论文标题

3 $ d $ -5 $ d $ sr $ _2 $ feiro $ _6 $薄膜的结构,磁性和介电属性

Structural, magnetic and dielectric properties in 3$d$-5$d$ based Sr$_2$FeIrO$_6$ thin films

论文作者

Kharkwal, K. C., Patel, Roshan Kumar, Asokan, K., Pramanik, A. K.

论文摘要

已经在3 $ d $ -5 $ d $的基于双钙蛋饼Sr $ _2 $ _2 $ _6 $ _6 $薄膜中研究了结构,磁性和介电特性。为了了解菌株的效果,外延膜的厚度以及不同的基板(即Srtio $ _3 $(100)和Laalo $ _3 $(100))生长。发现厚度最高的膜更加轻松。原子力显微镜图像表明,所有薄膜的质量都很好,其中晶粒尺寸随膜厚度的增加而增加。 X射线吸收光谱测量结果表明当前电影中的IR $^{5+} $充电状态,同时提供了Fe/ir- $ D $和O- $ P $ Orbitals之间杂交的详细图片。尽管过渡温度转移到较高的温度,但大量的抗铁磁过渡保留在薄膜中。电介质常数($ε_r$)和损失($ \tanδ$)都显示出散装sr $ _2 $ feiro $ _6 $的磁订单温度周围的变化,表明介电和磁性行为之间存在紧密的关系。在当前膜中,麦克斯韦 - 沃格纳型弛豫可以遵循整个频率范围,直至低温。在更改基板时,即laalo $ _3 $(100),$ε_r(t)$和($ \ \tanδ(t)$)显示几乎相似的行为,但$ε_r$显示出更高的值,这是由于来自高晶格参数的高度不匹配而增加的应变。

The structural, magnetic and dielectric properties have been investigated in 3$d$-5$d$ based double perovskite Sr$_2$FeIrO$_6$ thin films deposited by pulse laser deposition technique. To understand the effect of strain, epitaxial films are grown with varying thickness as well as on different substrates i.e., SrTiO$_3$ (100) and LaAlO$_3$ (100). The films with highest thickness are found to be more relaxed. Atomic force microscope images indicate all films are of good quality where grain sizes increase with increase in film thickness. X-ray absorption spectroscopy measurements indicate a Ir$^{5+}$ charge state in present films while providing a detailed picture of hybridization between Fe/Ir-$d$ and O-$p$ orbitals. The bulk antiferromagnetic transition is retained in films though the transition temperature shifts to higher temperature. Both dielectric constant ($ε_r$) and loss ($\tanδ$) show change around the magnetic ordering temperatures of bulk Sr$_2$FeIrO$_6$ indicating a close relation between dielectric and magnetic behaviors. A Maxwell-Wagner type relaxation is found to follow over whole frequency range down to low temperature in present film. On changing the substrate i.e., LaAlO$_3$ (100), the $ε_r(T)$ and ($\tanδ(T)$) show almost similar behavior but $ε_r$ shows a higher value which is due to an increased strain coming from high mismatch of lattice parameters.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源