论文标题

拓扑狄拉克半学中光学二色性转化的Terahertz极化转换

Terahertz Polarization Conversion from Optical Dichroism in a Topological Dirac Semimetal

论文作者

Meng, Haiyu, Wang, Lingling, Lee, Ching Hua, Ang, Yee Sin

论文摘要

拓扑狄拉克半学(TDSM),例如CD $ _3 $,为$ _2 $和Na $ _3 $ bi,表现出强烈的光学二色症,沿不同晶体轴对比介染色的介电介电常数。然而,在基于TDSM的光电设备的研究中,这种光学二分性能通常被忽略,以及迄今为止,在各向同性近似值下,这种光学二色性是否会导致在各向同性近似中找不到的独特功能仍然是一个悬而未决的问题。在这里,我们表明,与各向同性病例相比,TDSM中的光学不智力导致明显不同的Terahertz(THZ)响应和设备性能。 Using finite-difference time-domain simulations of a Cd$_3$As$_2$-based metasurface, we demonstrate that such optical dichroism can lead to an unexpected THz wave polarization conversion even if the metasurface structure remains C$_4$ four-fold rotationally symmetric, a practically useful feature not achievable under the isotropic model of TDSM.我们的发现具体揭示了各向同性和各向异性培养基之间的对比频谱响应,并为各向异性TDSM在THZ应用中的能力提供了重要的启示,不仅导致了更准确的设备建模,而且还导致了更准确的途径,还可以实现THZ波的新途径,而无需实现复杂的设备偏光率,而无需使用复杂的设备进行高度化的跨性别化的范围。

Topological Dirac semimetals (TDSM), such as Cd$_3$As$_2$ and Na$_3$Bi, exhibits strong optical dichroism with contrasting dielectric permittivity along different crystal axes. However, such optical dichroism is often overlooked in the study of TDSM-based optoelectronic devices, and whether such optical dichroism can lead to unique functionalities not found under the isotropic approximation remain an open question thus far. Here we show that the optical dischroism in TDSM lead to starkly different terahertz (THz) responses and device performance as compared to the isotropic case. Using finite-difference time-domain simulations of a Cd$_3$As$_2$-based metasurface, we demonstrate that such optical dichroism can lead to an unexpected THz wave polarization conversion even if the metasurface structure remains C$_4$ four-fold rotationally symmetric, a practically useful feature not achievable under the isotropic model of TDSM. Our findings concretely reveal the contrasting spectral response between isotropic and anisotropic media, and shed important light on the capability of anisotropic TDSM in THz applications, leading not just to the more accurate device modelling, but also a new route in realizing THz waves polarization conversion without the need of complex device morphology commonly employed in conventional polarization converters.

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