Ordonez-Miranda Jose, Wu Yunhui, Nomura Masahiro, Volz Sebastian
LIMMS, CNRS-IIS UMI 2820, The University of Tokyo, Tokyo 153-8505, Japan.
Institute of Industrial Science, The University of Tokyo, Tokyo 153-8505, Japan.
iScience. 2022 Aug 5;25(9):104857. doi: 10.1016/j.isci.2022.104857. eCollection 2022 Sep 16.
The heat transport of surface phonon-polaritons propagating along a polar uniaxial anisotropic nanofilm is studied for different orientations of its optical axis, film thicknesses, and temperatures. For an hBN nanofilm, it is shown that i) the propagation of polaritons can be described in terms of even and odd modes that generalize the transverse magnetic and transverse electrical ones that typically appear in isotropic films. ii) The frequency spectrum of polaritons can efficiently be tuned with the angle between the film optical axis and their propagation direction. iii) The polariton thermal conductivity takes higher values for a thinner or hotter nanofilm. iv) The even and odd modes have a remarkable contribution to the total polariton thermal conductivity, which takes a value higher than 5.6 WmK for a 25-nm-thick nanofilm at 500 K. The obtained results thus uncover some key features of the propagation and heat transport of polaritons in uniaxial nanofilms.
针对沿极性单轴各向异性纳米薄膜传播的表面声子极化激元,研究了其光轴的不同取向、薄膜厚度和温度对热输运的影响。对于六方氮化硼(hBN)纳米薄膜,研究表明:i)极化激元的传播可以用偶数和奇数模式来描述,这两种模式推广了通常出现在各向同性薄膜中的横向磁模式和横向电模式。ii)极化激元的频谱可以通过薄膜光轴与其传播方向之间的夹角进行有效调节。iii)对于更薄或更热的纳米薄膜,极化激元热导率具有更高的值。iv)偶数和奇数模式对总极化激元热导率有显著贡献,对于500K下25nm厚的纳米薄膜,其总极化激元热导率值高于5.6W/(m·K)。因此,所获得的结果揭示了单轴纳米薄膜中极化激元传播和热输运的一些关键特征。