Active compensation of extrinsic polarization errors using adaptive optics
Yuanyuan Dai, Chao He, Jingyu Wang, Raphaël Turcotte, Lewis Fish, Matthew Wincott, Qi Hu, Martin J. Booth
Abstract
Yuanyuan Dai, Chao He, Jingyu Wang, Raphaël Turcotte, Lewis Fish, Matthew Wincott, Qi Hu, Martin J. Booth
Abstract
We present a scheme for active compensation of complex extrinsic polarization perturbations introduced into an optical system. Imaging polarimeter is used to measure the polarization state across a beam profile and a liquid crystal spatial light modulator controls the polarization of the input beam. A sequence of measurements permits determination of the birefringence properties of a perturbing specimen. The necessary correction is calculated and fed back to the polarization modulator to compensate for the polarization perturbation. The system capabilities are demonstrated on a range of birefringent specimens.
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We present a scheme for active compensation of complex extrinsic polarization perturbations introduced into an optical system. Imaging polarimeter is used to measure the polarization state across a beam profile and a liquid crystal spatial light modulator controls the polarization of the input beam. A sequence of measurements permits determination of the birefringence properties of a perturbing specimen. The necessary correction is calculated and fed back to the polarization modulator to compensate for the polarization perturbation. The system capabilities are demonstrated on a range of birefringent specimens.
Key concepts: Optics, Polarimeter, Birefringence, Polarization (electrochemistry), Polarization rotator, Radial polarization, Physics, Light beam