论文标题

磁分子中的时间依赖性自旋各向异性

Time-dependent spintronic anisotropy in magnetic molecules

论文作者

Wrześniewski, Kacper, Weymann, Ireneusz

论文摘要

从理论上讲,我们研究了诱导的大型自旋磁分子与自旋极化铁磁铅的淬灭动力学。实时演化是通过在矩阵乘积状态框架内实现的时间依赖性密度 - 矩阵数值重新归一化方法来计算的,该方法以非常准确的方式考虑了所有相关性。我们确定系统对旋转依赖性耦合与铁磁导管中淬灭的响应。特别是,我们专注于与从弱相关到强耦合方向相关的瞬态动力学,在这些耦合方案中,围绕相关性变得很重要。通过计算自旋四极矩的时间相关期望值和相关的自旋算子来检查动力学。我们确定描述淬灭动力学的相关时间尺度,并确定分子有效交换耦合的影响,并导致自旋极化对系统动力学行为的影响。此外,考虑到我们对大分子旋转值的预测的概括。最后,我们分析了有限温度的效果,并表明它通过强烈抑制了由于热波动而导致时间依赖性的自旋 - 四极力矩,从而导致磁各向异性的降低。

We theoretically study the quench dynamics of induced anisotropy of a large-spin magnetic molecule coupled to spin-polarized ferromagnetic leads. The real-time evolution is calculated by means of the time-dependent density-matrix numerical renormalization group method implemented within the matrix product states framework, which takes into account all correlations in very accurate manner. We determine the system's response to a quench in the spin-dependent coupling to ferromagnetic leads. In particular, we focus on the transient dynamics associated with crossing from the weak to the strong coupling regime, where the Kondo correlations become important. The dynamics is examined by calculating the time-dependent expectation values of the spin-quadrupole moment and the associated spin operators. We identify the relevant time scales describing the quench dynamics and determine the influence of the molecule's effective exchange coupling and leads spin-polarization on the dynamical behavior of the system. Furthermore, the generalization of our predictions for large values of molecule's spin is considered. Finally, we analyze the effect of finite temperature and show that it gives rise to a reduction of magnetic anisotropy by strong suppression of the time-dependent spin-quadrupole moment due to thermal fluctuations.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源