论文标题
巨磁磁性化合物EUB 5.99C0.01中的证据形态磁相分离
Evidence formagnetic phase separation in colossal magnetoresistance compound EuB5.99C0.01
论文作者
论文摘要
EUB5.99C0.01是一种低载体密度的铁磁铁,由于碳含量的波动而被认为本质上是不均匀的。根据我们以前的研究,EUB5.99C0.01的电trasport近似于大量铁磁(FM)订购的温度,受磁性极性的影响。富含碳的区域与FM相不相容,因此它们充当防止磁极的间隔者,以连接磁极,形成FM簇,并最终在该化合物中渗透并建立(同质)散装的FM状态,从而导致额外的(磁磁)的耐药性增加。低于大容量FM排序的温度,富含碳的区域产生了helimagnetic域,这是电阻率中额外的散射项的原因。不幸的是,在EUB5.99C0.01中尚未提供任何直接证据表明磁相分离。这里报道了电气,热容量,霍尔电阻率和小角度中子散射研究的结果为形成混合磁性结构的证据,并为EUB5.99C0.01中磁倍率增强的先前提出的方案提供一致的支持。
EuB5.99C0.01 is a low-carrier density ferromagnet that is believed to be intrinsically inhomogeneous due to fluctuations of carbon content. In accordance with our previous studies, electric trasport of EuB5.99C0.01 close above temperature of the bulk ferromagnetic (FM) ordering is governed by magnetic polarons. Carbon-rich regions are incompatible with FM phase and therefore they act as spacers preventing magnetic polarons to link, to form FM clusters, and eventually to percolate and establish a (homogoneous) bulk FM state in this compound, what consequently causes additional (magneto)resistance increase. Below the temperature of the bulk FM ordering, carbon-rich regions give rise to helimagnetic domains, which are responsible for an additional scattering term in the electrical resistivity. Unfortunately, there has not been provided any direct evidence for magnetic phase separation in EuB5.99C0.01 yet. Here reported results of electrical, heat capacity, Hall resistivity and small-angle neutron scattering studies bring evidence for formation of mixed magnetic structure, and provide consistent support for the previously proposed scenario of the magnetoresistance enhancement in EuB5.99C0.01.