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首页> 外文期刊>The journal of physics and chemistry of solids >Strain-controllable ferromagnetism in Mn-doped AlP semiconductor with constant visible light absorption
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Strain-controllable ferromagnetism in Mn-doped AlP semiconductor with constant visible light absorption

机译:Mn掺杂ALP半导体中应变可控的铁磁性,具有恒定的可见光吸收

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Semiconductors encompassing a broad range of novel electronic, magnetic, and optical properties have attracted substantial research interest over the past decade, promising the development of next-generation multifunctional devices. Recently, we have observed strong visible optical absorption in AlP after Mn doping. Here, the magnetic interaction and optical absorption in A(1-x)Mn(x)P (x = 12.5%) were studied at wide biaxial strain by means of first-principles calculations together with the classical Heisenberg model. Our results unveil that Mn-doped AlP energetically favors a ferromagnetic state with short-range exchange coupling interaction. Intriguingly, the Curie-temperature can be continuous enhanced even above 220 K by in-plane biaxial strain, while the strong optical absorption in the visible range as well as its intensity are almost unperturbed. The results presented provide a new strategy for constructing multifunctional diluted magnetic semiconductor materials, and render Mn-doped AlP great candidate for spintronic devices that working under visible spectrum.
机译:包括广泛的新型电子,磁性和光学特性的半导体吸引了过去十年的大量研究兴趣,很有希望开发下一代多功能设备。最近,我们在Mn掺杂后观察到ALP的强烈可见光吸收。这里,通过第一原理计算在宽双轴菌株与经典的Heisenberg模型一起在宽双轴菌株中研究磁相互作用和光学吸收(x = 12.5%)。我们的结果推出了Mn-Doped Alp能够充满活力地利用短距离交换耦合相互作用的铁磁状态。有趣的是,通过面内双轴应变甚至可以连续增强居里温度,而可见范围的强光学吸收以及其强度几乎不受干扰。所提出的结果提供了一种用于构建多功能稀释的磁半导体材料的新策略,并为在可见光谱下工作的旋转式装置呈现Mn-掺杂的Alp Great候选者。

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