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Dielectric property of particles at interface in random sequential adsorption and its application to whispering gallery mode resonance-shift sensors

机译:随机顺序吸附中颗粒界面处的介电特性及其在耳语廊模式共振位移传感器中的应用

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摘要

Dielectric properties of particles adsorbed onto a planar interface between two dielectric media are considered, taking into account the dipolar fields created by polarization induced in nearby particles as well as by their image dipoles. The use of a dipolar approximation allowed us to derive a self-consistent expression for the effective field experienced by each particle. The expression uses the pair correlation function of the particle distribution and is presented in a close form for normal and tangential directions of the applied field. To obtain the correlation function for the distribution of irreversibly adsorbed particles and calculate the effective field, a computer simulation of random sequential adsorption was carried out at prefixed particle densities and until placing the next particle became extremely difficult. The effective field was also calculated for hexagonal closest packing. Results of these calculations were then used to estimate resonance wavelength shifts of whispering gallery modes in a dielectric microsphere when it adsorbs dielectric particles. A gradual change was seen from the shifts for isolated particles at low densities to those for a packed layer. (c) 2007 American Institute of Physics.
机译:考虑了吸附在两个介电介质之间的平面界面上的颗粒的介电特性,同时考虑了附近粒子中引起的偏振及其图像偶极子产生的偶极场。偶极近似的使用使我们能够推导出每个粒子所经历的有效场的自洽表达式。该表达式使用粒子分布的对相关函数,并以接近的形式表示外加场的法向和切向方向。为了获得不可逆吸附粒子分布的相关函数并计算有效场,在前置粒子密度下进行随机顺序吸附的计算机模拟,直到放置下一个粒子变得极其困难。还计算了六边形最接近堆积的有效场。然后,这些计算结果用于估计介电微球中吸附介电粒子时耳语画廊模式的共振波长偏移。从低密度分离颗粒到填充层的偏移逐渐变化。(c) 2007年美国物理研究所。

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