Glavic Artur, Summers Brock, Dahal Ashutosh, Kline Joseph, Van Herck Walter, Sukhov Alexander, Ernst Arthur, Singh Deepak K
Laboratory for Neutron Scattering and Imaging Paul Scherrer Institut 5232 Villigen PSI Switzerland.
Department of Physics and Astronomy University of Missouri Columbia MO 65211 USA.
Adv Sci (Weinh). 2018 Jan 4;5(4):1700856. doi: 10.1002/advs.201700856. eCollection 2018 Apr.
The nature of magnetic correlation at low temperature in two-dimensional artificial magnetic honeycomb lattice is a strongly debated issue. While theoretical researches suggest that the system will develop a novel zero entropy spin solid state as → 0 K, a confirmation to this effect in artificial honeycomb lattice of connected elements is lacking. This study reports on the investigation of magnetic correlation in newly designed artificial permalloy honeycomb lattice of ultrasmall elements, with a typical length of ≈12 nm, using neutron scattering measurements and temperature-dependent micromagnetic simulations. Numerical modeling of the polarized neutron reflectometry data elucidates the temperature-dependent evolution of spin correlation in this system. As temperature reduces to ≈7 K, the system tends to develop novel spin solid state, manifested by the alternating distribution of magnetic vortex loops of opposite chiralities. Experimental results are complemented by temperature-dependent micromagnetic simulations that confirm the dominance of spin solid state over local magnetic charge ordered state in the artificial honeycomb lattice with connected elements. These results enable a direct investigation of novel spin solid correlation in the connected honeycomb geometry of 2D artificial structure.
二维人工磁蜂窝晶格中低温下磁关联的本质是一个备受争议的问题。虽然理论研究表明,随着温度降至0K,该系统将形成一种新型的零熵自旋固态,但在由相连元素构成的人工蜂窝晶格中,尚未有对这一效应的证实。本研究报告了对新设计的典型长度约为12nm的超小元素人工坡莫合金蜂窝晶格中磁关联的研究,采用了中子散射测量和与温度相关的微磁模拟。极化中子反射率数据的数值建模阐明了该系统中自旋关联随温度的演变。当温度降至约7K时,系统倾向于形成新型自旋固态,表现为具有相反手性的磁涡旋环的交替分布。与温度相关的微磁模拟对实验结果进行了补充,证实了在由相连元素构成的人工蜂窝晶格中,自旋固态比局部磁荷有序态占主导地位。这些结果使得能够直接研究二维人工结构相连蜂窝几何结构中的新型自旋固态关联。