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Liu, Chaoming; Li, Xingji; Yang, Jianqun; Hübner, René; Xie, Yufang; Wang, Mao; Xu, Chi; Jiang, Zenan; Yuan, Ye; Prucnal, Slawomir; Helm, Manfred; Zhou, Shengqiang; Li, Lingwei; Weschke, Eugen, E-mail: cmliu@hit.edu.cn, E-mail: y.yuan@hzdr.de2019
AbstractAbstract
[en] In the present work, millisecond-range flash lamp annealing is used to recrystallize Mn-implanted Ge. Through systematic investigations of structural and magnetic properties, we find that the flash lamp annealing produces a phase mixture consisting of spinodally decomposed Mn-rich ferromagnetic clusters within a paramagnetic-like matrix with randomly distributed Mn atoms. Increasing the annealing energy density from 46, via 50, to 56 J cm−2 causes the segregation of Mn atoms into clusters, as proven by transmission electron microscopy analysis and quantitatively confirmed by magnetization measurements. According to x-ray absorption spectroscopy, the dilute Mn ions within Ge are in d 5 electronic configuration. This Mn-doped Ge shows paramagnetism, as evidenced by the unsaturated magnetic-field-dependent x-ray magnetic circular dichroism signal. Our study reveals how spinodal decomposition occurs and influences the formation of ferromagnetic Mn-rich Ge–Mn nanoclusters. (paper)
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Source
Available from http://dx.doi.org/10.1088/1361-6528/aaefb1; Country of input: International Atomic Energy Agency (IAEA)
Record Type
Journal Article
Journal
Nanotechnology (Print); ISSN 0957-4484;
; v. 30(5); [8 p.]

Country of publication
ABSORPTION SPECTROSCOPY, ANNEALING, DECOMPOSITION, DOPED MATERIALS, ELECTRONIC STRUCTURE, ENERGY DENSITY, GERMANIUM, LIGHT BULBS, MAGNETIC CIRCULAR DICHROISM, MAGNETIC FIELDS, MAGNETIC PROPERTIES, MANGANESE, MANGANESE IONS, NANOSTRUCTURES, PARAMAGNETISM, TRANSMISSION ELECTRON MICROSCOPY, X-RAY SPECTROSCOPY
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