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Fundamentals of negative refractive index optical trapping: forces and radiation pressures exerted by focused Gaussian beams using the generalized Lorenz-Mie theory

机译:负折射率光学陷阱的基本原理:使用广义Lorenz-Mie理论的聚焦高斯光束施加的力和辐射压力

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Based on the generalized Lorenz-Mie theory (GLMT), this paper reveals, for the first time in the literature, the principal characteristics of the optical forces and radiation pressure cross-sections exerted on homogeneous, linear, isotropic and spherical hypothetical negative refractive index (NRI) particles under the influence of focused Gaussian beams in the Mie regime. Starting with ray optics considerations, the analysis is then extended through calculating the Mie coefficients and the beam-shape coefficients for incident focused Gaussian beams. Results reveal new and interesting trapping properties which are not observed for commonly positive refractive index particles and, in this way, new potential applications in biomedical optics can be devised.
机译:基于广义洛伦兹-米理论(GLMT),本文首次揭示了均匀,线性,各向同性和球形假设负折射率上施加的光学力和辐射压力横截面的主要特征(NRI)粒子在三重状态下聚焦高斯光束的影响。从射线光学方面的考虑开始,然后通过计算入射聚焦高斯光束的Mie系数和光束形状系数来扩展分析。结果揭示了新的和有趣的俘获特性,而对于通常的正折射率粒子而言,这是没有观察到的,因此,可以设计出在生物医学光学中新的潜在应用。

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