Dhali Prasad, Mondal Ritwik
Department of Physics, Indian Institue of Science Education and Research Tirupati, IN-517507 Tirupati, India.
Department of Physics, Indian Institue of Technology (Indian School of Mines) Dhanbad, IN-826004 Dhanbad, India.
J Phys Condens Matter. 2024 Mar 28;36(25). doi: 10.1088/1361-648X/ad353a.
Although the magnetic Gilbert damping was considered as a scalar quantity in micromagnetic and atomistic spin simulations, recent investigations show that the Gilbert damping parameter is a tensor. Here, we investigate the effect of anisotropic and chiral damping in one-sublattice ferromagnets and two-sublattice antiferromagnets. We employ linear response theory to calculate the susceptibility with the damping tensor and determine the ferromagnetic and antiferromagnetic resonance frequencies together with the effective damping. Our results show that apart from the scalar Gilbert damping, the antisymmetric chiral damping has a significant contribution to the spin dynamics that it breaks the antiparallel alignment of two sublattices in antiferromagnets even in the absence of an applied field. To this end, we also compare the tensorial damping and cross-sublattice scalar damping in antiferromagnets.
尽管在微磁学和原子自旋模拟中,磁性吉尔伯特阻尼被视为一个标量,但最近的研究表明,吉尔伯特阻尼参数是一个张量。在此,我们研究了单亚晶格铁磁体和双亚晶格反铁磁体中各向异性和手征阻尼的影响。我们采用线性响应理论,利用阻尼张量计算磁化率,并确定铁磁共振和反铁磁共振频率以及有效阻尼。我们的结果表明,除了标量吉尔伯特阻尼外,反对称手征阻尼对自旋动力学有显著贡献,即使在没有外场的情况下,它也会破坏反铁磁体中两个亚晶格的反平行排列。为此,我们还比较了反铁磁体中的张量阻尼和跨亚晶格标量阻尼。