Kim Dohyun, Shin Eui-Cheol, Lee Yongjoon, Lee Young Hee, Zhao Mali, Kim Yong-Hyun, Yang Heejun
Department of Energy Science, Sungkyunkwan University, Suwon, Korea.
Department of Physics, Korea Advanced Institute of Science and Technology (KAIST), Daejeon, Korea.
Nat Commun. 2022 Aug 3;13(1):4516. doi: 10.1038/s41467-022-32226-y.
The microscopic origins of thermopower have been investigated to design efficient thermoelectric devices, but strongly correlated quantum states such as charge density waves and Mott insulating phase remain to be explored for atomic-scale thermopower engineering. Here, we report on thermopower and phonon puddles in the charge density wave states in 1T-TaS, probed by scanning thermoelectric microscopy. The Star-of-David clusters of atoms in 1T-TaS exhibit counterintuitive variations in thermopower with broken three-fold symmetry at the atomic scale, originating from the localized nature of valence electrons and their interlayer coupling in the Mott insulating charge density waves phase of 1T-TaS. Additionally, phonon puddles are observed with a spatial range shorter than the conventional mean free path of phonons, revealing the phonon propagation and scattering in the subsurface structures of 1T-TaS.
为了设计高效的热电器件,人们对热功率的微观起源进行了研究,但对于原子尺度的热功率工程而言,诸如电荷密度波和莫特绝缘相等强关联量子态仍有待探索。在此,我们报告了通过扫描热电子显微镜探测的1T-TaS中电荷密度波态的热功率和声子池。1T-TaS中呈大卫之星状的原子簇在原子尺度上表现出热功率的反直觉变化,其三重对称性被打破,这源于1T-TaS的莫特绝缘电荷密度波相中价电子的局域性质及其层间耦合。此外,还观察到了空间范围短于传统声子平均自由程的声子池,揭示了声子在1T-TaS亚表面结构中的传播和散射。