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ELECTRON CORRELATION - KEEPING CLOSE TO AN ORBITAL DESCRIPTION

机译:电子相关-保持接近轨道描述

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This article deals with excited-state properties and spectroscopies which probe them. We argue that the orbitals obtained in local density theory form an excellent basis for discussing excited states and that the self-energy operator (or optical potential) associated with one-electron-type excited states is closely diagonal in such a basis. This diagonality often leads to considerable simplifications. We also discuss the reasons for the successes of the ''GW-approximation'' for the optical potential in predicting excited states. We further discuss a recent approach to calculate spectroscopic data. In particular, we present explicit results of this approach to photoelectron emission. The approach treats correlations within the target exactly but neglects some terms in the coupling between target and probe electron (= the photoemitted electron). This leads to closed expressions which exhibit a number of qualitative features. One is the cancellation of intrinsic and extrinsic losses at threshold excitation. Another is the broadening of the quasi-particles; we have energy-broadening for the occupied states but broadening through decaying wave functions for unoccupied states. (C) 1995 John Wiley & Sons, Inc. [References: 25]
机译:本文介绍了激发态性质和探测它们的光谱学。我们认为,在局部密度理论中获得的轨道为讨论激发态提供了极好的基础,并且与单电子型激发态相关的自能算子(或光势)在这种基础上是紧密对角的。这种对角线常常导致相当大的简化。我们还讨论了在预测激发态时光势“ GW近似”成功的原因。我们将进一步讨论计算光谱数据的最新方法。特别是,我们介绍了这种方法的光电子发射的明确结果。该方法精确地处理了目标内的相关性,但忽略了目标与探针电子(=光发射电子)之间的耦合中的某些项。这导致表现出许多定性特征的封闭式表达。一种是消除阈值激励下的固有和非固有损耗。另一个是准粒子的扩大。我们对被占领的国家进行了能量扩展,但对未被占领的国家通过衰减波函数进行了扩展。 (C)1995 John Wiley&Sons,Inc. [参考:25]

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