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Interband-transition-modified third-order nonlinear optical properties of Al nanoshells in carbon disulfide

机译:二硫化碳中Al纳米型的间带式转换改性的三阶非线性光学性能

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Interband transitions have important impacts on the nonlinear responses of metal nanoparticles. This work calculated the third-order nonlinear refraction index n _(2eff) and absorption coefficient β _(eff) of Al nanoshells in liquid carbon disulfide (CS _(2) ) by using Maxwell-Garnett effective medium theory. Calculation results reveal that the interband-transition-induced absorption (IA) of Al nanoshells can enhance the nonlinear refraction index and absorption coefficient of composites in the near-infrared region. The peak values of n _(2eff) and β _(eff) deviate from the IA peak and occur on the long-wavelength side of the interband transitions, which could be qualitatively interpreted by the increase in the linear refraction index of the CS _(2) induced by the irradiation of incident light. With decreasing nanoshell thickness, the n _(2eff) and β _(eff) peaks shift toward longer wavelengths and their deviations from the IA position become more noticeable. Besides, by controlling the nanoshell thickness together with the volume fraction of Al nanoparticles, one can optimize the nonlinear optical response of Al–CS _(2) composites.
机译:间间转变对金属纳米颗粒的非线性反应具有重要影响。通过使用Maxwell-Garnett有效介质理论,计算液态碳二硫醚(CS _(2))中的三阶非线性折射率N _(2EFF)和吸收系数β(EFF)。计算结果表明,Al纳米酚的间带转换诱导的吸收(IA)可以增强近红外区域中的复合材料的非线性折射率和吸收系数。 n _(2eff)和β_(eff)的峰值偏离IA峰值并且发生在基间转换的长波长侧,这可以通过CS _线性折射率的增加来定性解释(2)由辐射辐射引起的入射光。随着纳米叶片厚度的降低,n _(2eff)和β_(eff)峰值向较长波长移动,并且与IA位置的偏差变得更加明显。此外,通过将纳米型厚度与Al纳米颗粒的体积分数一起控制,可以优化Al-Cs _(2)复合材料的非线性光学响应。

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