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Wide-field Rayleigh scattering imaging and spectroscopy of gold nanoparticles in heavy water under laser trapping

机译:激光俘获下重水中金纳米粒子的宽域瑞利散射成像和光谱

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摘要

We demonstrated wide-field Rayleigh scattering spectroscopy and imaging of gold nanoparticle trapping upon a focused near-infrared laser irradiation under dark-field illumination. The migration, trapping, and assembling behavior of gold nanoparticles were examined at single nanoparticle level at the focus spot and its surrounding area in heavy water. It is clarified that particle migration to the laser spot within the focal plane is not appreciable while scattering force drives the migration vertically along the direction of light propagation. The gradient force at the focus point and the scattering force are theoretically estimated to be 3.1 and 0.17 pN, which are consistent with the direct observation. Analysis of light scattering intensity fluctuation at the focus shows that three nanoparticles can be trapped at most, which is well supported by light scattering spectral measurement. The particle existence probability at the focus is estimated as a function of lateral distance from the focus, and is compared with numerically obtained photon pressure potential.
机译:我们展示了宽场瑞利散射光谱学和金纳米颗粒捕获在暗场照明下聚焦近红外激光辐照下的成像。在重水中的焦点及其周围区域,在单个纳米粒子水平上检查了金纳米粒子的迁移,捕获和组装行为。可以看出,在焦平面内粒子向激光点的迁移是不明显的,而散射力则沿着光传播方向垂直地驱动迁移。理论上估计焦点处的梯度力和散射力分别为3.1和0.17 pN,这与直接观察一致。对焦点处的光散射强度波动的分析表明,最多可以捕获三个纳米颗粒,这在光散射光谱测量中得到了很好的支持。估计在焦点处的粒子存在概率是距焦点的横向距离的函数,并将其与从数值上获得的光子压力势进行比较。

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