论文标题

紧张的NIO膜中的晶格动力学和自旋频率相互作用

Lattice dynamics and spin-phonon interaction in strained NiO films

论文作者

Kashir, Alireza, Goian, Veronica, Yoon, Daseob, Cho, Byeong-Gwan, Jeong, Yoon Hee, Lee, Gil-Ho, Kamba, Stanislav

论文摘要

使用脉冲激光沉积技术在SRTIO3(STO)和MGO底物上生长具有各种菌株的Nio薄膜。使用X射线衍射仪,原子力显微镜和红外反射光谱对膜进行表征。在Sto(001)底物上生长的膜显示出一个平面内应变,随着膜厚度的降低而增加,导致NIO声子频率的增加。另一方面,在MGO(001)底物上生长的NIO膜中检测到拉伸应变,该膜诱导了声子频率的软化。总体而言,平面菌株从-0.36%到 +0.48%的变化使声子频率从409.6 cm-1降低到377.5 cm-1的降低,这是由于原子间距离发生了〜1%而发生的。在三个不同的样品中,磁性交换驱动的声子分裂三角洲(W)具有松弛(即零)菌株,0.36%压缩和0.48%的拉伸应变,这是根据温度的函数测量的。如先前发表的散装晶体上的作品中,增量(W)在Nio放松膜中的冷却增加。在0.48%拉伸紧张的膜中,冷却的分裂也会增加,但是Delta(W)系统地比放松膜小的3-4 cm-1。由于声子分裂与非优势磁交换相互作用J1成正比,因此用晶格扩展的J1减少了拉伸膜中的声子分裂的还原。冷却时增量(W)的增加也可以通过温度降低的J1上升来解释。

NiO thin films with various strains were grown on SrTiO3 (STO) and MgO substrates using a pulsed laser deposition technique. The films were characterized using an x-ray diffractometer, atomic force microscopy, and infrared reflectance spectroscopy. The films grown on STO (001) substrate show a compressive in-plane strain which increases as the film thickness is reduced, resulting in an increase of the NiO phonon frequency. On the other hand, a tensile strain was detected in the NiO film grown on MgO (001) substrate which induces a softening of the phonon frequency. Overall, the variation of in-plane strain from -0.36% to +0.48% yields the decrease of the phonon frequency from 409.6 cm-1 to 377.5 cm-1 which occurs due to the ~1% change of the inter-atomic distances. The magnetic exchange -driven phonon splitting Delta(W) in three different sample, with relaxed (i.e. zero) strain, 0.36% compressive and 0.48% tensile strain was measured as a function of temperature. The Delta(W) increases on cooling in NiO relaxed film as in the previously published work on a bulk crystal. The splitting increases on cooling also in 0.48% tensile strained film, but Delta(W) is systematically 3-4 cm-1 smaller than in relaxed film. Since the phonon splitting is proportional to the non-dominant magnetic exchange interaction J1, the reduction of phonon splitting in tensile-strained film was explained by a diminishing J1 with lattice expansion. Increase of Delta(W) on cooling can be also explained by rising of J1 with reduced temperature.

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