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铱酸盐/锰酸盐异质结构中的原子级可控绝缘体-金属转变

An atomically controlled insulator-to-metal transition in iridate/manganite heterostructures.

作者信息

Men Enyang, Li Deyang, Zhang Haiyang, Chen Jingxin, Qiao Zhihan, Wei Long, Wang Zhaosheng, Xi Chuanying, Song Dongsheng, Li Yuhan, Jeen Hyoungjeen, Chen Kai, Zhu Hong, Hao Lin

机构信息

Anhui Key Laboratory of Low-Energy Quantum Materials and Devices, High Magnetic Field Laboratory, HFIPS, Chinese Academy of Sciences, Hefei, Anhui, China.

Science Island Branch of Graduate School, University of Science and Technology of China, Hefei, China.

出版信息

Nat Commun. 2024 Sep 28;15(1):8427. doi: 10.1038/s41467-024-52616-8.

Abstract

All-insulator heterostructures with an emerging metallicity are at the forefront of material science, which typically contain at least one band insulator while it is not necessary to be. Here we show emergent phenomena in a series of all-correlated-insulator heterostructures that composed of insulating CaIrO and insulating LaSrMnO. We observed an intriguing insulator-to-metal transition, that depends delicately on the thickness of the iridate component. The simultaneous enhancements of magnetization, electric conductivity, and magnetoresistance effect indicate a percolation-type nature of the insulator-to-metal transition, with the percolation threshold can be reached at an exceptionally low volume fraction of the iridate. Such a drastic transition is induced by an interfacial charge transfer, which interestingly alters the electronic and crystalline structures of the bulk region rather than the limited ultrathin interface. We further showcased the central role of effective correlation in modulating the insulator-to-metal transition, by demonstrating that the critical thickness of iridate for triggering the metallic state can be systematically reduced down to a single unit-cell layer.

摘要

具有新兴金属性的全绝缘体异质结构处于材料科学的前沿,这类结构通常包含至少一种能带绝缘体,但并非必须如此。在此,我们展示了一系列由绝缘的CaIrO和绝缘的LaSrMnO组成的全相关绝缘体异质结构中的涌现现象。我们观察到一种有趣的绝缘体到金属的转变,它微妙地取决于铱酸盐组分的厚度。磁化强度、电导率和磁电阻效应的同时增强表明绝缘体到金属转变具有渗流型性质,在铱酸盐极低的体积分数下就能达到渗流阈值。这种剧烈的转变是由界面电荷转移引起的,有趣的是,它改变的是体区的电子和晶体结构,而非有限的超薄界面。我们进一步展示了有效关联在调节绝缘体到金属转变中的核心作用,通过证明引发金属态的铱酸盐的临界厚度可以系统地减小到单个晶胞层。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0478/11439077/b2b34ac257b0/41467_2024_52616_Fig1_HTML.jpg

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