论文标题

NB2Site4中电子结构的各向异性红外响应和方向依赖性应变。

Anisotropic Infrared Response and Orientation-dependent Strain-tuning of the Electronic Structure in Nb2SiTe4

论文作者

Wang, Fanjie, Xu, Yonggang, Mu, Lei, Zhang, Jiasheng, Xia, Wei, Xue, Jiamin, Guo, Yanfeng, Yang, Ji-Hui, Yan, Hugen

论文摘要

具有可调的面内各向异性红外响应的二维材料有望在极化光电探测器和现场效应晶体管中使用多功能应用。黑磷是一个突出的例子。但是,它的环境稳定性差。在这里,我们报告了分层材料NB2Site4的应变脉冲各向异性红外响应,其晶格结构与具有三种不同类型的建筑单元的2H相过渡金属二核苷(TMDC)相似。令人惊讶的是,某些应变式光学跃迁是晶体学轴依赖性的,甚至在沿两个平面内主轴应用单轴应变时也会显示相反的移位。此外,G0W0-BSE计算与各向异性灭绝光谱显示出良好的一致性。光学选择规则是通过小组理论分析获得的,轨道耦合分析很好地解释了应变引起的异常转移趋势。我们的全面研究表明,NB2Site4是可调偏振敏感的光电设备的良好候选者。

Two-dimensional materials with tunable in-plane anisotropic infrared response promise versatile applications in polarized photodetectors and field-effect transistors. Black phosphorus is a prominent example. However, it suffers from poor ambient stability. Here, we report the strain-tunable anisotropic infrared response of a layered material Nb2SiTe4, whose lattice structure is similar to the 2H-phase transition metal dichalcogenides (TMDCs) with three different kinds of building units. Strikingly, some of the strain-tunable optical transitions are crystallographic axis-dependent, even showing opposite shift when uniaxial strain is applied along two in-plane principal axes. Moreover, G0W0-BSE calculations show good agreement with the anisotropic extinction spectra. The optical selection rules are obtained via group theory analysis, and the strain induced unusual shift trends are well explained by the orbital coupling analysis. Our comprehensive study suggests that Nb2SiTe4 is a good candidate for tunable polarization-sensitive optoelectronic devices.

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