论文标题

在低温下,在低温下,PR掺杂的polycrystalline GD $ _ {0.55} $ pr $ _ {0.55} $ pr $ _3 $的结构相关

Structural correlation to enhanced magnetodielectric properties of Pr-doped polycrystalline Gd$_{0.55}$Pr$_{0.45}$MnO$_3$ at low temperatures

论文作者

Pant, Pooja, Agarwal, Harshit, Bharadwaj, Suresh, Sagdeo, Archana, Shaz, M. A.

论文摘要

在存在施加磁场的情况下,改善的介电特性的效果在PR掺杂的多晶GD $ _ {0.55} $ pr $ _ {0.45} $ mno $ _3 $中,由下降到50 K和磁性属性补充。增强的介电介电常数和低介电损耗代表样品的强烈依赖性介电行为。使用同步加速器角度分散X射线衍射的结构表征证实了从300 K到50 K的PNMA空间基团的多晶样品的正交对称性。然而,Mn o八面体畸变减少。对频率范围为500 Hz至1 MHz的介电性能的研究在8 K至300 K的温度范围内,有或没有7 Tesla的磁场,这显示了500 Hz频率区域中的高介电常数。这证实了PolyCrystalline GD $ _ {0.55} $ PR $ _ {0.45} $ MNO $ _3 $中的放松现象。交流电导率数据显示,频率的趋势增加以及激活能量从低频增加到较高的频率。依赖温度的直流磁化研究显示,由于MN-MN磁性晶格的旋转倾斜,在100 OE施加的低温下,在低温下,在低温下,多晶GD $ _ {0.55} $ pr $ _ {0.45} $ mno $ _3 $。由于MN和GD的自旋顺序之间的竞争,在5 K处的PR磁晶格之间的竞争较高。

The effect of improved dielectric properties in the presence of an applied magnetic field is discussed in Pr doped polycrystalline Gd$_{0.55}$Pr$_{0.45}$MnO$_3$ complemented by the structural properties down to 50 K and magnetic properties. Enhanced dielectric permittivity and low dielectric loss represent the strongly field-dependent dielectric behaviour of the sample. The structural characterizations using synchrotron angle dispersive X-ray diffraction confirm the orthorhombic symmetry of the polycrystalline sample with the Pnma space group from 300 K to 50 K. There is no structural transition at lower temperatures up to 50 K; however the Mn O octahedral distortion is reduced. The investigation of dielectric properties for frequencies range 500 Hz to 1 MHz was conducted in the temperature range 8 K to 300 K with and without a magnetic field of 7 Tesla, which shows the high dielectric constant in the 500 Hz frequency region. This confirms the relaxation phenomena in polycrystalline Gd$_{0.55}$Pr$_{0.45}$MnO$_3$. ac conductivity data shows the increasing trend for frequencies along with the activation energy which increases from low frequencies to higher frequencies. Temperature-dependent dc magnetization study shows the negative magnetization in polycrystalline Gd$_{0.55}$Pr$_{0.45}$MnO$_3$ at low temperature at 100 Oe applied field, due to spin canting of Mn-Mn magnetic lattice. High coercivity due to competition in between spin ordering of Mn and Gd,Pr magnetic lattice at 5 K are also observed in the field-dependent magnetization study.

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