Bian X, Gao D L, Gao L
Opt Express. 2017 Oct 2;25(20):24566-24578. doi: 10.1364/OE.25.024566.
We study the optical scattering force on the coated nanoparticles with gain core and nonlocal plasmonic shell in the long-wavelength limit, and demonstrate negative optical force acting on the nanoparticles near the symmetric and/or antisymmetric surface plasmon resonances. To understand the optical force behavior, we propose nonlocal effective medium theory to derive the equivalent permittivity for the coated nanoparticles with nonlocality. We show that the imaginary part of the equivalent permittivity is negative near the surface resonant wavelength, resulting in the negative optical force. The introduction of nonlocality may shift the resonant wavelength of the optical force, and strengthen the negative optical force. Two examples of Fano-like resonant scattering in such coated nanoparticles are considered, and Fano resonance-induced negative optical force is found too. Our findings could have some potential applications in plasmonics, nano-optical manipulation, and optical selection.
我们研究了在长波长极限下具有增益核心和非局部等离子体壳层的包覆纳米粒子上的光散射力,并证明了在对称和/或反对称表面等离子体共振附近作用于纳米粒子的负光力。为了理解光力行为,我们提出了非局部有效介质理论来推导具有非局部性的包覆纳米粒子的等效介电常数。我们表明,在表面共振波长附近,等效介电常数的虚部为负,从而导致负光力。非局部性的引入可能会改变光力的共振波长,并增强负光力。我们考虑了这种包覆纳米粒子中类Fano共振散射的两个例子,并且也发现了Fano共振诱导的负光力。我们的发现可能在等离子体学、纳米光学操纵和光学选择方面有一些潜在应用。