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Scattering of light into silicon by spherical and hemispherical silver nanoparticles

机译:球形和半球形银纳米粒子将光散射到硅中

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摘要

The interaction of light with noble metal nanoparticles deposited onto the top surface of a semiconductor has been investigated using the finite-difference time-domain method. The scattering is calculated for spherical and hemispherical silver nanoparticles placed in a periodic two-dimensional array on the upper surface of a semi-infinite silicon substrate. The results show that the contact area between hemispherical particles and the silicon significantly reduces the forward scattering. The use of an oxide buffer layer to separate the particle from the semiconductor is investigated and is seen to be important if the forward scattering of light is to be enhanced.
机译:使用有限差分时域方法研究了光与沉积在半导体顶表面上的贵金属纳米颗粒的相互作用。计算在半无限硅衬底的上表面上以周期性二维阵列放置的球形和半球形银纳米粒子的散射。结果表明,半球形颗粒与硅之间的接触面积显着降低了前向散射。已经研究了使用氧化物缓冲层将颗粒与半导体分离的方法,并且如果要增强光的前向散射,这很重要。

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