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Optimized effective potential for calculations with orbital-free potential functionals

机译:使用无轨势函数进行计算时优化了有效势

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Approximation of electronic kinetic energy can be naturally expressed in terms of the one-electron effective potential, namely as a potential functional. Such approximate functionals can lead to linear scaling orbital-free calculations of large systems. For calculation within orbital-free potential functionals, a new optimized effective potential (OEP) method has been developed presently for the direct optimization of electronic ground state energy. This approach parallels the development of OEP for the direct optimization of orbital-dependent exchange-correlation functionals within the Kohn-Sham density functional theory (DFT) framework. It uses the effective one-electron potential as the basic computation variable. This potential is further expanded as a linear combination of basis functions plus a fixed reference potential. Thus, the potential optimization is transformed into the optimization of linear coefficients associated with the basis sets. As a key quantity within the orbital-free potential functionals, the chemical potential controls the correct number of electrons and depends on the trial one-electron potential. The derivatives of the chemical potential with respect to the potential variations have been derived and their use leads to a very efficient electron-number conserving update of the trial potential. The calculations of several atoms and diatomic molecules with the simple Thomas-Fermi-Dirac approximate functional has been carried out to demonstrate our approach. The developed OEP approach should be an efficient computational tool for orbital-free potential functionals.View full textDownload full textKeywordsorbital-free density functional theory, optimized effective potential, potential functional, Thomas-Fermi-Dirac modelRelated var addthis_config = { ui_cobrand: "Taylor & Francis Online", services_compact: "citeulike,netvibes,twitter,technorati,delicious,linkedin,facebook,stumbleupon,digg,google,more", pubid: "ra-4dff56cd6bb1830b" }; Add to shortlist Link Permalink http://dx.doi.org/10.1080/00268976.2012.681310
机译:电子动能的近似值可以自然地以单电子有效电势表示,即表示为电势函数。这样的近似函数可以导致大型系统的线性缩放,无轨道计算。为了在无轨电势函数内进行计算,目前已经开发了一种新的优化有效电势(OEP)方法来直接优化电子基态能量。这种方法与OEP的发展相平行,用于在Kohn-Sham密度泛函理论(DFT)框架内直接优化与轨道相关的交换-相关函数。它使用有效的单电子势作为基本计算变量。该电势进一步扩展为基本函数和固定参考电势的线性组合。因此,潜在的优化被转换为与基组相关联的线性系数的优化。作为无轨电势功能中的关键量,化学势控制正确的电子数,并取决于试验的单电子势。已经推导了关于电势变化的化学势的导数,并且它们的使用导致了非常有效的电子数守恒更新试验电势。已经使用简单的Thomas-Fermi-Dirac近似函数对几个原子和双原子分子进行了计算,以证明我们的方法。发达的OEP方法应该是无轨道潜在功能的有效计算工具。查看全文下载全文关键词无吸附密度泛函理论,优化的有效势,潜在功能,Thomas-Fermi-Dirac模型相关var addthis_config = {弗朗西斯在线”,services_compact:“ citeulike,netvibes,twitter,technorati,美味,linkedin,facebook,stumbleupon,digg,google,更多”,发布号:“ ra-4dff56cd6bb1830b”添加到候选列表链接永久链接http://dx.doi.org/10.1080/00268976.2012.681310

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