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Growth mechanism and magnon excitation in NiO nanowalls

机译:NiO纳米壁的生长机理和磁振子激发

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摘要

The nanosized effects of short-range multimagnon excitation behavior and short-circuit diffusion in NiO nanowalls synthesized using the Ni grid thermal treatment method were observed. The energy dispersive spectroscopy mapping technique was used to characterize the growth mechanism, and confocal Raman scattering was used to probe the antiferromagnetic exchange energy J2 between next-nearest-neighboring Ni ions in NiO nanowalls at various growth temperatures below the Neel temperature. This study shows that short spin correlation leads to an exponential dependence of the growth temperatures and the existence of nickel vacancies during the magnon excitation. Four-magnon configurations were determined from the scattering factor, revealing a lowest state and monotonic change with the growth temperature.PACS: 75.47.Lx; 61.82.Rx; 75.50.Tt; 74.25.nd; 72.10.Di
机译:观察到了使用Ni网格热处理方法合成的NiO纳米壁中短程多磁振激发行为和短路扩散的纳米效应。能量色散谱图技术用于表征生长机理,共聚焦拉曼散射用于在低于Neel温度的各种生长温度下探测NiO纳米壁中次近邻Ni离子之间的反铁磁交换能J2。这项研究表明,短自旋相关性导致在磁振子激发过程中生长温度和镍空位的存在呈指数关系。由散射因子确定了四磁振子构型,显示出最低的状态和随生长温度的单调变化。PACS:75.47.Lx; Nb / N。 61.82.Rx; 75.50.Tt; 74.25.nd;第72.10节

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