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Tuning circular dichroism by capping Si02 nanohelixes upon silver nanohelixes

机译:通过将SiO 2纳霍克斯在银纳霍克斯封闭Si02纳霍克斯调整圆形二中间态

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Three-dimensional chiral metamaterials, plasmonic nanohelixes, with chiroptical activity have attracted attention for many potential photonic applications. In previous works, glancing angle deposition (GLAD) has been applied to deposit various Ag nanohelix arrays on smooth substrates and the structure dependent circular dichroism has been measured and analyzed. In this work, two-turn Si02 nanohelixes are grown upon Ag nanohelixes to form a Si02-Ag nanohelix array. For the bottom Ag nanohelices, the average pitch length (P) and the radii of curvature (R) are 231nm and 137nm, respectively. P and R are 174nm and 118nm for the top Si02 nanohelices, respectively. Under left-handed (right-handed) circularly polarized light illumination, the transmittance, reflectance, and extinctance of the Si02-Ag nanohelix array are measured. The circular dichroism described with g-factor is also presented here as a function of wavelength. According to the measurement, the g-factor exhibits a shift phenomenon as the Si02 nanohelixes are capped upon Ag nanohelixes. This phenomenon leads to flexible control over the circular dichroism of Si02-Ag nanohelix arrays with respect to the resonance wavelength and amplitude of g-factor.
机译:三维手性超材料,等级性纳米骨,具有毛细光学活动的潜在光子应用引起了注意力。在以前的作用中,已经施加闪烁的角度沉积(高兴)以在光滑的基板上沉积各种AG纳米柱阵列,并且已经测量并分析了结构依赖性圆形二中间。在这项工作中,双转SiO 2纳米髓基因在Ag Nanohelixes上生长以形成SiO 2-Ag纳米骨阵列。对于底部Ag纳米蛋白,平均间距长度(P)和曲率半径(R)分别为231nm和137nm。 POST R分别为顶部SiO 2纳米型纳米型为174nm和118nm。在左手(右手)圆偏振光照射,测量SiO2-Ag纳米克隆阵列的透射率,反射率和显着性。这里描述的G-系数描述的圆形二向量也被呈现为波长的函数。根据测量,G型因子表现出换档现象,因为SiO 2纳米鞘贴在Ag纳米鞘上。这种现象导致Si02-Ag纳米弦阵列相对于共振波长和G因子的振幅来灵活地控制Si02-Ag纳米隆阵列的圆形二中间。

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