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Formation process and superparamagnetic properties of (Mn,Ga)As nanocrystals in GaAs fabricated by annealing of (Ga,Mn)As layers with low Mn content

机译:Ga(mn,Ga)as纳米晶的形成过程和超顺磁性能通过退火(Ga,mn)as低mn含量的Gaas制备纳米晶

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摘要

X-ray diffraction, transmission electron microscopy, and magnetization measurements are employed to study the structural and magnetic properties of Mn-rich (Mn,Ga)As nanocrystals embedded in GaAs. These nanocomposites are obtained by moderate (400 C) and high temperature (560 and 630 C) annealing of (Ga,Mn)As layers with Mn concentrations between 0.1 and 2%, grown by molecular beam epitaxy at 270oC. Decomposition of (Ga,Mn)As is already observed at the lowest annealing temperature of 400 C for layers with initial Mn content of 1% and 2%. Both cubic and hexagonal (Mn,Ga)As nanocrystals, with similar diameters of 7 - 10 nm are observed to coexist in layers with an initial Mn content of 0.5% after higher temperature annealing. Measurements of magnetization relaxation in the time span 0.1 – 10 000 s provide evidence for superparamagnetic properties of the (Mn,Ga)As nanocrystals, as well as for the absence of spin-glass dynamics. These findings point to weak coupling between nanocrystals even in layers with the highest nanocrystal density.
机译:利用X射线衍射,透射电子显微镜和磁化强度测量来研究嵌入GaAs中的富锰(Mn,Ga)As纳米晶体的结构和磁性。这些纳米复合材料是通过在270°C下通过分子束外延生长对Mn浓度在0.1%和2%之间的(Ga,Mn)As层进行适度(400 C)和高温(560和630 C)退火而获得的。对于初始Mn含量为1%和2%的层,已经在最低退火温度400℃下观察到了(Ga,Mn)As的分解。观察到,在高温退火后,具有相似的7-10 nm直径的立方和六方(Mn,Ga)As纳米晶体共存于初始Mn含量为0.5%的层中。在0.1 – 10000 s的时间范围内测量的磁化弛豫为(Mn,Ga)As纳米晶体的超顺磁性能以及无自旋玻璃动力学提供了证据。这些发现表明,即使在具有最高纳米晶体密度的层中,纳米晶体之间的弱耦合。

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