Wuhan National High Magnetic Field Center and School of Physics, Huazhong University of Science and Technology, Wuhan, China.
Department of Physics, Gakushuin University, Tokyo, Japan.
Nat Commun. 2023 Feb 23;14(1):1027. doi: 10.1038/s41467-023-36750-3.
The origin of phonon thermal Hall Effect (THE) observed in a variety of insulators is yet to be identified. Here, we report on the observation of a thermal Hall conductivity in a non-magnetic elemental insulator, with an amplitude exceeding what has been previously observed. In black phosphorus (BP), the longitudinal (κ), and the transverse, κ, thermal conductivities peak at the same temperature and at this peak temperature, the κ/κ/B is ≈ 10-10 T. Both these features are shared by other insulators displaying THE, despite an absolute amplitude spreading over three orders of magnitude. The absence of correlation between the thermal Hall angle and the phonon mean-free-path imposes a severe constraint for theoretical scenarios of THE. We show that in BP a longitudinal and a transverse acoustic phonon mode anti-cross, facilitating wave-like transport across modes. The anisotropic charge distribution surrounding atomic bonds can pave the way for coupling between phonons and the magnetic field.
在各种绝缘体中观察到的声子热霍尔效应(THE)的起源尚未确定。在这里,我们报告了在非磁性元素绝缘体中观察到的热霍尔电导率,其幅度超过了先前观察到的幅度。在黑磷(BP)中,纵向(κ)和横向,κ,热导率在相同温度下达到峰值,在这个峰值温度下,κ/κ/B 约为 10-10 T。尽管具有三个数量级的绝对幅度,但表现出 THE 的其他绝缘体都具有这些特征。热霍尔角与声子平均自由程之间不存在相关性,这对 THE 的理论情景施加了严格的限制。我们表明,在 BP 中,纵向和横向声学声子模式反交叉,促进了跨模式的波状传输。围绕原子键的各向异性电荷分布可以为声子与磁场之间的耦合铺平道路。