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铁和铬掺杂对ZnVO结构和磁性的影响。

Influence of Fe and Cr doping on the structural and magnetic properties of ZnVO.

作者信息

Singha Mrittika, Gupta Rajeev

机构信息

Material Science Programme, IIT Kanpur 208016, India.

出版信息

J Phys Condens Matter. 2019 Dec 11;31(49):495704. doi: 10.1088/1361-648X/ab3e94. Epub 2019 Aug 27.

DOI:10.1088/1361-648X/ab3e94
PMID:31469098
Abstract

In this paper, we report the modulation of structural and magnetic properties with Fe and Cr doping at the Zn and V sites in ZnVO. Undoped ZnVO exhibits two anomalies in the M-T measurements which are assigned to a structural transition (T ~ 57 K) followed by a magnetic transition (T ~ 41 K). With the help of x-ray diffraction and energy dispersive x-ray analysis it is found that the prepared samples are single phase as well as stoichiometric. However, doping at both the cationic sites of ZnVO leads to the disappearance of the structural transition and suppression of the long range magnetic ordering to a cusp like feature below 20 K and the cusps broaden with increasing magnetic field while the position of the cusps remain unaltered with increasing field strength. The obtained results indicate that Zn Fe VO and Zn(V Cr )O (x  =  t  =  0, 0.05, 0.1) systems are frustrated cubic normal spinel systems. Moreover, such field independent behavior of cusp positions hints towards the antiferromagnetic ground state at low temperature instead of a spin glass phase. To elucidate this fact, dc aging (magnetic relaxation) and memory effects have been investigated in zero field cooled (ZFC) and field cooled (FC) protocol for the 10% doped samples, which exhibit aging and memory effect. Our study provides an explicit evidence of spin glass like state instead of low temperature antiferromagnetic ground state in the doped compounds.

摘要

在本文中,我们报道了在ZnVO的Zn和V位点进行Fe和Cr掺杂时对其结构和磁性的调制。未掺杂的ZnVO在M-T测量中表现出两个异常现象,分别归因于结构转变(T57 K)和随后的磁转变(T41 K)。借助X射线衍射和能量色散X射线分析发现,所制备的样品为单相且化学计量比正确。然而,在ZnVO的两个阳离子位点进行掺杂会导致结构转变消失,并将长程磁有序抑制到20 K以下的类似尖点的特征,随着磁场增加尖点变宽,而尖点位置随场强增加保持不变。所得结果表明,ZnFeVO和Zn(VCr)O(x=t=0, 0.05, 0.1)体系是受挫的立方正常尖晶石体系。此外,尖点位置的这种与场无关的行为暗示低温下的反铁磁基态而非自旋玻璃相。为了阐明这一事实,对10%掺杂样品在零场冷却(ZFC)和场冷却(FC)方案中研究了直流老化(磁弛豫)和记忆效应,这些样品表现出老化和记忆效应。我们的研究为掺杂化合物中存在类似自旋玻璃态而非低温反铁磁基态提供了明确证据。

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