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首页> 外文期刊>Chemical Physics Letters >Entanglement as measure of electron-electron correlation in quantum chemistry calculations
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Entanglement as measure of electron-electron correlation in quantum chemistry calculations

机译:纠缠在量子化学计算中作为电子-电子相关性的度量

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摘要

In quantum chemistry calculations, the correlation energy is defined as the difference between the Hartree-Fock limit energy and the exact solution of the nonrelativistic Schrodinger equation. With this definition, the electron correlation effects are not directly observable. In this report, we show that the entanglement can be used as an alternative measure of the electron correlation in quantum chemistry calculations. Entanglement is directly observable and it is one of the most striking properties of quantum mechanics. As an example we calculate the entanglement for He atom and H-2 molecule with different basis sets. (c) 2005 Elsevier B.V. All rights reserved.
机译:在量子化学计算中,相关能定义为Hartree-Fock极限能与非相对论薛定inger方程精确解之间的差。用这个定义,电子相关效应是不能直接观察到的。在这份报告中,我们证明了纠缠可以用作量子化学计算中电子相关性的替代方法。纠缠是直接可观察到的,它是量子力学最引人注目的特性之一。例如,我们计算了具有不同基集的He原子和H-2分子的缠结。 (c)2005 Elsevier B.V.保留所有权利。

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