平行玻璃纤维的近场光散射

D. Benincasa, T. Tsuei, P. Barber
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引用次数: 0

摘要

单根直径波长比较大的玻璃纤维,例如d/λ = 50,会强烈聚焦正常入射的激光,使其在光纤内和近场内的强度大大增强,即使光纤没有处于共振状态。计算结果表明,增强与径波比和光纤折射率有关。实测结果与计算得到的强度空间分布一致。对于球形粒子,可以观察到更大的增强。当另一根光纤进入它的近场时,单根光纤的近场强度会发生很大的变化。利用加法定理和olaofe的迭代方法计算了两根耦合光纤的近场强度。结果揭示了耦合机理,特别是耦合与光纤间距和两根光纤相对于入射波的方向的依赖关系。对镜前玻璃纤维的测量结果证实了计算结果的主要特征。
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Near-field light scattering by parallel glass fibers
Single glass fibers whose diameter-to-wavelength ratio is large, for example, d/λ = 50, strongly focus normally incident laser light to give greatly enhanced intensities both within and in the near field of the fiber, even when the fiber is not at resonance. Calculated results show the dependence of the enhancement on the diameter-to-wavelength ratio and on the fiber index of refraction. Measured results confirm the calculated spatial distribution of the intensity. Even greater enhancements are observed for spherical particles. The near-field intensity for a single fiber is greatly modified when a second fiber is moved into its near field. Calculations of the near-field intensities for two coupled fibers have been made using the addition theorem and the iterative approach of Olaofe.1 The results provide insight into the coupling mechanism, especially the dependence of the coupling on the fiber separation and on the orientation of the two fibers relative to the incident wave. Measured results for a glass fiber in front of a mirror confirm the major features of the calculated results.
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