2011Laser TechnologyRequires access

Optimization of high precision rhomb-type achromatic retarders

Guoliang Li

Open publisher page 1 citations

Abstract

In order to improve precision of rhomb-type achromatic A/4 phase retarders,based on the positive and negative delay error of A/4 phase retarders and larger refractive index,high precision retarders were designed.The retarder was analyzed and validated in experiments,and the data of high precision λ/4 phase retarder were obtained.It is shown at the retardation curve within the range of 350nm to 2000nm that retardation is 90° at two wavelengths and the maximal retardance error is smaller than 0.04°.Comparing with conventional retarders,the new retarder not only extends achromatic range,but also improves achromatic precision.The results are helpful to design high precision λ/4 phase retarders.

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What this paper is about

In order to improve precision of rhomb-type achromatic A/4 phase retarders,based on the positive and negative delay error of A/4 phase retarders and larger refractive index,high precision retarders were designed.The retarder was analyzed and validated in experiments,and the data of high precision λ/4 phase retarder were obtained.It is shown at the retardation curve within the range of 350nm to 2000nm that retardation is 90° at two wavelengths and the maximal retardance error is smaller than 0.04°.Comparing with conventional retarders,the new retarder not only extends achromatic range,but also improves achromatic precision.The results are helpful to design high precision λ/4 phase retarders.

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Available abstract

In order to improve precision of rhomb-type achromatic A/4 phase retarders,based on the positive and negative delay error of A/4 phase retarders and larger refractive index,high precision retarders were designed.The retarder was analyzed and validated in experiments,and the data of high precision λ/4 phase retarder were obtained.It is shown at the retardation curve within the range of 350nm to 2000nm that retardation is 90° at two wavelengths and the maximal retardance error is smaller than 0.04°.Comparing with conventional retarders,the new retarder not only extends achromatic range,but also improves achromatic precision.The results are helpful to design high precision λ/4 phase retarders.

Key concepts: Achromatic lens, Retarder, Optics, Phase (matter), Wavelength, Refractive index, Range (aeronautics), Materials science

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