论文标题
Skyrmion的相互作用和手性磁铁的晶格:分析结果
Skyrmion interactions and lattices in chiral magnets: analytical results
论文作者
论文摘要
我们研究了平面上磁空的两体相互作用,并将其应用于天际晶格的(主要)分析描述。这是在可解决方案的背景下完成的,这是磁各向异性和zeeman术语的特定选择,其中有天空分析表达式。发现这些分析单个天际溶液的能量被发现在临界点低于临界点,而铁磁状态不再是最低的能量状态。如果没有数值模拟的歧义,则可以准确确定此临界值。沿着可解决的线路,一对天空的相互作用能量与纯粹的Zeeman潜在术语的指数衰减相比,权力定律脱落。使用相互作用的能量表达式,我们构建了一个不均匀的Skyrmion晶格状态,该状态是该模型特定参数区域的候选基础状态。最后,我们估计了天空晶格与不均匀的螺旋状态之间的过渡。
We study two-body interactions of magnetic skyrmions on the plane and apply them to a (mostly) analytic description of a skyrmion lattice. This is done in the context of the solvable line, a particular choice of a potential for magnetic anisotropy and Zeeman terms, where analytic expressions for skyrmions are available. The energy of these analytic single skyrmion solutions is found to become negative below a critical point, where the ferromagnetic state is no longer the lowest energy state. This critical value is determined exactly without the ambiguities of numerical simulations. Along the solvable line the interaction energy for a pair of skyrmions is repulsive with power law fall off in contrast to the exponential decay of a purely Zeeman potential term. Using the interaction energy expressions we construct an inhomogeneous skyrmion lattice state, which is a candidate ground states for the model in particular parameter regions. Finally we estimate the transition between the skyrmion lattice and an inhomogeneous spiral state.