Enhanced and Tunable Surface Plasmons Assisted Emission from Reduced Graphene Oxide and Gold Hybrid Configuration

Muhammad Junaid, M. Khir, G. Witjaksono, M. S. M. Saheed, Z. Ullah, M. A. Siddiqui
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Abstract

The reduced graphene oxide is expected to be material for enhanced plasmons emitter due to its unique optoelectronic properties. In this paper, we have performed FDTD analysis of reduced graphene oxide layer and on the hybrid gold structure and $\mathrm{SiO}_{2} / \mathrm{Si}$ substrate. Where remarkably enhanced and tunable plasmons emission from reduced graphene oxide was observed. In the prospective enhancement field emission from the simulation, the structure is conformed from FDTD analysis in term of absorption, reflectance, emission spectra. The tunable ability of emission radiation was also investigated with an induced energy bandgap in reduced graphene oxide. Moreover, the simulation results show that the reduced graphene oxide is suitable for optoelectronic device applications i.e., such as Fermi level modulations through low voltage implication. The structural design approach defined here will be very suitable for the forthcoming design of highly efficient optical and optoelectronic devices. In addition, the proposed design offers an alternative route for the application of reduced graphene oxide for optical and optoelectronic devices.
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还原氧化石墨烯和金杂化结构增强和可调谐表面等离子体辅助发射
还原氧化石墨烯由于其独特的光电特性,有望成为增强等离子体发射体的材料。在本文中,我们对还原氧化石墨烯层和混合金结构和$\ mathm {SiO}_{2} / \ mathm {Si}$衬底进行了FDTD分析。其中,从还原氧化石墨烯中观察到显著增强和可调谐的等离子体发射。在模拟的前瞻性增强场发射中,结构在吸收、反射率、发射光谱等方面符合时域有限差分分析结果。还研究了还原氧化石墨烯中诱导能带隙的发射辐射可调谐能力。此外,模拟结果表明,还原后的氧化石墨烯适用于光电子器件应用,例如通过低电压隐含进行费米能级调制。这里定义的结构设计方法将非常适用于即将到来的高效光学和光电子器件的设计。此外,提出的设计为还原氧化石墨烯在光学和光电子器件中的应用提供了另一种途径。
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