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Unified Treatment of Magnons and Excitons in Monolayer CrI_3 from Many-Body Perturbation Theory

机译:来自许多身体扰动理论的单层CRI_3中玉音和激子的统一处理

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摘要

We present first principles calculations of the two-particle excitation spectrum of CrI3 using many-body perturbation theory including spin-orbit coupling. Specifically, we solve the Bethe-Salpeter equation, which is equivalent to summing up all ladder diagrams with static screening, and it is shown that excitons as well as magnons can be extracted seamlessly from the calculations. The resulting optical absorption spectrum as well as the magnon dispersion agree very well with recent measurements, and we extract the amplitude for optical excitation of magnons resulting from spin-orbit interactions. Importantly, the results do not rely on any assumptions of the microscopic magnetic interactions such as Dzyaloshinskii-Moriya (DM), Kitaev, or biquadratic interactions, and we obtain a model independent estimate of the gap between acoustic and optical magnons of 0.3 meV. In addition, we resolve the magnon wave function in terms of band transitions and show that the magnon carries a spin that is significantly smaller than.. This highlights the importance of terms that do not commute with S-z in any Heisenberg model description.
机译:我们使用包括旋转轨道耦合的许多身体扰动理论,提出了CRI3的双粒子激发谱的第一种原理计算。具体而言,我们解决了贝特 - Salpeter方程,这相当于求出具有静态筛选的所有梯形图,并且显示了激子和粗龙可以从计算中无缝提取。所得到的光学吸收光谱以及MAGNON分散率在最近的测量中非常吻合,并且我们提取由旋转轨道相互作用产生的隆起的光学激发幅度。重要的是,结果不依赖于诸如Dzyaloshinskii-Moriya(DM),Kitaev或双层相互作用的微观磁相互作用的任何假设,并且我们获得了0.3meV的声学和光学磁铁之间的间​​隙的模型独立估计。此外,我们在乐队转换方面解决了Magnon波函数,并表明菱镁携带显着小于的旋转。这突出了在任何Heisenberg模型描述中没有通过S-Z通勤的术语的重要性。

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  • 来源
    《Physical review letters》 |2021年第16期|166402.1-166402.6|共6页
  • 作者

    Olsen Thomas;

  • 作者单位

    Tech Univ Denmark Dept Phys CAMD DK-2800 Lyngby Denmark;

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  • 正文语种 eng
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