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首页> 外文期刊>Materials express: an international journal on multidisciplinary materials research >Optical transitions and localized edge states in skewed zigzag phosphorene nanoribbons
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Optical transitions and localized edge states in skewed zigzag phosphorene nanoribbons

机译:光学过渡和局部边缘状态在偏振Z字形磷烯纳米波氏

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摘要

Using the Tight Binding (TB) parameters extracted from Density Functional Theory (DFT) and Recursive Green's Function method (RGF), it is shown that skewed-zigzag black phosphorus (phosphorene) nanoribbons obtain large and tuneable bandgap in response to vertical and transverse electric fields. Depending on the direction of the applied field the mid-gap states could possess the localized or metallic nature i.e., non-zero mid-gap density of states. Adjustability of the bandgap and optical dipole transition matrix elements are explained based on the symmetry of involved band edge states. This promises new electronic and optical devices based on phosphorene nanoribbons.
机译:使用从密度函数理论(DFT)和递归绿色的功能方法(RGF)中提取的紧密结合(TB)参数(RGF),示出了倾斜曲折的黑色磷(磷烯)纳米率响应于垂直和横向电动而获得大而可调的带隙 字段。 根据所施加的场的方向,中间隙状态可以具有局部或金属性质,即状态的非零中隙密度。 基于所涉及的频带边缘状态的对称性解释带隙和光学偶极转换矩阵元件的可调节性。 这承担了基于磷烯纳米波族的新型电子和光学器件。

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