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Enhanced light emission from carbon nanotubes integrated in silicon micro-resonator

机译:集成在硅微谐振器中的碳纳米管增强了发光

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摘要

Single-walled carbon nanotubes are considered a fascinating nanomaterial for photonic applications and are especially promising for efficient light emitters in the telecommunication wavelength range. Furthermore, their hybrid integration with silicon photonic structures makes them an ideal platform to explore their intrinsic properties. Here we report on the strong photoluminescence enhancement from carbon nanotubes integrated in silicon ring resonator circuits under two pumping configurations: surface-illuminated pumping at 735 nm and collinear pumping at 1.26 mu m. Extremely efficient rejection of the non-resonant photoluminescence was obtained. In the collinear approach, an emission efficiency enhancement by a factor of 26 has been demonstrated in comparison with the classical pumping scheme. This demonstration paves the way for the development of integrated light sources in silicon based on carbon nanotubes.
机译:单壁碳纳米管被认为是光子应用中的一种引人入胜的纳米材料,对于在电信波长范围内的高效发光体尤其有希望。此外,它们与硅光子结构的混合集成使其成为探索其内在特性的理想平台。在这里,我们报告了在两种泵浦配置下,集成在硅环谐振器电路中的碳纳米管的强光致发光增强作用:在735 nm处的表面照明泵浦和在1.26μm处的共线泵浦。获得了非共振光致发光的极其有效的抑制。在共线方法中,与经典泵送方案相比,已证明排放效率提高了26倍。该演示为基于碳纳米管的硅集成光源的开发铺平了道路。

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