Ochoa Héctor, Fernandes Rafael M
Donostia International Physics Center, 20018 Donostia-San, Sebastian, Spain.
IKERBASQUE, Basque Foundation for Science, Maria Diaz de Haro 3, 48013 Bilbao, Spain.
Phys Rev Lett. 2022 Feb 11;128(6):065901. doi: 10.1103/PhysRevLett.128.065901.
The elastic collective modes of a moiré superlattice arise not from vibrations of a rigid crystal but from the relative displacement between the constituent layers. Despite their similarity to acoustic phonons, these modes, called phasons, are not protected by any conservation law. Here, we show that disorder in the relative orientation between the layers and thermal fluctuations associated with their sliding motion degrade the propagation of sound in the moiré superlattice. Specifically, the phason modes become overdamped at low energies and acquire a finite gap, which displays a universal dependence on the twist-angle variance. Thus, twist-angle inhomogeneity is manifested not only in the noninteracting electronic structure of moiré systems, but also in their phononlike modes. More broadly, our results have important implications for the electronic properties of twisted moiré systems that are sensitive to the electron-phonon coupling.
莫尔超晶格的弹性集体模式并非源于刚性晶体的振动,而是源于组成层之间的相对位移。尽管这些模式与声学声子相似,但被称为相位子的这些模式不受任何守恒定律的保护。在这里,我们表明层间相对取向的无序以及与其滑动运动相关的热涨落会降低莫尔超晶格中声音的传播。具体而言,相位子模式在低能量下会过度阻尼并获得一个有限的能隙,该能隙对扭转角方差呈现出普遍依赖性。因此,扭转角不均匀性不仅体现在莫尔系统的非相互作用电子结构中,还体现在它们类似声子的模式中。更广泛地说,我们的结果对于对电子 - 声子耦合敏感的扭曲莫尔系统的电子性质具有重要意义。