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Focusing in microlenses close to a wavelength in diameter

机译:聚焦于直径接近波长的微透镜

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摘要

Light focused from air into a spherical microlens is affected by diffraction at the lens surface as its diameter approaches the wavelength of light. Through an extension of Mie theory, we show that a converging wave that is incident upon a Si microlens with a diameter less than approximately 4 lambda creates a spot as much as 25% smaller than predicted with vector diffraction theory. Si microlenses only a wavelength in diameter are shown to be virtually insensitive to variations in the maximum illumination angle, and changes in index of refraction are not found to cause the proportional changes in spot size that would be expected from vector diffraction theory. (C) 2001 Optical Society of America. [References: 15]
机译:从空气聚焦到球形微透镜中的光在直径接近光的波长时会受到透镜表面衍射的影响。通过对Mie理论的扩展,我们显示出入射到直径小于约4λ的Si微透镜上的会聚波所产生的光斑比矢量衍射理论所预测的小25%。结果表明,只有直径一个波长的Si微透镜实际上对最大照明角度的变化不敏感,并且未发现折射率的变化会引起矢量衍射理论所预期的光斑尺寸成比例的变化。 (C)2001年美国眼镜学会。 [参考:15]

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