首页> 外文期刊>Applied Physics Letters >Epitaxial LaFeO_3 and LaFe_(0.75)Zn_(0.25)O_3 thin films on SrTiO_3 (STO) (100) substrate: Structural studies and high energy magnon excitations
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Epitaxial LaFeO_3 and LaFe_(0.75)Zn_(0.25)O_3 thin films on SrTiO_3 (STO) (100) substrate: Structural studies and high energy magnon excitations

机译:SrTiO_3(STO)(100)衬底上的外延LaFeO_3和LaFe_(0.75)Zn_(0.25)O_3薄膜:结构研究和高能磁振子激发

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The epitaxial films of LaFeO3 (LFO) and LaFe0.75Zn0.25O3 (LFZO) are grown on a SrTiO3 (STO) (100) substrate using pulsed laser deposition. The as-grown films have been investigated to study the structural properties and magnon excitations using temperature dependent Raman spectroscopy. X-ray diffraction and high resolution x-ray diffraction reciprocal space mapping indicate the epitaxial growth of films on the STO (100) substrate. RSM shows the broadening of the diffraction spot in the q(z) direction that may be due to the tilt present in the thin films, suggesting the orthorhombic growth of the films. Raman measurements on LFO and LFZO thin films have been performed for structure identification. The absence of first order phonon modes in Raman spectra suggests that the structure of films is symmetric and is coherent with the cubic substrate. High energy Raman bands with typical characteristics of two-magnon scattering appear below Neel temperature. Splitting of magnon branches is seen for both LFO and LFZO films and has been analyzed on the basis of the magnetic structure of LFO. The hardening of the magnon modes is observed as the temperature approaches towards the Neel temperature that may be attributed to the lattice contraction and correlated with a decrease in the tilt and a corresponding increase in the Heisenberg exchange constant (J) leading to a more ordered state at Neel temperature. Published by AIP Publishing.
机译:LaFeO3(LFO)和LaFe0.75Zn0.25O3(LFZO)的外延膜使用脉冲激光沉积在SrTiO3(STO)(100)衬底上生长。已经研究了成膜后的薄膜,以利用温度依赖性拉曼光谱研究结构特性和磁振子激发。 X射线衍射和高分辨率X射线衍射的倒数空间映射表明STO(100)衬底上薄膜的外延生长。 RSM显示了在q(z)方向上衍射点的变宽,这可能是由于薄膜中存在倾斜而引起的,这表明薄膜的正交晶体生长。已经对LFO和LFZO薄膜进行了拉曼测量,以识别结构。拉曼光谱中不存在一阶声子模态,这表明薄膜的结构是对称的,并且与立方基质相干。在Neel温度以下出现具有典型的2磁子散射特征的高能拉曼带。 LFO和LFZO薄膜均可见到马农分支的分裂,并已根据LFO的磁性结构进行了分析。当温度接近Neel温度时,可观察到马农模的硬化,这可能归因于晶格收缩,并且与倾斜度的降低和海森堡交换常数(J)的相应增加相关,从而导致状态更加有序在Neel温度下。由AIP Publishing发布。

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