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Silicon hybrid plasmonic Bragg grating reflectors and high Q-factor micro-cavities

机译:硅混合等离子体布拉格光栅反射器和高Q因子微腔

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摘要

In this paper, we present Bragg reflectors and high-Q micro-cavities based on Si hybrid plasmonic waveguides. The Bragg reflector is formed by a periodic variation of the thickness of the low index layer in a hybrid plasmonic waveguide. The simulated results show that our reflectors have a relatively low loss compared to conventional MIM or IMI plasmonic Bragg grating reflectors. Hybrid plasmonic micro-cavities formed by the introduction of a defect into the grating are also investigated. Due to the fact that a hybrid plasmonic structure can efficiently confine light in deep subwavelength scale with a relatively low propagation loss, our hybrid plasmonic micro-cavities can reach a Q factor of 1235 at the wavelength of 1550 nm.
机译:在本文中,我们介绍了基于Si混合等离子体激元波导的布拉格反射器和高Q微腔。布拉格反射器是通过在混合等离子体激元波导中低折射率层的厚度的周期性变化而形成的。仿真结果表明,与传统的MIM或IMI等离子体布拉格光栅反射器相比,我们的反射器具有相对较低的损耗。还研究了通过将缺陷引入光栅而形成的混合等离子体微腔。由于混合等离子体激元结构可以有效地将光限制在较深的亚波长范围内,并且具有相对较低的传播损耗,因此我们的混合等离子体激元微腔在1550 nm波长处的Q因子可以达到1235。

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