Topologically driven three-spin chiral exchange interactions treated from first principles
Topologically driven three-spin chiral exchange interactions treated from first principles
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从第一原理处理拓扑驱动的三自旋手性交换相互作用
DOI:
10.1103/physrevb.104.054418
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发表时间:
2021
影响因子:
3.7
通讯作者:
H. Ebert
中科院分区:
文献类型:
--
作者:
S. Mankovsky;S. Polesya;H. Ebert
The mechanism behind the three-spin chiral interaction (TCI) included in the extended Heisenberg Hamiltonian and represented by an expression worked out recently (Phys. Rev. B, 101, 174401 (2020)) is discussed. It is stressed that this approach provides a unique set of the multispin exchange parameters which are independent of each other either due to their different order of perturbation or due to different symmetry. This ensures in particular the specific properties of the TCI that were demonstrated previously via fully relativistic first principles calculations, and that result from the common influence of several issues not explicitly seen from the expression for the TCI parameters. Therefore, an interpretation of the TCI is suggested, showing explicitly its dependence on the relativistic spin-orbit coupling and on the topological orbital susceptibility (TOS). This is based on an expression for the TOS that is worked out on the same footing as the expression for the TCI. Using first-principles calculations we demonstrate in addition numerically the common topological properties of the TCI and TOS. To demonstrate the role of the relativistic spin-orbit coupling (SOC) for the TCI, a so-called ’topological’ spin susceptibility (TSS) is introduced. This quantity characterizes the SOC induced spin magnetic moment on the atom in the presence of non-collinear magnetic structure, giving a connection between the TOS and TCI. Numerical results again support our conclusions.
影响因子:
16.6
作者:
Grytsiuk, S.;Hanke, J. -P.;Bluegel, S.
通讯作者:
Bluegel, S.