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Charge transfer in time-dependent density-functional theory via spin-symmetry breaking

机译:依赖时间的密度泛函理论中通过自旋对称断裂的电荷转移

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摘要

Long-range charge-transfer excitations pose a major challenge for time-dependent density-functional approximations. We show that spin-symmetry breaking offers a simple solution for molecules composed of open-shell fragments, yielding accurate excitations at large separations when the acceptor effectively contains one active electron. Unrestricted exact-exchange and self-interaction-corrected functionals are performed on one-dimensional models and on the real LiH molecule within the pseudopotential approximation to demonstrate our results.
机译:对于依赖于时间的密度函数逼近,远程电荷转移激发提出了重大挑战。我们表明自旋对称断裂为由开壳片段组成的分子提供了一种简单的解决方案,当受体有效地包含一个活性电子时,在大的间隔处产生精确的激发。一维模型和伪势近似中的真实LiH分子均执行无限制的精确交换和自我相互作用校正的功能,以证明我们的结果。

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