Liu Mengke, Leveillee Joshua, Lu Shuangzan, Yu Jia, Kim Hyunsue, Tian Cheng, Shi Youguo, Lai Keji, Zhang Chendong, Giustino Feliciano, Shih Chih-Kang
Department of Physics, The University of Texas at Austin, Austin, TX 78712, USA.
Oden Institute for Computational Engineering and Sciences, The University of Texas at Austin, Austin, TX 78712, USA.
Sci Adv. 2021 Nov 19;7(47):eabi6339. doi: 10.1126/sciadv.abi6339.
Monolayer group V transition metal dichalcogenides in their 1T phase have recently emerged as a platform to investigate rich phases of matter, such as spin liquid and ferromagnetism, resulting from strong electron correlations. Newly emerging 1T-NbSe has inspired theoretical investigations predicting collective phenomena such as charge transfer gap and ferromagnetism in two dimensions; however, the experimental evidence is still lacking. Here, by controlling the molecular beam epitaxy growth parameters, we demonstrate the successful growth of high-quality single-phase 1T-NbSe. By combining scanning tunneling microscopy/spectroscopy and ab initio calculations, we show that this system is a charge transfer insulator with the upper Hubbard band located above the valence band maximum. To demonstrate the electron correlation resulted magnetic property, we create a vertical 1T/2H NbSe heterostructure, and we find unambiguous evidence of exchange interactions between the localized magnetic moments in 1T phase and the metallic/superconducting phase exemplified by Kondo resonances and Yu-Shiba-Rusinov–like bound states.
处于1T相的单层V族过渡金属二硫属化物最近成为一个研究由强电子关联导致的丰富物质相(如自旋液体和铁磁性)的平台。新出现的1T-NbSe激发了理论研究,预测了二维中的电荷转移能隙和铁磁性等集体现象;然而,实验证据仍然缺乏。在这里,通过控制分子束外延生长参数,我们展示了高质量单相1T-NbSe的成功生长。通过结合扫描隧道显微镜/光谱和从头算计算,我们表明该系统是一种电荷转移绝缘体,其上哈伯德带位于价带最大值之上。为了证明电子关联导致的磁性,我们创建了一个垂直的1T/2H NbSe异质结构,并且我们发现了1T相中的局域磁矩与以近藤共振和类汤川-志田-鲁西诺夫束缚态为例的金属/超导相之间交换相互作用的确切证据。