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Are the triple surface plasmon resonances in Zn nanoparticles true?

机译:Zn纳米颗粒中的三层等离子体共振是真的吗?

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摘要

It has been experimentally and numerically confirmed that zinc (Zn) nanoparticles (NPs) dispersed in silica exhibit two optical extinction peaks around similar to 250 nm (1st peak) and similar to 1050 nm (2nd peak), both of which were ascribed to surface plasmon resonances (SPRs) in the broad sense, i.e., the dual SPRs. Recently, Kuiri and Majhi (KM) observed the 3rd peak around similar to 900 nm by calculations, and proposed the triple SPRs for Zn NPs without any experimental confirmation. This paper claims that the 3rd peak has never been observed in any experiments nor in any calculations except given by KM. They justified the triple resonances from an approximated SPR criterion, epsilon(Zn)(1)(omega) + 2 epsilon(SiO2)(1)(omega) = 0, which is not valid for non-idealized metals like Zn, because the imaginary part of the dielectric function epsilon(Zn)(2)(omega) is not negligible. Instead, a rigorous SPR criterion predicts the dual resonances only. From comparisons with ab initio band calculations, the 1st and 2nd extinction peak are ascribed to resonantly enhanced inter-band transitions (so-called electronic resonance) and intra-band transitions (SPR in the narrow sense), respectively. Since either of the peaks arises from the resonant enhancement due to the dielectric function, both the peaks are regarded as SPRs in the broad sense, i.e. the dual SPRs.
机译:已经通过实验且数值证实,分散在二氧化硅中的锌(Zn)纳米颗粒(NPS)表现出与250nm(第1峰)相似的两种光学消光峰,并且类似于1050nm(第2峰),两者都归因于表面在广义上的等离子体共振(SPR),即双弹水。最近,Kuiri和Majhi(km)观察到相似的第3峰值与900nm的计算,并提出了Zn NPS的三泉,而无需任何实验证实。本文要求在任何实验中从未观察到第3峰,也没有在除基础上除外的任何计算中。它们使三重共振从近似的SPR标准,ε(Zn)(1)(Omega)(Omega)(Omega)+ 2ε(SiO 2)(1)(Omega)= 0(Omega)= 0表示,这对于像Zn这样的非理想金属无效,因为介电功能ε(Zn)(2)(ω)的虚部不可忽略。相反,严谨的SPR标准仅预测了双共振。根据与AB Initio带的比较,第一和第二消光峰分别归因于分别谐振以谐振增强的间接转变(所谓的电子谐振)和跨越狭义中的SPR的帧内过渡。由于由于介电函数引起的谐振增强中的任何一个峰值,所以峰值都被视为广义的SPR,即双簧。

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