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Liquid-crystal polarization state generator

机译:液晶偏振态发生器

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An important problem in imaging polarimetry occurs when the optical axis of the system and the center of the camera sensor get misaligned. This situation typically occurs after rotating the polarizing element mounts in order to change the input state of polarization. This work presents a liquid-crystal polarization state generator, devoid of moving parts, which can generate any arbitrary state of polarization (SOP) on the Poincare sphere through the phase-shift manipulation of two voltage-controlled variable retarders. The proposed optical system consists of a linear polarizer, cascaded by two liquid-crystal retarders (LCR1 and LCR2) and a quarter-wave plate. We show that by varying the retardance of LCR1 but keeping the LCR2 retardance constant, the SOP moves along the corresponding meridian of the Poincare sphere. When the reverse is done, the SOP follows a trajectory along the given parallel. Experimental results are compared to numerical simulations where we calculate the Stokes parameters and represent the trajectories of the SOP on the Poincare sphere as we change the voltage addressed to the LCRs. Good agreement between theory and experiment is obtained if we take into account the Fabry-Perot interference effects on these variable retarders. This system can also be used as a polarization state analyzer. To verify the performance of this system as analyzer, the Mueller Matrix of a retarder plate is determined by imaging polarimetry.
机译:当系统的光轴和相机传感器的中心未对准时,会发生成像偏振仪中的一个重要问题。这种情况通常发生在旋转偏振元件底座以改变偏振的输入状态之后。这项工作提出了一种没有运动部件的液晶偏振态发生器,该器件可以通过两个电压控制的可变延迟器的相移操作在庞加莱球上产生任何偏振态(SOP)。所提出的光学系统由线性偏振器组成,由两个液晶延迟器(LCR1和LCR2)和一个四分之一波片级联而成。我们表明,通过改变LCR1的延迟但保持LCR2的延迟恒定,SOP沿庞加莱球的相应子午线运动。完成相反操作后,SOP沿着给定的平行线遵循轨迹。将实验结果与数值模拟进行比较,在数值模拟中我们计算斯托克斯参数,并表示当我们更改寻址到LCR的电压时,庞加莱球上SOP的轨迹。如果我们考虑到Fabry-Perot对这些可变延迟器的干扰效应,则理论与实验之间将获得良好的一致性。该系统还可以用作偏振态分析仪。为了验证该系统作为分析仪的性能,通过成像偏振仪确定了缓速器板的穆勒矩阵。

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