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首页> 外文期刊>Journal of Physics. Condensed Matter >Probing the Griffiths like phase, unconventional dual glassy states, giant exchange bias effects and its correlation with its electronic structure in Pr2-xSrxCoM nO(6)
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Probing the Griffiths like phase, unconventional dual glassy states, giant exchange bias effects and its correlation with its electronic structure in Pr2-xSrxCoM nO(6)

机译:探测相位,非常规双玻璃状态,巨型交换偏见效应及其与其电子结构的相关性,在PR2-XSRXCOM NO(6)中

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摘要

Crystal, electronic structure, dc and ac magnetization properties of the hole substituted (Sr2+) and partially B-site disordered double perovskite Pr2-xSrxCoMnO6 system have been investigated. The XRD pattern analysis showed a systematic decrease in the lattice parameters owing to the enhanced oxidation states of the Co/Mn ions. The electronic structure study by XPS measurements suggested the presence of mixed valence states of the B-site ions (Co2+/Co3+ and Mn3+/Mn4+) with significant enhancement of the average oxidation states due to hole doping. The mere absence of electronic states near the Fermi level in the valence band (VB) spectra for both pure (x = 0.0) and Sr doped (x = 0.5) systems indicated the insulating nature of the samples. Sr substitution is observed to increase the spectral weight near the Fermi level suggesting for an enhanced conductivity of the hole doped system. The dc magnetization data divulged a Griffiths like phase above the long-range ordering temperature. A typical re-entrant spin glass like phase driven by the inherent anti-site disorder (ASD) has been recognized by ac susceptibility study for both the pure and doped systems. Most interestingly, the emergence of a new cluster glass like phase (immediately below the magnetic ordering temperature and above the spin-glass transition temperature) solely driven by the Sr substitution has been unravelled by ac magnetization dynamics study. Observation of these dual glassy states in a single system is scarce and hence placed the present system amongst the rare materials. The isothermal magnetization measurements further probed the exhibition of the giant exchange bias effect originated from the interfacial exchange interactions due to existence of low temperature antiferromagnetic clusters embedded in the glassy matrix.
机译:研究了孔的晶体,电子结构,DC和AC磁化性能(SR2 +)和部分B-位点紊乱的双钙钛矿PR2-XSRXCOMNO6系统。由于Co / Mn离子的增强氧化态,XRD模式分析显示晶格参数的系统降低。通过XPS测量的电子结构研究表明,由于孔掺杂,具有显着提高平均氧化状态的B-位点离子(CO2 + / CO3 +和MN3 + / MN4 +)的混合价态。仅仅在纯(x = 0.0)和Sr掺杂(x = 0.5)系统的价带(Vb)光谱附近的电子状态靠近的电子状态(x = 0.5)系统指示样品的绝缘性质。观察SR取代以增加Fermi水平附近的光谱重量,表明孔掺杂系统的增强率。直流磁化数据将类似的相位熔断在远程排序温度上方的相位。对于由固有的抗现场障碍(ASD)驱动的典型的再参与者旋转玻璃已经通过对纯和掺杂系统的AC易感性研究来认识到阶段。最有意义地,通过AC磁化动力学研究已经解开了仅由SR替换的相位(紧邻磁性有序温度及高于旋转玻璃化转变温度)的新簇玻璃的出现已被AC磁化动力学研究已经解开。在单个系统中观察这些双玻璃状态稀缺,因此将本系统放置在稀有材料中。等温磁化测量进一步探讨了由于嵌入玻璃基质中嵌入的低温反铁磁体簇的界面交换相互作用的巨型交换偏置效应的展览。

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