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High-contrast imaging of 180° ferroelectric domains by optical microscopy using ferroelectric liquid crystals

机译:使用铁电液晶光学显微镜高对比度成像180°铁电畴

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摘要

Ferroelectric liquid crystals (FLCs) couple the direction of their spontaneous electric polarization to the direction of tilt of their optic axis. Consequently, reversal of the electric polarization by an electric field gives rise to an immediate and lasting optical response when an appropriately aligned FLC is observed between crossed polarizers, with one field direction yielding a dark image and the opposite direction yielding a bright image. Here, this peculiar electro-optic response is used to image, with high optical contrast, 180° ferroelectric domains in a crystalline substrate of magnesium-doped lithium niobate. The lithium niobate substrate contains a few domains with upward electric polarization surrounded by regions with downward electric polarization. In contrast to a reference non-chiral liquid crystal that is unable to show ferroelectric behavior due to its high symmetry, the FLC, which is used as a thin film confined between the lithium niobate substrate and an inert aligning substrate, reveals ferroelectric domains as well as their boundaries, with strong black and white contrast. The results show that FLCs can be used for non-destructive readout of domains in underlying ferroelectrics, with potential applications in, e.g., photonic devices and non-volatile ferroelectric memories.
机译:铁电液晶(FLC)将其自发电极的方向耦合到其光学轴的倾斜方向。因此,当在交叉的偏振器之间观察到适当对准的FLC时,电场通过电场的电极的反转产生立即和持久的光学响应,其中一个场方向产生暗图像,相反的方向产生明亮的图像。这里,这种特殊的电光响应用于图像,具有高光学对比度,180°铁电域中的镁掺杂锂铌酸锂的结晶基板中。铌酸锂基质含有一些具有向上电极化的域,由具有向下电极化的区域包围。与由于其高对称性而无法显示出铁电行为的参考非手性液晶相反,使用用作锂铌酸锂基板和惰性对准基板之间的薄膜的FLC也揭示了铁电畴作为他们的界限,具有强烈的黑白对比。结果表明,FLC可用于潜在的铁电解中的域的非破坏性读数,具有潜在的应用,例如光子器件和非易失性铁电存储器。

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  • 来源
    《Applied Physics Letters》 |2020年第21期|212901.1-212901.5|共5页
  • 作者单位

    Department of Materials Science University of Cambridge 27 Charles Babbage Road Cambridge CB3 OFS United Kingdom;

    Department of Physics and Materials Science University of Luxembourg 162a Avenue de la Faieencerie 1511 Luxembourg Luxembourg Materials Research and Technology Department Luxembourg Institute of Sciences and Technology 41 rue du Brill 4422 Belvaux Luxembourg;

    Department of Physics and Materials Science University of Luxembourg 162a Avenue de la Faieencerie 1511 Luxembourg Luxembourg;

    Department of Materials Science University of Cambridge 27 Charles Babbage Road Cambridge CB3 OFS United Kingdom;

    Centre of Molecular Materials for Photonics and Electronics Electrical Engineering Division Department of Engineering University of Cambridge 9 JJ Thomson Avenue Cambridge CB3 OFA United Kingdom;

    Department of Physics and Materials Science University of Luxembourg 162a Avenue de la Faieencerie 1511 Luxembourg Luxembourg;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 22:17:56

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