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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Laser-Induced Demagnetization at Ultrashort Time Scales: Predictions of TDDFT
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Laser-Induced Demagnetization at Ultrashort Time Scales: Predictions of TDDFT

机译:超短时间尺度上的激光诱导退磁:TDDFT的预测

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摘要

Time-dependent density functional theory (TDDFT) is implemented in an all electron solid-state code for the case of fully unconstrained noncollinear spins. We use this to study intense, short, laser pulse-induced demagnetization in bulk Fe, Co, Ni and find that demagnetization can take place on time scales of <20 fs. It is demonstrated that this form of demagnetization is a two-step process: excitation of a fraction of electrons followed by spin-flip transitions mediated by spin orbit coupling of the remaining localized electrons. We further show that it is possible to control the moment loss by tunable laser parameters, including frequency, duration, and intensity.
机译:对于完全不受约束的非共线自旋,在所有电子固态代码中实现了时变密度泛函理论(TDDFT)。我们用它来研究块状Fe,Co,Ni中强烈的,短的,激光脉冲引起的退磁,发现退磁可以在小于20 fs的时间范围内发生。证明了这种形式的退磁是一个两步过程:一部分电子的激发,然后是其余局部电子的自旋轨道耦合介导的自旋翻转转变。我们进一步表明,可以通过可调的激光参数(包括频率,持续时间和强度)来控制力矩损失。

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