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Optical trapping of nanoshells

机译:纳米壳的光阱

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We investigate near-resonant trapping of Rayleigh particles in optical tweezers. Although optical forces due to a near-resonant laser beam have been extensively studied for atoms, the situation for larger particles is that the laser wavelength is far from any absorption resonance. Theory predicts, however, that the trapping force exerted on a Rayleigh particle is enhanced, and may be three to fifty times larger for frequencies near resonance than for frequencies far off resonance. The ability to selectively trap only particles with a given absorption peak may have many practical applications. In order to investigate near-resonant trapping we are using nanoshells, particles with a dielectric core and metallic coating that can exhibit plasmon resonances. The resonances of the nanoshells can be tuned by adjusting the ratio of the radius of the dielectric core, r_1, to the overall radius, r_2, which includes the thickness of the metallic coating. Our nanoshells, fabricated at Rice University, consist of a silica core with a gold coating. Using back focal plane detection, we measure the trap stiffness of a single focus optical trap (optical tweezers), from a diode laser at 853 nm for nanoshells with several different r_1/r_2 ratios.
机译:我们研究光学镊子中瑞利粒子的近共振陷获。尽管对于原子,已经广泛研究了由于近共振激光束引起的光学力,但对于较大粒子而言,情况是激光波长远没有任何吸收共振。然而,理论预测,施加在瑞利粒子上的俘获力会增强,对于接近共振的频率,其捕获力可能比远离共振的频率大三到五十倍。选择性地仅捕集具有给定吸收峰的颗粒的能力可能具有许多实际应用。为了研究近共振俘获,我们使用了纳米壳,具有介电芯的颗粒和可以表现出等离子体共振的金属涂层。可以通过调节介电芯的半径r_1与包括金属涂层厚度的总半径r_2的比率来调整纳米壳的共振。我们在莱斯大学制造的纳米壳由二氧化硅芯和金涂层组成。使用后焦平面检测,我们针对具有几种不同r_1 / r_2比率的纳米壳,从853 nm的二极管激光器测量了单焦点光学陷阱(光学镊子)的陷阱刚度。

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