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Interstitial manganese in (Ga,Mn)As detected by electron paramagnetic resonance

机译:电子顺磁共振检测(Ga,Mn)中的间隙锰

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Various types of Mn in epitaxially grown (Ga,Mn)As have been investigated. Ionized interstitial manganese donors Mn_I~(2+) have been found to occur in (Ga,Mn)As at dopant concentrations as low as 0.5%. A comparison with spectra from interstitial Mn_I~(2+) inside bulk-doped GaAs:Mn yields a slight decrease of 1.5% in the hyperfine splitting with increasing dopant concentration. This is attributed to an increase in the lattice constant of (Ga,Mn)As with increasing manganese concentration. Contrary to Mn interstitials, Mn dopants on Ga lattice sites acts as acceptors. It is shown that Mn on Ga lattice sites Mn_(Ga)~(2+) is non-uniformly distributed. A low percentage of isolated Mn acceptors can be distinguished from the exchange broadened Mn_(Ga)~(2+) signal. Thus, electron paramagnetic resonance is a promising tool for the investigation of (Ga,Mn)As and the classification of various types of Mn dopants responsible for the magnetic properties of (Ga,Mn)As.
机译:已经研究了外延生长的(Ga,Mn)As中的各种类型的Mn。已发现离子化间隙锰供体Mn_I〜(2+)的掺杂浓度低至0.5%时会在(Ga,Mn)As中发生。与大量掺杂的GaAs:Mn内部的间隙Mn_I〜(2+)的光谱进行比较后,随着掺杂剂浓度的增加,超细分裂中的锰含量略有下降1.5%。这归因于随着锰浓度的增加,(Ga,Mn)As的晶格常数增加。与Mn间隙相反,Ga晶格位上的Mn掺杂剂充当受体。结果表明,Ga晶格位点Mn_(Ga)〜(2+)上的Mn分布不均匀。低百分比的分离的Mn受体可以与交换加宽的Mn_(Ga)〜(2+)信号区分开。因此,电子顺磁共振是用于研究(Ga,Mn)As和对负责(Ga,Mn)As磁性的各种类型的Mn掺杂物进行分类的有前途的工具。

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