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Optical Properties of Ga-doped Silicene and As-Doped Silicene: First Principle Calculations

机译:GA掺杂硅和掺杂硅烯的光学性质:第一原理计算

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The emergence of two dimensional materials was triggered by the discovery of graphene, carbon atoms with honey comb structure. Silicene, the silicon analogue of graphene, is expected to be more compatible with electronic industries, which are currently still dominated by silicon. In order to be more flexible in application, functionalization of silicene is necessary. Ga atoms from group III and As atoms from group V of the periodic table may play the roles of donor and acceptor dopant on silicene which consists of Si atoms from group IV. We have performed density functional theory calculations with a generalized gradient approximation to investigate the effects of a Ga atom and an A1 atom on the optical properties of silicene. Optical properties investigated include refraction, reflection, and absorption. Doping of gallium, arsenic, and gallium arsenic decrease the value of the linear optical properties.
机译:通过将石墨烯,碳原子与蜂蜜梳理结构的发现引发了二维材料的出现。石墨烯的硅类似物的硅片预计与电子工业更符合,目前仍然由硅占主导地位。为了更灵活地应用,硅烯的功能化是必要的。来自III组的GA原子和周期表V组V组的原子可能在硅原子组成的硅原子上扮演供体和受体掺杂剂的作用。我们已经进行了具有广义梯度近似的密度函数理论计算,以研究Ga原子和A1原子对硅的光学性质的影响。研究的光学性质包括折射,反射和吸收。掺杂镓,砷和砷化镓降低了线性光学性质的值。

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