首页> 外文期刊>Journal of Applied Physics >Enhanced absorption of solar light in Ge/Si core-sheath nanowires compared to Si/Ge core-sheath and Si1-xGex nanowires: A theoretical study
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Enhanced absorption of solar light in Ge/Si core-sheath nanowires compared to Si/Ge core-sheath and Si1-xGex nanowires: A theoretical study

机译:与Si / Ge芯鞘和Si1-xGex纳米线相比,Ge / Si芯鞘纳米线对太阳光的吸收增强:

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摘要

Coaxial core-sheath semiconductor nanowires exhibit an improved light absorption efficiency, rendering them promising building blocks in photovoltaic devices. In the present theoretical work, we focus on the optical properties of Si/Ge and Ge/Si core-sheath nanowires, compared to Si1-xGex alloy variants (without coated shell) of the same composition in Si and Ge. Using the analytical Lorenz-Mie theory, we compute both the absorption and scattering efficiencies, with a particular attention devoted to the shell thickness influence. The leaky modes resonances, associated to the optical response enhancement, are investigated and compared for all core/sheath and alloy variants. The optical resonances are found to keep almost the same spectral positions regardless the nanowire structure. More interestingly, core-sheath nanowires absorb more efficiently visible to near-infrared light than Si1-xGex alloys. Finally, the integrated solar absorption Jsolar, which is a figure of merit proportional to the photocurrent generated in a nanowire, is more efficient in the case of Ge/Si core-sheath nanowires than in the two other structures.
机译:同轴芯鞘半导体纳米线表现出提高的光吸收效率,使其成为光伏器件中有希望的基础。在当前的理论工作中,与Si和Ge中相同组成的Si1-xGex合金变体(无涂层外壳)相比,我们专注于Si / Ge和Ge / Si芯鞘纳米线的光学特性。使用分析洛伦兹-米理论,我们可以计算吸收效率和散射效率,尤其要注意壳厚度的影响。研究并比较了所有纤芯/护套和合金变体的与光学响应增强相关的泄漏模式共振。发现光谐振保持几乎相同的光谱位置,而不管纳米线结构如何。更有趣的是,芯鞘纳米线比Si1-xGex合金更有效地吸收近红外可见光。最后,集成的太阳吸收Jsolar(与纳米线中产生的光电流成比例的品质因数)在Ge / Si芯鞘型纳米线的情况下比在其他两种结构中更有效。

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