Rao V S C Manga, Hughes S
Department of Physics, Queen's University Kingston, ON, Canada.
Phys Rev Lett. 2007 Nov 9;99(19):193901. doi: 10.1103/PhysRevLett.99.193901. Epub 2007 Nov 7.
Spontaneous emission rate enhancements from a single quantum dot embedded in a finite-size, planar photonic-crystal waveguide are investigated. Short waveguide lengths of only 10 to 20 unit cells are found to produce very large Purcell factors associated with a waveguidelike sharp resonance feature in the local density of photon states. Aided by theoretical insight and rigorous computational calculations, we explain the physics behind these remarkable emission enhancements and subsequently propose a "single-photon gun" with on-chip unidirectional collection efficiencies greater than 60% into an output wire waveguide. The advantages over recent proposals for infinitely long photonic-crystal waveguides are highlighted.
研究了嵌入有限尺寸平面光子晶体波导中的单个量子点的自发发射率增强。发现仅10到20个晶胞的短波导长度会产生与光子态局域密度中的波导状尖锐共振特征相关的非常大的珀塞尔因子。借助理论见解和严格的计算,我们解释了这些显著发射增强背后的物理原理,并随后提出了一种“单光子枪”,其片上单向收集效率大于60%,进入输出线波导。突出了与最近关于无限长光子晶体波导的提议相比的优势。