Optofluidic lens with low spherical and low field curvature aberrations
This paper reports an optofluidic lens with low spherical and low field curvature aberrations through the desired refractive index profile by precisely controlling the mixing between ethylene glycol and deionized water in an optofluidic chip. The experimental results demonstrate that the spherical a...
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Veröffentlicht in: | Lab on a chip 2016-04, Vol.16 (9), p.1617-1624 |
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Hauptverfasser: | , , , , , , , , , , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | This paper reports an optofluidic lens with low spherical and low field curvature aberrations through the desired refractive index profile by precisely controlling the mixing between ethylene glycol and deionized water in an optofluidic chip. The experimental results demonstrate that the spherical aberration is reduced to 19.5 μm and the full width at half maximum of the focal point is 7.8 μm with a wide divergence angle of 35 degrees. In addition, the optofluidic lens can focus light at different off-axis positions on the focal plane with Δ
x
′ < 6.8 μm and at opposite transverse positions with |Δ
y
− Δ
y
′| < 5.7 μm. This is the first demonstration of a special optofluidic lens that significantly reduces both the spherical and field curvature aberrations, which enhances the focusing power and facilitates multiple light source illumination using a single lens. It is anticipated to have high potential for applications such as on-chip light manipulation, sample illumination and multiplexed detection.
Optofluidic lens with hyperbolic secant index profile, leading to low spherical and low field curvature aberrations. |
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ISSN: | 1473-0197 1473-0189 |
DOI: | 10.1039/c6lc00295a |