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通过手性铁磁异质结构中的形态热相变产生电流诱导的斯格明子。

Current-Induced Skyrmion Generation through Morphological Thermal Transitions in Chiral Ferromagnetic Heterostructures.

机构信息

Department of Materials Science and Engineering, Massachusetts Institute of Technology, Cambridge, MA, 02139, USA.

Institute of Physics, Johannes Gutenberg-University Mainz, 55099, Mainz, Germany.

出版信息

Adv Mater. 2018 Dec;30(49):e1805461. doi: 10.1002/adma.201805461. Epub 2018 Oct 4.

Abstract

Magnetic skyrmions promise breakthroughs in future memory and computing devices due to their inherent stability and small size. Their creation and current driven motion have been recently observed at room temperature, but the key mechanisms of their formation are not yet well-understood. Here it is shown that in heavy metal/ferromagnet heterostructures, pulsed currents can drive morphological transitions between labyrinth-like, stripe-like, and skyrmionic states. Using high-resolution X-ray microscopy, the spin texture evolution with temperature and magnetic field is imaged and it is demonstrated that with transient Joule heating, topological charges can be injected into the system, driving it across the stripe-skyrmion boundary. The observations are explained through atomistic spin dynamic and micromagnetic simulations that reveal a crossover to a global skyrmionic ground state above a threshold magnetic field, which is found to decrease with increasing temperature. It is demonstrated how by tuning the phase stability, one can reliably generate skyrmions by short current pulses and stabilize them at zero field, providing new means to create and manipulate spin textures in engineered chiral ferromagnets.

摘要

磁斯格明子由于其内在的稳定性和小尺寸,有望在未来的存储和计算设备中取得突破。最近已经在室温下观察到了它们的产生和电流驱动的运动,但它们的形成关键机制还没有被很好地理解。在这里,研究表明在重金属/铁磁体异质结构中,脉冲电流可以驱动迷宫状、条状和斯格明子态之间的形态转变。通过高分辨率 X 射线显微镜,对温度和磁场下的自旋织构演化进行了成像,并证明了通过瞬态焦耳加热,可以向系统注入拓扑电荷,驱动其越过条纹-斯格明子边界。通过原子自旋动力学和微磁学模拟对观察结果进行了解释,表明在超过一个阈值磁场时,系统会发生交叉到全局斯格明子基态,而该阈值磁场随温度升高而降低。研究表明,通过调整相位稳定性,人们可以通过短电流脉冲可靠地产生斯格明子,并在零场下稳定它们,从而为在工程手性铁磁体中创建和操纵自旋织构提供了新的手段。

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