论文标题
宽带强烈的光学二色性在拓扑狄拉克半学以费米速度各向异性
Broadband strong optical dichroism in topological Dirac semimetals with Fermi velocity anisotropy
论文作者
论文摘要
原型的三维(3D)拓扑狄拉克半法(DSM),例如CD $ _3 $,如$ _2 $和Na $ _3 $ bi,包含遵守三个正源力动量层的不同FERMI速度的线性动量分散剂的电子。尽管近年来接受了广泛的研究,但在3D DSM的理论和数值研究中,经常忽略了固有的\ emph {fermi速度各向异性}。尽管这种遗漏并未在3D DSM中定性改变轻型无质量准粒子的物理学,但它确实会\ emph {量化}改变光学系数,这可能会导致纳米光子学和Plasmonics应用方面产生非平凡的含义。在这里,我们研究了沿每个方向的一般费米速度值3D DSM的线性光学响应。尽管签名电导率频率比例($σ(ω)\ proptoω$,但3D dirac fermion受到费米速度各向异性的良好保护,但线性光学响应表现出强烈的线性二色性,如\ emph {noveresal} niftion n law fail fail fail fartion/law of v _} $λ__} $λ $ i \ neq j $表示三个空间坐标$ x,y,z $和$ v_i $是$ i $ direction fermi Velocity),它与频率,温度,掺杂和载体散射寿命无关。对于CD $ _3 $,AS $ _2 $和Na $ _3 $ bi $ _3 $,一个非常强大的灭绝比大于15,并且覆盖了广泛的Terahertz窗口。我们的发现为费米速度各向异性在狄拉克半法的光学响应中的作用提供了新的启示,并打开了新型的极化敏感功能,例如光电检测和光调制。
Prototypical three-dimensional (3D) topological Dirac semimetals (DSMs), such as Cd$_3$As$_2$ and Na$_3$Bi, contain electrons that obey a linear momentum-energy dispersion with different Fermi velocities along the three orthogonal momentum dimensions. Despite being extensively studied in recent years, the inherent \emph{Fermi velocity anisotropy} has often been neglected in the theoretical and numerical studies of 3D DSMs. Although this omission does not qualitatively alter the physics of light-driven massless quasiparticles in 3D DSMs, it does \emph{quantitatively} change the optical coefficients which can lead to nontrivial implications in terms of nanophotonics and plasmonics applications. Here we study the linear optical response of 3D DSMs for general Fermi velocity values along each direction. Although the signature conductivity-frequency scaling, $σ(ω) \propto ω$, of 3D Dirac fermion is well-protected from Fermi velocity anisotropy, the linear optical response exhibits strong linear dichroism as captured by the \emph{universal} extinction ratio scaling law, $Λ_{ij} = (v_i/v_j)^2$ (where $i\neq j$ denotes the three spatial coordinates $x,y,z$, and $v_i$ is the $i$-direction Fermi velocity), which is independent of frequency, temperature, doping, and carrier scattering lifetime. For Cd$_3$As$_2$ and Na$_3$Bi$_3$, an exceptionally strong extinction ratio larger than 15 and covering broad terahertz window is revealed. Our findings shed new light on the role of Fermi velocity anisotropy in the optical response of Dirac semimetals and open up novel polarization-sensitive functionalities, such as photodetection and light modulation.