Zhang Tiantian, Huang Zhiheng, Pan Zitian, Du Luojun, Zhang Guangyu, Murakami Shuichi
CAS Key Laboratory of Theoretical Physics, Institute of Theoretical Physics, Chinese Academy of Sciences, Beijing 100190, China.
Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing 100190, China.
Nano Lett. 2023 Aug 23;23(16):7561-7567. doi: 10.1021/acs.nanolett.3c02132. Epub 2023 Aug 2.
Chirality is an indispensable concept that pervades fundamental science and nature, manifesting itself in diverse forms, .., quasiparticles, and crystal structures. Of particular interest are Weyl phonons carrying specific Chern numbers and chiral phonons doing circular motions. Up to now, they have been studied independently and the interpretations of chirality seem to be different in these two concepts, impeding our understanding. Here, we demonstrate that they are entangled in chiral crystals. Employing a typical chiral crystal of elementary tellurium (Te) as a case study, we expound on the intrinsic relationship between Chern number of Weyl phonons and pseudoangular momentum (PAM, ) of chiral phonons. We propose Raman scattering as a new technique to demonstrate the existence of Weyl phonons in Te, by detecting the chirality-induced energy splitting between the two constituent chiral phonon branches for Weyl phonons. Moreover, we also observe the obstructed phonon surface states for the first time.
手性是一个不可或缺的概念,它贯穿于基础科学和自然之中,以多种形式表现出来,……、准粒子和晶体结构。特别令人感兴趣的是携带特定陈数的外尔声子和做圆周运动的手性声子。到目前为止,它们一直是被独立研究的,而且在这两个概念中手性的解释似乎有所不同,这妨碍了我们的理解。在这里,我们证明它们在手性晶体中是相互纠缠的。以典型的单质碲(Te)手性晶体为例进行研究,我们阐述了外尔声子的陈数与手性声子的赝角动量(PAM)之间的内在关系。我们提出拉曼散射作为一种新技术,通过检测外尔声子的两个组成手性声子分支之间由手性引起的能量分裂来证明碲中外尔声子的存在。此外,我们还首次观察到受阻的声子表面态。