论文标题

四层Aurivillius bi $ _5 $ feti $ _3 $ o $ $ _ {15} $在高压:核向前散射研究

Magnetism in four-layered Aurivillius Bi$_5$FeTi$_3$O$_{15}$ at high pressures : A nuclear forward scattering study

论文作者

Prajapat, Deepak, Surampalli, Akash, Panchwanee, Anjali, Meneghini, Carlo, Sergeev, Ilya, Leubold, Olaf, Velaga, Srihari, Merlini, Marco, Glazyrin, Konstantin, Steinbrügge, René, Jafari, Atefeh, Poswal, Himashu Kumar, Sathe, V. G., Reddy, V. Raghavendra

论文摘要

我们报告了高静水压力条件下的四层Aurivillius复合BI $ _3 $ _3 $ o $ $ $ _ {15} $(BFTO)的结构和磁性。高压XRD数据并未明确显示出静液压压力的结构相变,但是观察到的晶格参数的变化表明在不同压力值下的结构修饰。 In the initial pressure region values, the lattice parameters $\textit{a}$- and $\textit{b}$- are nearly equal implying a quasi-tetragonal structure, however as the pressure increases $\textit{a}$- and $\textit{b}$- diverges apart and exhibits complete orthorhombic phase at pressure values of about $\geq$8 GPa.高压拉曼测量值的主要成分分析指出,局部结构的明显变化约为5.5 GPa,表明在施加压力下,局部结构的演变似乎不遵循晶体学变化(远距离顺序)。核向前散射(NFS)的测量揭示了在5K处的BFTO中磁性有序的发展,并具有高压。随着5K压力的增加,观察到磁顺序的逐渐增加。此外,在恒定压力下进行的NFS测量值(6.4GPA),不同的温度表明发达的磁性在较高的温度(20K)下消失。它试图用压力观察到的结构参数变化来解释这些观察结果。

We report the structural and magnetic properties of four-layer Aurivillius compound Bi$_5$FeTi$_3$O$_{15}$ (BFTO) at high hydrostatic pressure conditions. The high-pressure XRD data does not explicitly show structural phase transitions with hydrostatic pressure, however the observed changes in lattice parameters indicate structural modifications at different pressure values. In the initial pressure region values, the lattice parameters $\textit{a}$- and $\textit{b}$- are nearly equal implying a quasi-tetragonal structure, however as the pressure increases $\textit{a}$- and $\textit{b}$- diverges apart and exhibits complete orthorhombic phase at pressure values of about $\geq$8 GPa. Principal component analysis of high pressure Raman measurements point out an evident change in the local structure at about 5.5 GPa indicating that the evolution of the local structure under applied pressure seems to not follow crystallographic changes (long range order). Nuclear forward scattering (NFS) measurement reveal the development of magnetic ordering in BFTO at 5K with high pressures. A progressive increase in magnetic order is observed with increase in pressure at 5K. Further, NFS measurements carried out at constant pressure (6.4GPa) and different temperatures indicate that the developed magnetism disappears at higher temperatures (20K). It is attempted to explain these observations in terms of the observed structural parameter variation with pressure.

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