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脉冲激光沉积生长的SrFeO薄膜和SrFeO/LaCaMnO多层膜的结构、磁性和电子性质

Structural, magnetic and electronic properties of pulsed-laser-deposition grown SrFeO thin films and SrFeO /LaCaMnO multilayers.

作者信息

Perret E, Sen K, Khmaladze J, Mallett B P P, Yazdi-Rizi M, Marsik P, Das S, Marozau I, Uribe-Laverde M A, de Andrés Prada R, Strempfer J, Döbeli M, Biškup N, Varela M, Mathis Y-L, Bernhard C

机构信息

University of Fribourg, Department of Physics and Fribourg Center for Nanomaterials, Chemin du Musée 3, CH-1700 Fribourg, Switzerland.

出版信息

J Phys Condens Matter. 2017 Dec 13;29(49):495601. doi: 10.1088/1361-648X/aa93a6. Epub 2017 Nov 14.

Abstract

We studied the structural, magnetic and electronic properties of [Formula: see text] (SFO) thin films and [Formula: see text]/[Formula: see text] [Formula: see text]MnO (LCMO) superlattices that have been grown with pulsed laser deposition (PLD) on [Formula: see text] [Formula: see text] [Formula: see text] [Formula: see text] [Formula: see text] (LSAT) substrates. X-ray reflectometry and scanning transmission electron microscopy (STEM) confirm the high structural quality of the films and flat and atomically sharp interfaces of the superlattices. The STEM data also reveal a difference in the interfacial layer stacking with a SrO layer at the LCMO/SFO and a LaO layer at the SFO/LCMO interfaces along the PLD growth direction. The x-ray diffraction (XRD) data suggest that the as grown SFO films and SFO/LCMO superlattices have an oxygen-deficient [Formula: see text] structure with I4/ mmm space group symmetry ([Formula: see text]). Subsequent ozone annealed SFO films are consistent with an almost oxygen stoichiometric structure ([Formula: see text]). The electronic and magnetic properties of these SFO films are similar to the ones of corresponding single crystals. In particular, the as grown [Formula: see text] films are insulating whereas the ozone annealed films are metallic. The magneto-resistance effects of the as grown SFO films have a similar magnitude as in the single crystals, but extend over a much wider temperature range. Last but not least, for the SFO/LCMO superlattices we observe a rather large exchange bias effect that varies as a function of the cooling field.

摘要

我们研究了通过脉冲激光沉积(PLD)在钽酸镧锶铝钛(LSAT)衬底上生长的钐铁氧体(SFO)薄膜以及镧钙锰氧(LCMO)/钐铁氧体(SFO)超晶格的结构、磁性和电子性质。X射线反射测量和扫描透射电子显微镜(STEM)证实了薄膜的高结构质量以及超晶格的平整和原子级清晰的界面。STEM数据还揭示了在沿PLD生长方向的LCMO/SFO界面处有一个SrO层和在SFO/LCMO界面处有一个LaO层的界面层堆叠差异。X射线衍射(XRD)数据表明,生长态的SFO薄膜和SFO/LCMO超晶格具有氧缺陷的四方结构,空间群对称性为I4/mmm((t' ))。随后经臭氧退火的SFO薄膜与几乎化学计量比的氧结构((t))一致。这些SFO薄膜的电子和磁性性质与相应单晶的性质相似。特别是,生长态的(t')薄膜是绝缘的,而臭氧退火后的薄膜是金属性的。生长态SFO薄膜的磁电阻效应与单晶中的磁电阻效应大小相似,但延伸到更宽的温度范围。最后但同样重要的是,对于SFO/LCMO超晶格,我们观察到一个相当大的交换偏置效应,它随冷却场而变化。

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