Tuning of magnetic and transport behavior in La0.67Sr0.33MnO3/Pr2Ir2O7 bilayer: Possible role of interfacial Dzyaloshinskii–Moriya interactions

IF 5.7 2区 材料科学 Q2 CHEMISTRY, PHYSICAL Surfaces and Interfaces Pub Date : 2024-11-22 DOI:10.1016/j.surfin.2024.105447
A.G.A. Rahman , R.K. Patel , S. Sachin , Harish Kumar , Chandrani Nath , S. Chakravarty , S. Manna , A.K. Pramanik
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Abstract

Here, we investigate the magnetic and electrical transport properties in epitaxial 3d-5d based bilayer La0.67Sr0.33MnO3 (40 nm)/Pr2Ir2O7 (40 nm), grown on YSZ (001) substrate. While bulk La0.67Sr0.33MnO3 is ferromagnetic-metal and Pr2Ir2O7 is paramagnetic-metal but the later, due to heavy Ir, has significant spin–orbit coupling effect, which, in turn, will have large impact on electro-magnetic properties in adjacent ferromagnetic-layer through interfacial Dzyaloshinskii–Moriya interaction. Our temperature dependent magnetic measurements in bilayer reveal a prominent interlayer coupling below 42 K, which is further confirmed by exchange bias effect. The resistivity data indicates an insulating behavior, where the charge conduction mechanism follows Mott’s 2-dimensional variable-range-hopping model at high temperature. The bilayer shows negative magnetoresistance (MR) across the temperature but, in low temperature and low field, the MR exhibits distinct cusp which is characterized due to weak localization behavior. In contrast, the single-layer La0.67Sr0.33MnO3 (30 nm) deposited on SrTiO3 (100) substrate shows usual metallic behavior with a signature of Kondo-like resistivity minimum at low temperature. The single-layer shows power-law dependent negative MR, but no cusp unlike bilayer. This confirms an interface-driven exotic magnetic and transport properties in present bilayer which are quite intriguing and showcase its potential applications in spintronics and magnetic device technologies.

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调谐 La0.67Sr0.33MnO3/Pr2Ir2O7 双层中的磁性和传输行为:界面 Dzyaloshinskii-Moriya 相互作用的可能作用
在这里,我们研究了生长在 YSZ (001) 衬底上的基于 3d-5d 的双层外延 La0.67Sr0.33MnO3 (40 nm)/Pr2Ir2O7 (40 nm) 的磁性和电气传输特性。虽然块体 La0.67Sr0.33MnO3 是铁磁性金属,而 Pr2Ir2O7 是顺磁性金属,但后者由于含有重元素 Ir,具有显著的自旋轨道耦合效应,这反过来又会通过界面 Dzyaloshinskii-Moriya 相互作用对相邻铁磁层的电磁特性产生巨大影响。我们在双电层中进行的温度相关磁性测量显示,在 42 K 以下存在显著的层间耦合,交换偏置效应进一步证实了这一点。电阻率数据表明双电层具有绝缘性,在高温下电荷传导机制遵循莫特的二维变程跳变模型。双电层在整个温度范围内显示出负磁阻(MR),但在低温和低磁场条件下,磁阻显示出明显的尖顶,这是由于弱局域行为造成的。相比之下,沉积在 SrTiO3(100)基底上的单层 La0.67Sr0.33MnO3(30 nm)显示出通常的金属特性,在低温下具有类似近藤电阻率最小值的特征。单层显示出幂律相关的负磁阻率,但与双层不同,没有尖顶。这证实了目前的双层材料具有界面驱动的奇异磁性和传输特性,这些特性非常引人入胜,并展示了其在自旋电子学和磁性器件技术中的潜在应用。
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来源期刊
Surfaces and Interfaces
Surfaces and Interfaces Chemistry-General Chemistry
CiteScore
8.50
自引率
6.50%
发文量
753
审稿时长
35 days
期刊介绍: The aim of the journal is to provide a respectful outlet for ''sound science'' papers in all research areas on surfaces and interfaces. We define sound science papers as papers that describe new and well-executed research, but that do not necessarily provide brand new insights or are merely a description of research results. Surfaces and Interfaces publishes research papers in all fields of surface science which may not always find the right home on first submission to our Elsevier sister journals (Applied Surface, Surface and Coatings Technology, Thin Solid Films)
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