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Surface Plasmon Amplification in Transition Metal Nitrides based Gain Assisted Core-Shell Nanoparticles

机译:基于过渡金属氮化物的增益辅助核壳纳米粒子的表面等离激元放大

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Transition Metal Nitrides (TMNs) such as ZrN, and TiN has emerged as alternative plasmonic materials to the conventional coinage materials like Au, Ag, Al and Cu etc. The present work assesses the suitability of conventional core-shell nanoparticle for lasing action in SPASER (Surface Plasmon Amplification by Stimulated Emission of Radiation) application. Surface plasmon (SP) amplification is caused by incorporating critical optical gain (g) in the nanoshell core, which leads to the amplification characteristics with lower threshold value for lasing action/process. We report that, the critical optical gain requirement in ZrN is comparable to Au based core-shell nanopartcle. The properties of SPASER and switch able nano scatterer are analyzed using quasistatic approximation (valid for small size particles). By introduction of specific gain in the core medium, the drastic change of scattering efficiency (Qsca) from ultra high to ultra low value and negative absorption cross-section is reported. The feasibility of TMNs as gain assisted surface plasmon amplification properties for various applications like plasmonic laser and nano scatterer is assessed and comparison is made with the most popular plasmonic material, namely Au. Present study can led to the realization of efficient SPASER structures/devices based on TMNs.
机译:诸如ZrN和TiN之类的过渡金属氮化物(TMN)已成为诸如Au,Ag,Al和Cu等常规造币材料的替代等离子体材料。 (通过激发辐射的表面等离激元放大)应用。表面等离激元(SP)放大是通过在纳米壳核中加入临界光学增益(g)引起的,从而导致放大特性具有较低的激光作用/过程阈值。我们报告说,ZrN中的关键光学增益要求与基于金的核壳纳米粒子相当。使用准静态逼近分析SPASER和可切换纳米散射体的特性(对小尺寸颗粒有效)。通过在核心介质中引入特定增益,报告了散射效率(Qsca)从超高值到超低值和负吸收截面的急剧变化。评估了TMN作为等离子激元和纳米散射体等各种应用的增益辅助表面等离激元放大特性的可行性,并与最流行的等离激元材料Au进行了比较。当前的研究可以导致基于TMN的高效SPASER结构/设备的实现。

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