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Thermal conduction in single-layer black phosphorus: highly anisotropic?

机译:单层黑磷中的热传导:高度各向异性?

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The single-layer black phosphorus is characteristic for its puckered structure, which has led to distinct anisotropy in its optical, electronic, and mechanical properties. We use the non-equilibrium Green's function approach and the first-principles method to investigate the thermal conductance for single-layer black phosphorus in the ballistic transport regime, in which the phonon-phonon scattering is neglected. We find that the anisotropy in the thermal conduction is very weak for the single-layer black phosphorus-the difference between two in-plane directions is less than 4%. Our phonon calculations disclose that the out-of-plane acoustic phonon branch has lower group velocities in the direction perpendicular to the pucker, as the black phosphorus is softer in this direction, leading to a weakening effect for the thermal conductance in the perpendicular direction. However, the longitudinal acoustic phonon branch behaves abnormally; i.e., the group velocity of this phonon branch is higher in the perpendicular direction, although the single-layer black phosphorus is softer in this direction. The abnormal behavior of the longitudinal acoustic phonon branch is closely related to the highly anisotropic Poisson's ratio in the single-layer black phosphorus. As a result of the counteraction between the out-of-plane phonon mode and the in-plane phonon modes, the thermal conductance in the perpendicular direction is weaker than the parallel direction, but the anisotropy is pretty small.
机译:单层黑磷具有其褶皱结构的特征,这导致了其光学,电子和机械性能的明显各向异性。我们采用非平衡格林函数方法和第一性原理方法研究了单层黑磷在弹道输运体系中的热传导,在这种输运中忽略了声子-声子的散射。我们发现,对于单层黑磷,热传导中的各向异性非常弱-两个面内方向之间的差异小于4%。我们的声子计算表明,平面外声子支流在垂直于褶皱的方向上具有较低的组速度,因为黑磷在该方向上较软,从而导致垂直方向上的导热系数减弱。但是,纵向声子的声子支路表现异常。即,尽管单层黑磷在该方向上较软,但该声子支链的组速度在垂直方向上较高。纵向声子声子支路的异常行为与单层黑磷中的高度各向异性泊松比密切相关。由于面外声子模式和面内声子模式之间的反作用,垂直方向的导热率比平行方向的导热率弱,但是各向异性很小。

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