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Birefringent phase demodulator: application to wave plate characterization

机译:双折射相位解调器:在波片表征中的应用

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摘要

The scope of this work is to present a phase demodulator that enables the recovery of temporal phase information contained in the phase difference between two signals with different polarizations. This demodulator is a polarization interferometer that may consist only of a uniaxial crystal slab and a polarizer sheet. The phase shift between two orthogonal components of the electric field is translated into space by means of birefringent crystals, which act as demodulators or phase analyzers with great robustness. The experimental scheme utilized is based on a simple conoscopic interference setup. Each portion of the space in which the interference pattern is projected contains not only the unknown temporal phase we want to recover, but also a phase shift due to the uniaxial crystal itself. The underlying idea is developing simultaneous phase shifting with uniaxial crystals. Thus, different phase recovery techniques can be applied in order to maximize their ability to track high-speed signals. Depending on the characteristics of the fringe pattern, it will permit phase recovery via different classical procedures. In order to prove the demodulator under different experimental and signal processing schemes, we employed it for wave plate characterization. The results obtained not only allow some wave plate features such as axes determination and retardance to be characterized, but also prove the working principle and capabilities of the demodulator. (c) 2015 Optical Society of America
机译:这项工作的范围是提出一种相位解调器,该解调器能够恢复包含在具有不同极化的两个信号之间的相位差中的时间相位信息。该解调器是偏振干涉仪,可以仅由单轴晶体平板和偏振片组成。电场的两个正交分量之间的相移通过双折射晶体转换为空间,该双折射晶体具有很高的鲁棒性,可充当解调器或相位分析器。所采用的实验方案基于简单的锥镜干涉设置。投影干涉图样的空间的每个部分不仅包含我们要恢复的未知时间相位,而且还包含由于单轴晶体本身引起的相移。基本思想是开发单轴晶体的同时相移。因此,可以应用不同的相位恢复技术以便最大化其跟踪高速信号的能力。取决于条纹图案的特征,它将允许通过不同的经典步骤进行相恢复。为了验证解调器在不同的实验和信号处理方案下的性能,我们将其用于波片表征。获得的结果不仅可以表征某些波片特征,例如轴确定和延迟,而且可以证明解调器的工作原理和功能。 (c)2015年美国眼镜学会

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