Correlation of Structural and Magnetic Properties of RFeO3 (r=dy, Lu)

arXiv (Cornell University)(2024)

引用 0|浏览27
暂无评分
摘要
In orthoferrites the rare-earth (R) R ) ion has a big impact on structural and magnetic properties; in particular, the ionic size influences the octahedral tilt and the R 3 +-Fe 3 + interaction modifies properties like the spin reorientation. Growth-induced strain in thin films is another means to modify materials properties since the sign of strain affects the bond length and therefore directly the orbital interaction. Our study focuses on epitaxially grown (010)-oriented DyFeO3 3 and LuFeO3 3 thin films, thereby investigating the impact of compressive lattice strain on the magnetically active Dy3+ 3 + and magnetically inactive Lu3+ 3 + compared to uniaxially strained single-crystal DyFeO3. 3 . The DyFeO3 3 films exhibits a shift of more than 20 K in spin-reorientation temperatures, maintain the antiferromagnetic P 4 phase of the Fe lattice below the spin reorientation, and show double-step hysteresis loops for both in-plane directions between 5 and 390 K. This is the signature of an Fe-spin-induced ferromagnetic Dy3+ 3 + lattice above the N & eacute;el temperature of the Dy. The observed shift in the film spin reorientation temperatures vs lattice strain is in good agreement with isostatic single-crystal neutron diffraction experiments with a rate of 2 K/kbar.
更多
查看译文
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要