Bondarev I V
Opt Express. 2015 Feb 23;23(4):3971-84. doi: 10.1364/OE.23.003971.
Quantum electrodynamics theory of the resonance Raman scattering is developed for an atom in a close proximity to a carbon nanotube. The theory predicts a dramatic enhancement of the Raman intensity in the strong atomic coupling regime to nanotube plasmon near-fields. This resonance scattering is a manifestation of the general electromagnetic surface enhanced Raman scattering effect, and can be used in designing efficient nanotube based optical sensing substrates for single atom detection, precision spontaneous emission control, and manipulation.
针对靠近碳纳米管的原子,发展了共振拉曼散射的量子电动力学理论。该理论预测,在原子与纳米管表面等离子体近场的强耦合 regime 中,拉曼强度会显著增强。这种共振散射是一般电磁表面增强拉曼散射效应的一种表现,可用于设计基于纳米管的高效光学传感基板,用于单原子检测、精确自发发射控制和操纵。