论文标题

在高压下,在散装cu2oseo中以室温为单位的阶段

Room-temperature skyrmion phase in bulk Cu2OSeO3 under high pressures

论文作者

Deng, Liangzi, Wu, Hung-Cheng, Litvinchuk, Alexander P., Yuan, Noah F. Q., Lee, Jey-Jau, Dahal, Rabin, Berger, Helmuth, Yang, Hung-Duen, Chu, Ching-Wu

论文摘要

非中心对称Helimagnet中的天际状态显示拓扑受到保护的自旋纹理,具有对高密度信息存储,超快旋转型和有效的微波设备的深远影响。通常,其在散装helimagnet中的平衡状态仅在非常有限的磁场 - 温度相位空间上发生,并且通常在磁过渡温度TC附近的低温区域。我们通过从立方P2(_1)3的一系列相过渡到单相过渡,通过高达42.1 GPA的压力扩展并增强了Skyrmion阶段区域的单晶Cu2OseO3的较小范围从55-58.5 k到5-300 k。最后,使用了我们新开发的超敏高压磁力化技术,到达三会面P1相。结果与我们的金茨堡 - 兰道自由能分析一致,这表明压力倾向于稳定天空状态,并且在较高的温度下。该观察结果还表明,在各种晶体对称性中,可以在较高的温度下达到天际状态,这表明天空对潜在的晶体晶格的不敏感性,因此可能在helimagnets中更普遍地存在天际。

A skyrmion state in a non-centrosymmetric helimagnet displays topologically protected spin textures with profound technological implications for high density information storage, ultrafast spintronics, and effective microwave devices. Usually, its equilibrium state in a bulk helimagnet occurs only over a very restricted magnetic-field--temperature phase space and often in the low temperature region near the magnetic transition temperature Tc. We have expanded and enhanced the skyrmion phase region from the small range of 55-58.5 K to 5-300 K in single-crystalline Cu2OSeO3 by pressures up to 42.1 GPa through a series of phase transitions from the cubic P2(_1)3, through orthorhombic P2(_1)2(_1)2(_1) and monoclinic P2(_1), and finally to the triclinic P1 phase, using our newly developed ultrasensitive high-pressure magnetization technique. The results are in agreement with our Ginzburg-Landau free energy analyses, showing that pressures tend to stabilize the skyrmion states and at higher temperatures. The observations also indicate that the skyrmion state can be achieved at higher temperatures in various crystal symmetries, suggesting the insensitivity of skyrmions to the underlying crystal lattices and thus the possible more ubiquitous presence of skyrmions in helimagnets.

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