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Optical bistability in a nonlinear-shell-coated metallic nanoparticle

机译:非线性壳包覆的金属纳米粒子的光学双稳性

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摘要

We provide a self-consistent mean field approximation in the framework of Mie scattering theory to study the optical bistability of a metallic nanoparticle coated with a nonlinear shell. We demonstrate that the nanoparticle coated with a weakly nonlinear shell exhibits optical bistability in a broad range of incident optical intensity. This optical bistability critically relies on the geometry of the shell-coated nanoparticle, especially the fractional volume of the metallic core. The incident wavelength can also affect the optical bistability. Through an optimization-like process, we find a design with broader bistable region and lower threshold field by adjusting the size of the nonlinear shell, the fractional volume of the metallic core, and the incident wavelength. These results may find potential applications in optical bistable devices such as all-optical switches, optical transistors and optical memories.
机译:我们在Mie散射理论的框架内提供了一个自洽的平均场近似值,以研究涂有非线性壳的金属纳米粒子的光学双稳态。我们证明,包覆有弱非线性壳的纳米颗粒在宽范围的入射光强度范围内表现出光学双稳性。这种光学双稳态性主要取决于壳被包覆的纳米颗粒的几何形状,特别是金属芯的分数体积。入射波长也会影响光学双稳态。通过类似优化的过程,通过调整非线性壳的大小,金属芯的分数体积和入射波长,我们发现了一种具有更宽的双稳态区域和较低阈值场的设计。这些结果可能在诸如双光开关,光晶体管和光存储器之类的光双稳态器件中找到潜在的应用。

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