Mahatha Sanjoy K, Phillips Jan, Corral-Sertal Javier, Subires David, Korshunov Artem, Kar Arunava, Buck Jens, Diekmann Florian, Garbarino Gaston, Ivanov Yurii P, Chuvilin Andrey, Mondal Debashis, Vobornik Ivana, Bosak Alexei, Rossnagel Kai, Pardo Victor, Fumega Adolfo O, Blanco-Canosa Santiago
UGC-DAE Consortium for Scientific Research, University Campus, Khandwa Road, Indore 452001, India.
Ruprecht Haensel Laboratory, Deutsches Elektronen-Synchrotron DESY, 22607 Hamburg, Germany.
ACS Nano. 2024 Aug 13;18(32):21052-21060. doi: 10.1021/acsnano.4c02005. Epub 2024 Aug 1.
The emergence of correlated phenomena arising from the combination of 1T and 1H van der Waals layers is the focus of intense research. Here, we synthesize a self-stacked 6R phase in NbSeTe, showing perfect alternating 1T and 1H layers that grow coherently along the c-direction, as revealed by scanning transmission electron microscopy. Angle-resolved photoemission spectroscopy shows a mixed contribution of the trigonal and octahedral Nb bands to the Fermi level. Diffuse scattering reveals temperature-independent short-range charge fluctuations with propagation vector q = (0.25 0), derived from the condensation of a longitudinal mode in the 1T layer, while the long-range charge density wave is quenched by ligand disorder. Magnetization measurements suggest the presence of an inhomogeneous, short-range magnetic order, further supported by the absence of a clear phase transition in the specific heat. These experimental analyses in combination with calculations indicate that the ground state of 6R-NbSeTe is described by a statistical distribution of short-range charge-modulated and spin-correlated regions driven by ligand disorder. Our results demonstrate how natural 1T-1H self-stacked bulk heterostructures can be used to engineer emergent phases of matter.
由1T和1H范德华层组合产生的相关现象的出现是深入研究的重点。在此,我们在NbSeTe中合成了一种自堆叠的6R相,扫描透射电子显微镜显示其具有完美交替的1T和1H层,这些层沿c方向相干生长。角分辨光电子能谱表明三角和八面体Nb能带对费米能级有混合贡献。漫散射揭示了与温度无关的短程电荷涨落,其传播矢量q = (0.25 0),源自1T层中纵向模式的凝聚,而长程电荷密度波因配体无序而被淬灭。磁化测量表明存在不均匀的短程磁序,比热中没有明显的相变进一步支持了这一点。这些实验分析与计算相结合表明,6R-NbSeTe的基态由配体无序驱动的短程电荷调制和自旋相关区域的统计分布描述。我们的结果展示了天然的1T-1H自堆叠体相异质结构如何用于设计物质的新兴相。