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Photonic Crystal and Plasmonic Silicon-Based Light Sources

机译:光子晶体和等离子硅基光源

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Efficient silicon (Si)-compatible emitters can realize inexpensive light sources for a variety of applications. In this paper, we study both photonic crystal (PC) and plasmonic nanocavities that enhance the emission of Si-compatible materials. In particular, we examine the coupling of silicon nanocrystals (Si-NCs) to silicon nitride PC cavities and Si-NCs in silicon dioxide to plasmonic gratings, both for enhancement of emission in the visible wavelengths. In addition, we also observe the enhancement of the 1530 nm emission from erbium-doped silicon nitride films coupled to Si PC cavities. Finally, we analyze the loss mechanisms associated with the hybrid silicon nitride/silicon system, and propose advancements in the designs of PC and plasmonic cavities for the emitters described in this paper.
机译:高效的兼容硅(Si)的发射器可以为各种应用实现廉价的光源。在本文中,我们研究了光子晶体(PC)和等离子纳米腔,它们增强了Si兼容材料的发射。特别是,我们检查了硅纳米晶体(Si-NCs)与氮化硅PC腔的耦合以及二氧化硅在二氧化硅中与等离子光栅的耦合,两者都是为了增强可见波长的发射。此外,我们还观察到掺Si硅PC腔的掺nitride氮化硅膜的1530 nm发射增强。最后,我们分析了与氮化硅/硅杂化体系相关的损耗机理,并提出了本文所述发射体的PC和等离子体腔的设计进展。

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