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首页> 外文期刊>Advances in Mathematical Physics >Exact Formulation of the Transverse Dynamic Spin Susceptibility as an Initial-Value Problem
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Exact Formulation of the Transverse Dynamic Spin Susceptibility as an Initial-Value Problem

机译:精确配制横向动态自旋敏感性作为初始值问题

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摘要

The transverse dynamic spin susceptibility is a correlation function that yields exact information about spin excitations in systems with a collinear magnetic ground state, including collective spin-wave modes. In an ab initio context, it may be calculated within many-body perturbation theory or time-dependent density-functional theory, but the quantitative accuracy is currently limited by the available functionals for exchange and correlation in dynamically evolving systems. To circumvent this limitation, the spin susceptibility is here alternatively formulated as the solution of an initial-value problem. In this way, the challenge of accurately describing exchange and correlation in many-electron systems is shifted to the stationary initial state, which is much better understood.The proposed scheme further requires the choice of an auxiliary basis set, which determines the speed of convergence but always allows systematic convergence in practical implementations.
机译:横向动态旋转敏感性是相关函数,其产生关于具有共线磁场地的系统中的旋转激发的精确信息,包括集体旋转波模式。 在AB初始上下文中,可以在许多身体扰动理论或时间依赖性密度功能理论中计算,但定量精度目前受到动态演化系统中的交换和相关性的可用功能的限制。 为了避免这种限制,这里旋转敏感性可替代地配制成初始值问题的溶液。 以这种方式,准确地描述许多电子系统中的交换和相关性的挑战被移位到静止初始状态,这更好地理解。所提出的方案还需要选择辅助基础集,这决定了收敛速度 但总是允许在实际实现中进行系统的收敛。

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