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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Decay Rate of Correlated Real-Space Delocalization Measures: Insights into Chemical Bonding and Mott Transitions from Hydrogen Chains
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Decay Rate of Correlated Real-Space Delocalization Measures: Insights into Chemical Bonding and Mott Transitions from Hydrogen Chains

机译:相关的实际空间离域测量的衰减率:氢链化学键合和莫特跃迁的见解

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We study in this contribution the spatial decay rate of real-space localization and delocalization indices in correlated systems. To that end, we examine Hubbard and quantum chemical models of simple cyclic hydrogen chains, showing that all descriptors of delocalization converge quickly toward the infinite chain limits. It is then shown that the localization index may be understood as a generalization of the standard order parameter in Mott insulator transitions and that the origin of the enigmatic sigmoidal profile of delocalization indices in chemical bond-breaking processes lies in the nonlinear mapping between intersite distances and correlation parameters. Although the long-range asymptotic decay of delocalization indices is exponential, we show that as the correlation parameter decreases quantum mechanical interference sets in and a switch to an oscillating pattern, related to core chemical concepts such as resonance or mesomerism, appears.
机译:我们以此贡献研究相关系统中实际空间定位和离域指标的空间衰减率。为此,我们检查了简单环状氢链的Hubbard模型和量子化学模型,结果表明所有离域描述子都迅速朝着无限链限收敛。然后表明,定位指数可以理解为莫特绝缘子过渡中标准有序参数的概括,化学键断裂过程中离域指数的神秘S形分布的起源在于站点间距离与距离之间的非线性映射。相关参数。尽管离域指数的远距离渐近衰减是指数级的,但我们表明,随着相关参数的减小,量子力学干扰将进入其中,并且会出现与振动化学模式相关的振荡模式,例如共振或中观异构。

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