论文标题

模型拓扑结节半法的各向异性光电传导率

Anisotropic optical conductivities of Model Topological nodal-line Semimetals

论文作者

Kandel, Sita, Gumbs, Godfrey, Berman, Oleg L.

论文摘要

通过使用简单的模型,我们研究了节点线半含量(NLSM)的光电电导率,该半径($ k_x,k_y $)在小立方区域($ k_x,k_y $)中的传导和价带的交叉可以通过参数$α$进行调整。 NLSM的Hamiltonian基于$ {\ bf k} \ cdot {\ bf p} $模型的低寓言能量频段。当$α= 0 $时,这些频段沿连续的闭环相互接触,但是可以调整对应于$α$的有限值的频带隙的开口,并且可以调整载波浓度的变化。这提供了可调的半导体间隙,围绕$ o $ $点,价和传导带可以在$ {\ bf k} $ space的小立方区域内的两个点相遇。这种NLSM的光导率是使用Kubo公式计算的,重点是由适当的Green功能推论出的光谱重量重新分布,这是由于修改$α$而引起的间隙和化学势的变化所带来的。我们为这些NLSM模型系统的光导率的纵向分量得出了封闭形式的半分析表达式,并比较了所选$α$和化学潜力的结果。当系统处于热平衡状态时,我们还为各种选择的$α$和化学势时提供了热能的结果。

With the use of simple models, we investigated the optical conductivity of a nodal-line semimetal (NLSM) whose crossing of the conduction and valence bands near the origin ($O$ point) in the ($k_x,k_y$) plane of a small cubic region can be adjusted by a parameter $α$. The Hamiltonian of the NLSM is based on the ${\bf k}\cdot {\bf p}$ model for the low-lying energy bands. When $α=0$, these bands touch each other along a continuous closed loop but the opening of a band gap corresponding to finite values of $α$ and the varying of the carrier concentration can be adjusted. This provides a tunable semiconductor gap, around the $O$ point and the valence and conduction bands can meet at a pair of points within the small cubic region in ${\bf k }$ space. The optical conductivity of such a NLSM is calculated using the Kubo formula with emphasis on the optical spectral weight redistribution, deduced from appropriate Green's functions, brought about by changes in gap and chemical potential due to modifying $α$. We derived closed-form semi-analytic expressions for the longitudinal components of the optical conductivity for these model systems of NLSM and compare results for chosen $α$ and chemical potential. We also present results for the heat capacity when the system is in thermal equilibrium for various chosen $α$ and chemical potential.

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