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Optimized Stokes polarimeters based on a single twisted nematic liquid-crystal device for the minimization of noise propagation

机译:基于单个扭曲向列液晶设备的优化斯托克斯旋光仪,可将噪声传播降至最低

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This work evidences the suitability of applying a single twisted nematic liquid-crystal (TN-LC) device to obtain dynamic polarimeters with high accuracy and repeatability. Different Stokes polarimeter setups based on a TN-LC device are optimized, leading to the minimization of the noise propagated from intensity measurements to the Stokes vector calculations. To this aim, we revise the influence of working out of normal incidence and of performing a double pass of the light beam through the LC device. In addition, because transmissive TN-LC devices act as elliptical retarders, an extra study is performed. It analyzes the influence of projecting the light exiting from the TN-LC device over elliptical states of polarization. Finally, diverse optimized polarimeters are experimentally implemented and validated by measuring different states of partially and fully polarized light. The analysis is conducted both for monochromatic (He-Ne laser) and LED light sources, proving the potential of polarimeters based on a single TN-LC device.
机译:这项工作证明了使用单个扭曲向列液晶(TN-LC)装置来获得具有高精度和可重复性的动态偏振计的适用性。优化了基于TN-LC设备的不同Stokes旋光仪设置,从而使从强度测量传播到Stokes矢量计算的噪声最小化。为了这个目的,我们修正了影响不入射光和使光束两次通过LC装置的影响。此外,由于透射式TN-LC器件可作为椭圆形延迟器,因此需要进行额外的研究。它分析了将从TN-LC器件出射的光投射到椭圆偏振态的影响。最后,通过测量部分和完全偏振光的不同状态,通过实验实现并验证了各种优化的旋光仪。对单色(氦氖激光器)和LED光源都进行了分析,证明了基于单个TN-LC设备的偏振计的潜力。

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