材料科学
光子晶体
光电子学
自发辐射
氮化硅
可见光谱
光子学
塞尔效应
硅
纳米光子学
制作
Q系数
光学
谐振器
物理
医学
激光器
替代医学
病理
作者
Michael Barth,Josef Kouba,Johannes Stingl,Bernd Löchel,Oliver Benson
出处
期刊:Optics Express
[The Optical Society]
日期:2007-01-01
卷期号:15 (25): 17231-17231
被引量:67
摘要
Photonic crystal (PC) nanocavities based on silicon nitride membranes are studied as tools for the manipulation of spontaneous emission in the wavelength range between 550 nm and 800 nm. We observe a strong modification of the fluorescence spectrum of dye molecules spin-cast on top of the PC, indicating an efficient coupling of the dye emission to the cavity modes. The cavity design is optimized with respect to the quality factor and values of nearly 1500 are achieved experimentally. Taking into account the small mode volume, which leads to a strong Purcell enhancement, these nanocavities enable the realization of efficient single photon sources in the visible region of the spectrum. Furthermore, their fabrication is fully compatible with existing CMOS technology, making an integration into more complex optoelectronic devices feasible.
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