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Tuning Plasmon Resonance of Gold Nanostars for Enhancements of Nonlinear Optical Response and Raman Scattering

机译:调谐金纳米星的等离子体共振,以增强非线性光学响应和拉曼散射

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摘要

Localized surface plasmon resonances (LSPRs) of metal nanostructures are highly related to the shape, which could greatly enhance the light—matter interaction at nanoscale Here, we investigate the LSPRs of gold nanostars corresponding to the unique morphology and demonstrate surface-enhanced Raman scattering (SERS) activities and nonlinear refraction properties of two typical structures By adjusting the synthesis condition, the mam plasmon resonance could be tuned from 557 to 760 nm The plasmon modes and intense field enhancement near the sharp tips are revealed by finite-difference timed-domain (FDTD) simulations The nonlinear refractive index γ reaches to the maximum value when the excitation wavelength is resonant to the LSPRs wavelength The maximum value of γ for long-branched nanostars (λ_(SP) = 706 nm) is 5 843 X 10~(-4) cm~2/ GW, which is about 1 5 times larger than that of spherical-like nanostars with λ_(SP) = 563 nm. The SERS activity of long-branched nanostars is about 15 times larger than that of spherical-like gold nanostars.
机译:金属纳米结构的局部表面等离子体共振(LSPRs)与形状高度相关,可以极大地增强纳米级的光-质相互作用。在这里,我们研究与独特形态相对应的金纳米星的LSPRs,并证明表面增强拉曼散射(两种典型结构的SERS活度和非线性折射特性通过调节合成条件,可以将mam等离子体激元共振从557 nm调整到760 nm。通过有限差分时域( FDTD)模拟当激发波长共振到LSPRs波长时,非线性折射率γ达到最大值。长支纳米星(λ_(SP)= 706 nm)的γ最大值为5843 X 10〜(- 4)cm〜2 / GW,大约是λ_(SP)= 563 nm的球形纳米星的1〜5倍。长支纳米星的SERS活性大约是球形金纳米星的SERS活性的15倍。

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