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首页> 外文期刊>Journal of Physics. Condensed Matter >Enhancement of magnetic ordering temperature and magnetodielectric coupling by hole doping in a multiferroic DyFe0.5Cr0.5O3
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Enhancement of magnetic ordering temperature and magnetodielectric coupling by hole doping in a multiferroic DyFe0.5Cr0.5O3

机译:孔掺杂磁化温度和磁电联轴器的增强掺杂孔掺杂.5Cr0.5O3

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摘要

We report the results of our investigation of magnetic, thermodynamic and dielectric properties of Ca substituted half-doped orthochromite, Dy0.6Ca0.4Fe0.5Cr0.5O3. Magnetic susceptibility and heat capacity data bring out that this compound undergoes two antiferromagnetic transitions, one at similar to 132 and the other at similar to 22 K. These values are higher than those of DyFe0.5Cr0.5O3. This finding highlights that non-magnetic hole doping in form of Ca+2 in the place of magnetic Dy+3 tends to enhance magnetic transition temperatures in this half-doped orthochromite. We attribute it to possible change in the valence state of Cr/Fe-ion ions due to hole doping. Dielectric anomalies are also seen near the magnetic ordering temperatures indicating magnetodielectric coupling, which is confirmed by magnetic field dependent dielectric studies. The most notable observation is that magnetodielectric coupling strength gets significantly enhanced as compared to DyFe0.5Cr0.5O3. The results reveal that it is possible to tune magnetodielectric coupling by hole doping in this system.
机译:我们报道了我们对Ca取代的半掺杂正交,DY0.6CA0.4FE0.5CR0.5O3的磁性,热力学和介电性能的研究结果。磁化率和热容量数据引发该化合物经历两个反铁磁性转变,一个类似于132的反铁磁转变,另一个类似于22k的另一个。这些值高于DYFE0.5CR0.5O3。该发现突出显示磁性+ 3的Ca + 2形式的非磁空洞掺杂趋于增强该半掺杂的正交粒子中的磁化过渡温度。我们将其归因于由于孔掺杂而导致Cr / Fe离子离子的价状态的可能变化。在指示磁电耦合的磁化温度附近还可以看到介电异常,其通过磁场依赖介电研究证实。最值得注意的观察是与DYFE0.5CR0.5O3相比,磁电耦合强度得到显着提高。结果表明,在该系统中可以通过孔掺杂来调谐磁电极耦合。

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