arXiv · 1512.07367
Leading gradient correction to the kinetic energy for two-dimensional fermion gases
Abstract
Density functional theory (DFT) is notorious for the absence of gradient corrections to the two-dimensional (2D) Thomas-Fermi kinetic-energy functional; it is widely accepted that the 2D analog of the 3D von Weizsäcker correction vanishes, together with all higher-order corrections. Contrary to this long-held belief, we show that the leading correction to the kinetic energy does not vanish, is unambiguous, and contributes perturbatively to the total energy. This insight emerges naturally in a simple extension of standard DFT, which has the effective potential energy as a functional variable on equal footing with the single-particle density.
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Martin-Isbjörn Trappe, Yink Loong Len, Hui Khoon Ng, Cord Axel Müller, Berthold-Georg Englert. 2016-02-26. Leading gradient correction to the kinetic energy for two-dimensional fermion gases. https://doi.org/10.1103/physreva.93.042510
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