论文标题
使用扭曲的列液晶的精确极化制备和测量
Accurate polarization preparation and measurement using twisted nematic liquid crystals
论文作者
论文摘要
发光的特定极化状态,自由度极化程度的编码信息以及对未知极化的有效测量是光学计量学,光学通信,对极化敏感成像和光子信息处理的关键任务。事实证明,液晶设备对于这些任务是必不可少的,尽管它们的精度有限,并且对自定义设计的要求施加了实际适用性的限制。在这里,我们报告了使用从公共扭曲列明液晶状体显示的液晶细胞进行的快速制备和以前所未有的精度检测极化状态。为了验证设备的性能,我们使用它来准备数十个平均富度0.999(1)和平均角度偏差0.5(3)度的极化状态。使用四项预测最小断层扫描以及六项投影Pauli测量,我们使用报告的设备,平均忠诚度为0.999(1),我们测量了极化状态。极化测量数据通过最大似然方法处理,以达到极化状态的有效估计。除了在经典的极化法中应用外,我们还采用了据报道的液晶装置,以完全层状表征对三模式的格林伯格(Horne-Horne-horne-Zeilinger-Zeilinger-Zeilinger-Zeilinger)纠缠,由光子量子处理器产生。
Generation of particular polarization states of light, encoding information in polarization degree of freedom, and efficient measurement of unknown polarization are the key tasks in optical metrology, optical communications, polarization-sensitive imaging, and photonic information processing. Liquid crystal devices have proved to be indispensable for these tasks, though their limited precision and the requirement of a custom design impose a limit of practical applicability. Here we report fast preparation and detection of polarization states with unprecedented accuracy using liquid-crystal cells extracted from common twisted nematic liquid-crystal displays. To verify the performance of the device we use it to prepare dozens of polarization states with average fidelity 0.999(1) and average angle deviation 0.5(3) deg. Using four-projection minimum tomography as well as six-projection Pauli measurement, we measure polarization states employing the reported device with the average fidelity of 0.999(1). Polarization measurement data are processed by the maximum likelihood method to reach a valid estimate of the polarization state. In addition to the application in classical polarimetry, we also employ the reported liquid-crystal device for full tomographic characterization of a three-mode Greenberger--Horne--Zeilinger entangled state produced by a photonic quantum processor.