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Low-coherence interferometer for contact lens surface metrology

机译:低相干干涉仪,用于隐形眼镜表面计量

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摘要

Contact lens performance depends on a number of lens properties. Many metrology systems have been developed to measure different aspects of a contact lens, but none test the surface figure in reflection to subwavelength accuracy. Interferometric surface metrology of immersed contact lenses is complicated by the close proximity of the surfaces, low surface reflectivity, and instability of the lens. An interferometer to address these issues was developed and is described here. The accuracy of the system is verified by comparison of glass reference sample measurements against a calibrated commercial interferometer. The described interferometer can accurately reconstruct large surface departures from spherical with reverse raytracing. The system is shown to have residual errors better than 0.05% of the measured surface departure for high slope regions. Measurements made near null are accurate to A/20. Spherical, toric, and bifocal soft contact lenses have been measured by this system and show characteristics of contact lenses not seen in transmission testing. The measurements were used to simulate a transmission map that matches an actual transmission test of the contact lens to λ/18.
机译:隐形眼镜的性能取决于许多镜片的性能。已经开发了许多度量系统来测量隐形眼镜的不同方面,但是没有一种系统能够测试表面图形反射到亚波长精度。浸入式隐形眼镜的干涉式表面计量学因其表面紧密接近,低表面反射率和镜片的不稳定性而变得复杂。开发了一种用于解决这些问题的干涉仪,并在此处进行介绍。通过将玻璃参考样品的测量值与经过校准的商用干涉仪进行比较,可以验证系统的准确性。所描述的干涉仪可以利用反向射线追踪准确地重建与球面的大表面偏离。对于高坡度区域,该系统的残留误差优于所测表面偏离的0.05%。接近零值的测量精确到A / 20。球形,复曲面和双焦点软性隐形眼镜已通过该系统进行了测量,并显示出在透射测试中未发现的隐形眼镜的特性。这些测量值用于模拟透射图,该图将隐形眼镜的实际透射测试与λ/ 18相匹配。

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