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Advances in Rare‐Earth Tritelluride Quantum Materials: Structure Properties and Synthesis

机译:稀土三胞素量子材料的进展:结构性质和合成

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摘要

A distinct class of 2D layered quantum materials with the chemical formula of RTe3 (R = lanthanide) has gained significant attention owing to the occurrence of collective quantum states, superconductivity, charge density waves (CDW), spin density waves, and other advanced quantum properties. To study the Fermi surface nesting driven CDW formation, the layered RTe3 family stages an excellent low dimensional genre system. In addition to the primary energy gap feature observed at higher energy, optical spectroscopy study on some RTe3 evidence a second CDW energy gap structure indicating the occurrence of multiple CDW ordering even with light and intermediate RTe3 compounds. Here, a comprehensive review of the fundamentals of RTe3 layered tritelluride materials is presented with a special focus on the recent advances made in electronic structure, CDW transition, superconductivity, magnetic properties of these unique quantum materials. A detailed description of successful synthesis routes including the flux method, self‐flux method, and CVT along with potential applications is summarized.
机译:由于集体量子状态,超导,电荷密度波(CDW),旋转密度波和其他先进量子特性,因此具有RTE3(R =镧系元素)的化学式的不同类别的2D层状量子材料具有显着的关注。 。为研究费米表面嵌套驱动的CDW形成,分层RTE3家族阶段优异的低维类型系统。除了在较高能量下观察到的主要能量隙特征之外,对一些RTE3证据进行光学光谱研究,其第二CDW能量隙结构表示即使光和中间RTE3化合物也表明多个CDW排序的发生。在此,对RTE3层状三晶体材料的基本原理进行了全面的审查,特别关注了在电子结构,CDW过渡,超导,超导,这些独特量子材料的磁性性质的最近进步。总结了包括助焊法,自助式方法和CVT以及潜在应用的成功合成路线的详细描述。

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