Février Mickaël, Gogol Philippe, Barbillon Grégory, Aassime Abdelhanin, Mégy Robert, Bartenlian Bernard, Lourtioz Jean-Michel, Dagens Béatrice
Institut d’Electronique Fondamentale, Univ. Paris Sud, UMR8622 CNRS, 91405 Orsay, France .
Opt Express. 2012 Jul 30;20(16):17402-10. doi: 10.1364/OE.20.017402.
We demonstrate the integration of short metal nanoparticle chains (L ≈700 nm) supporting localized surface plasmons in Silicon On Insulator (SOI) waveguides at telecom wavelengths. Nanoparticles are deposited on the waveguide top and excited through the evanescent field of the TE waveguide modes. Finite difference time domain calculations and waveguide transmission measurements reveal that almost all the TE mode energy can be transferred to nanoparticle chains at resonance. It is also shown that the transmission spectrum is very sensitive to the molecular environment of nanoparticles, thus opening the way towards ultra-compact sensors in guided plasmonics on SOI. An experimental demonstration is reported with octadecanthiol molecules for a detection volume as small as 0.26 attoliter.
我们展示了在电信波长下,将支持局域表面等离子体激元的短金属纳米颗粒链(L≈700 nm)集成到绝缘体上硅(SOI)波导中。纳米颗粒沉积在波导顶部,并通过TE波导模式的倏逝场进行激发。时域有限差分计算和波导传输测量表明,在共振时,几乎所有的TE模式能量都可以转移到纳米颗粒链上。还表明,传输光谱对纳米颗粒的分子环境非常敏感,从而为SOI上的导波光超紧凑型传感器开辟了道路。报道了用十八烷硫醇分子进行的实验演示,检测体积小至0.26阿托升。