The application of a rotating-wave-plate stokes polarimeter for measurement of the optical rotation angle |
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Authors: | Jing-Fung Lin Jyh-Shyang Wu Te-Tan Liao |
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Affiliation: | a Department of Computer Application Engineering, Far East University, No. 49, Jhonghua Road, Hsin-Shih Township, Tainan County 744, Taiwan b Department of Energy Application Engineering, Far East University, No. 49, Jhonghua Road, Hsin-Shih Township, Tainan County 744, Taiwan c Department of Automation and Control Engineering, Far East University, No. 49, Jhonghua Road, Hsin-Shih Township, Tainan County 744, Taiwan d Graduate School of Mechanical Engineering, Far East University, No. 49, Jhonghua Road, Hsin-Shih Township, Tainan County 744, Taiwan |
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Abstract: | An optical scheme based on Stokes-Mueller formalism and rotating-wave-plate Stokes polarimeter is successfully developed to measure the optical rotation angle in a chiral medium. The average relative error in the measured rotation angle of a half-wave plate is determined to be 1.16%. The average relative error in the measured rotation angles of glucose solutions with concentrations ranging from 0 to 1.2 g/dl is determined to be 3.78%. The correlation coefficient between the measured rotation angle and the glucose concentration is found to be 0.99950, while the standard deviation is just 0.00376°. From the inspection of measured rotation angle in the sol-gel materials containing C17H17ClO6 with concentrations ranging from 0 to 0.0665 g/ml, the average relative error in the measured rotation angles is determined to be 3.63%. Consequently, the derived algorithm for measuring the rotation angle of a chiral medium is feasible, and the developed system is evaluated with a precision of 5.4% approximately in rotation angle measurement. |
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Keywords: | Chiral medium Circular birefringence Optical rotation Stokes parameters |
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