论文标题
铁磁CR2GE2TE6单层中的木棒相互作用和镁松弛时间
Magnon-magnon interaction and magnon relaxation time in ferromagnetic Cr2Ge2Te6 monolayer
论文作者
论文摘要
尽管二维(2D)磁铁对新型磁性,磁光,磁性,热和磁电机设备的应用具有强烈的关注和巨大的潜力,但仍未开发出一种强大的策略来系统地了解在有限温度下的Magnon-Magnon(MMI)相互作用。在本文中,我们提出了一种第一原理理论方法,该方法通过非线性校正能将有限温度的镁粘结剂相互作用引入到海森堡汉密尔顿。 Wick定理用于将四麦克农运算符转换为两麦克农订单。我们通过研究CR2GE2TE6(CGT)单层中MMI的强度来证明这种方法的功能。探索了有限温度和时间依赖性自旋自相关功能的自旋波谱。发现由于镁能的降低,由于磁通量散射而引起的镁弛豫时间随温度的增加而增加,而随着波形和外部磁场的减少。我们的结果提供了一种新的见解,以了解二维铁磁材料中的镁阻尼和能量耗散。
Despite the intense amount of attention and huge potential of two-dimensional (2D) magnets for applications in novel magnetic, magneto-optical, magneto-thermal and magneto-electronic devices, there has yet to be a robust strategy developed to systematically understand magnon-magnon (MMI) interactions at finite temperature. In this paper, we present a first-principles theoretical method to introduce the finite temperature magnon-magnon interaction into Heisenberg Hamiltonian through a nonlinear correction energy. The Wick theorem is used to decouple the four-magnon operators to two-magnon order. We demonstrate the capabilities of this method by studying the strength of MMI in Cr2Ge2Te6 (CGT) monolayer. The spin wave spectrum at finite temperature and the time-dependent spin autocorrelation function are explored. It is found that the magnon relaxation time due to magnon-magnon scattering increases with temperature because of the reduction in magnon energy, while decreases with wavevector and external magnetic field. Our results provide a new insight to understand the magnon damping and energy dissipation in two-dimensional ferromagnetic materials.