Porous silicon: A photonic material for all seasons

P. Reece, G. Lerondel, W. Zheng, A. Bruyant, M. Gal
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引用次数: 1

Abstract

Porous silicon has a number of demonstrated optical properties that are ideal for a broad range of applications in photonics and optoelectronics research. Technologies based on the tunability of the optical properties of porous silicon such as the refractive index and the ability to grow monolithic multi-layered structures has emerged as new focus of research. In this paper we report on developments relating to porous silicon based microcavities and Bragg reflectors, which have significant implications for a diverse range of applications. Fabrication of a one-dimensional photonic crystal with photonic band-gap is demonstrated. We have also fabricated microcavity structures that exhibit cavity resonances with sub-nanometer line-widths and very high Q-factors (> 7300). Such structures could be useful as both passive and active devices such as narrow bandpass filters and environmental sensors.
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多孔硅:一种适用于所有季节的光子材料
多孔硅具有许多已证明的光学特性,是光子学和光电子学研究中广泛应用的理想材料。基于多孔硅折射率等光学特性的可调性和单片多层结构的生长能力的技术已成为新的研究热点。在本文中,我们报告了有关多孔硅基微腔和布拉格反射器的发展,这对各种应用具有重要意义。介绍了一种具有光子带隙的一维光子晶体。我们还制作了具有亚纳米线宽和非常高q因子(> 7300)的腔共振的微腔结构。这种结构可用于无源和有源器件,如窄带通滤波器和环境传感器。
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