于DME的参数化半型交换能量功能。使用不同形式的动量和柔性参数是在新构造的半象牙中占据密度的不均匀效果。除了交换功能之外,还通过在为2D均相电子气体开发的局部相关函数上工作来构造合适的相关功能。通过新构造的交换能量函数之一的参数形式诱导非局部效果函数函数。所提出的功能应用于抛物面量子点,具有不同数量的限制电子和限制强度。通过上述功能获得的结果非常令人满意,这表明为什么这些适用于二维量子系统。通过AIP发布发布。

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