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Tunable angular shearing interferometer based on wedged liquid crystal cells

机译:基于楔形液晶细胞的可调谐角剪切干涉仪

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摘要

The concept of a liquid crystal wedge as a tunable angular shearing interferometer is introduced and demonstrated to combine both high stability and high tunability. Different wedges are fabricated from planar aligned nematic liquid crystal cells with thickness gradients. These wedges are shown to produce stable interferograms from the polarization interference between the ordinary and extraordinary waves propagating in different directions at the output of the cell. The fringe periods, ranging from 70 mu m to 1.25 mm, can be precisely controlled by a low voltage. Despite the wedge-shaped structure, no inhomogeneity has been detected when the wedge is driven adiabatically and the interferograms are uniform over regions as large as 5 x 5 mm. Moreover, dynamical measurements show that the wedges behave as a succession of multiple cells with different thickness, giving rise to a moving front of stabilizing fringes when driven dynamically. All the observations show that the device is suitable for large beam size and tunable shearing interferometry, with attractive features for applications such as phase sensing, photoalignment or photolithography. (C) 2017 Optical Society of America.
机译:介绍液晶楔形作为可调谐角度剪切干涉仪的概念,并证明了高稳定性和高可调性。不同的楔形物由具有厚度梯度的平面对齐的向列液晶单元制造。这些楔形件被示出为产生常见的干扰从在电池输出的不同方向上传播的普通和非凡波之间的偏振干扰。范围从70 mu m到1.25 mm的边缘周期可以精确地通过低电压控制。尽管楔形结构,当楔形驱动时,在绝热驱动时,没有检测到不均匀性,并且干涉图在大至5×5mm的区域上均匀。此外,动态测量表明,楔形的表现为具有不同厚度的多个电池的连续,在动态驱动时产生稳定条纹的移动前部。所有观察结果表明,该装置适用于大型光束尺寸和可调谐剪切干涉法,其具有吸引力的特征,用于诸如相位感测,光学或光刻的应用。 (c)2017年美国光学学会。

著录项

  • 来源
    《Applied optics》 |2017年第31期|共7页
  • 作者单位

    Univ Nice Sophia Antipolis CNRS Inst Phys Nice UMR 7010 1361 Route Lucioles F-06560 Valbonne France;

    Univ Nice Sophia Antipolis CNRS Inst Phys Nice UMR 7010 1361 Route Lucioles F-06560 Valbonne France;

    Univ Nice Sophia Antipolis CNRS Inst Phys Nice UMR 7010 1361 Route Lucioles F-06560 Valbonne France;

    Fastlite 1900 Route Cretes F-06560 Valbonne France;

    Univ Nice Sophia Antipolis CNRS Inst Phys Nice UMR 7010 1361 Route Lucioles F-06560 Valbonne France;

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  • 正文语种 eng
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