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The relationship of the magnetic properties of M (M = Mn, Fe, Co)-doped ZnO single crystals and their electronic structures

机译:M(M = Mn,Fe,Co)掺杂的ZnO单晶的磁性与电子结构的关系

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The electronic density of states and magnetic properties were investigated by tunneling spectroscopy and SQUID, respectively, for a series of 3d transition-metal (Mn, Fe, Co)-doped ZnO. By tunneling spectroscopy an additional density of states was observed in Mn- and Co-doped ZnO adjacent to the top of the valence band of the host ZnO. Instead, in the Fe-doped sample, a band of density of states was observed across the Fermi level in the mid-gap. The magnetization curve (M versus H) obtained by SQUID showed a ferromagnetic hysteresis at room temperature for the Fe-doped sample, whereas for the Mn- and Co-doped samples, the M versus H curve showed only a linear characteristic without hysteresis. From the comparison of the density of states and the magnetization characteristics, it is strongly suggested that the ferromagnetism in Fe-doped ZnO at room temperature originates from the half-filled Fe 3d band in the mid-gap of the host ZnO.
机译:通过一系列的3d过渡金属(Mn,Fe,Co)掺杂的ZnO,分别通过隧道光谱法和SQUID研究了态的电子密度和磁性能。通过隧道光谱法,在邻近主体ZnO价带顶部的Mn和Co掺杂的ZnO中观察到了附加的态密度。相反,在掺铁样品中,在中间能隙中的费米能级上观察到了一个状态密度带。通过SQUID获得的磁化曲线(M对H)在室温下显示出铁掺杂样品的铁磁磁滞,而对于Mn和Co掺杂样品,M对H曲线仅显示线性特性而无磁滞。通过状态密度和磁化特性的比较,强烈建议在室温下,掺Fe的ZnO中的铁磁性来自主体ZnO中间间隙中的Fe 3d半填充带。

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