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Ultralow mode-volume photonic crystal nanobeam cavities for high-efficiency coupling to individual carbon nanotube emitters

机译:超低模量光子晶体纳米束腔,可高效耦合至单个碳纳米管发射器

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The unique emission properties of single-walled carbon nanotubes are attractive for achieving increased functionality in integrated photonics. In addition to being room-temperature telecom-band emitters that can be directly grown on silicon , they are ideal for coupling to nanoscale photonic structures. Here we report on high-efficiency coupling of individual air-suspended carbon nanotubes to silicon photonic crystal nanobeam cavities. Photoluminescence images of dielectric- and air-mode cavities reflect their distinctly different mode profiles and show that fields in the air are important for coupling. We find that the air-mode cavities couple more efficiently, and estimated spontaneous emission coupling factors reach a value as high as 0.85. Our results demonstrate advantages of ultralow mode-volumes in air-mode cavities for coupling to low-dimensional nanoscale emitters.
机译:单壁碳纳米管的独特发射特性对于在集成光子学中实现更高的功能性具有吸引力。除了是可以直接在硅上生长的室温电信波段发射器之外,它们还是耦合至纳米级光子结构的理想选择。在这里,我们报告单个空气悬浮的碳纳米管到硅光子晶体纳米束腔的高效耦合。介电模腔和空气模腔的光致发光图像反映了它们截然不同的模态轮廓,表明空气中的场对于耦合很重要。我们发现空气模腔更有效地耦合,并且估计的自发发射耦合因子达到高达0.85的值。我们的研究结果表明,空气模腔中超低模量可用于耦合至低维纳米级发射体。

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