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Gd-doped GaN studied with element specificity: Very small polarization of Ga, paramagnetism of Gd and the formation of magnetic clusters

机译:GD掺杂GaN与元素特异性研究:GA的非常小的偏振,GD的副作用和磁性簇的形成

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Element specific X-ray linear dichroism (XLD), X-ray magnetic circular dichroism (XMCD) at the Ga K- and Ga and Gd L_3-edges and magnetic resonance measurements have been carried out on Gd:GaN grown by molecular beam epitaxy with different Gd concentrations. XMCD studies at the Ga iC-edge reveal only a very weak magnetic polarization, which is too small to account for the colossal moments reported before by SQUID. In the dilute limit we can show by XLD that the majority of the Gd dopant atoms go to substitutional Ga sites. XMCD studies demonstrate that the Gd sublattice behaves paramagnetic which is in contrast to integral SQUID measurements. The absence of ferromagnetic order at room temperature is corroborated by magnetic resonance studies. First signatures of phase separation are visible. At higher Gd concentrations phase separation is found by XLD. In such samples ferromagnetic-like order is consistently found by SQUID, XMCD and magnetic resonance which is characteristic for a blocked superparamagnetic ensemble. In turn, phase separated ferromagnetic Gd/GdN clusters cannot account for magnetic order observed at and above 300 K by SQUID.
机译:在GA K-and Ga和Ga和Gd L_3边缘和Gd L_3边缘和磁共振测量的元素特异性X射线线性二色(XLD),X射线磁性圆形二色(XMCD)已经进行了GD:通过分子束外延生长的GaN生长不同的GD浓度。 GA IC-EDGE的XMCD研究仅揭示了一个非常弱的磁极化,这太小而无法考虑鱿鱼前报道的巨大时刻。在稀释的限制中,我们可以通过XLD显示大多数GD掺杂剂原子转到替代GA网站。 XMCD研究表明,GD Sublattice的顺从表现为与整体鱿鱼测量相反。通过磁共振研究,在室温下不存在铁磁性阶。相分离的第一个签名是可见的。在较高的GD浓度下,XLD发现相分离。在这种样本中,通过鱿鱼,XMCD和磁共振始终发现铁磁性的顺序,该磁共振是封闭的超顺磁性集合的特征。反过来,相分离的铁磁性GD / GDN簇不能解释在鱿鱼处和高于300k以上观察到的磁秩序。

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