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New functionalities of potassium tantalate niobate deflectors enabled by the coexistence of pre-injected space charge and composition gradient

机译:预先注入的空间电荷和组分梯度的共存实现了钽酸钾铌酸盐偏转器的新功能

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摘要

In most beam steering applications such as 3D printing and in vivo imaging, one of the essential challenges has been high-resolution high-speed multi-dimensional optical beam scanning. Although the pre-injected space charge controlled potassium tantalate niobate (KTN) deflectors can achieve speeds in the nanosecond regime, they deflect in only one dimension. In order to develop a high-resolution high-speed multi-dimensional KTN deflector, we studied the deflection behavior of KTN deflectors in the case of coexisting pre-injected space charge and composition gradient. We find that such coexistence can enable new functionalities of KTN crystal based electro-optic deflectors. When the direction of the composition gradient is parallel to the direction of the external electric field, the zero-deflection position can be shifted, which can reduce the internal electric field induced beam distortion, and thus enhance the resolution. When the direction of the composition gradient is perpendicular to the direction of the external electric field, two-dimensional beam scanning can be achieved by harnessing only one single piece of KTN crystal, which can result in a compact, high-speed two-dimensional deflector. Both theoretical analyses and experiments are conducted, which are consistent with each other. These new functionalities can expedite the usage of KTN deflection in many applications such as high-speed 3D printing, high-speed, high-resolution imaging, and free space broadband optical communication.
机译:在诸如3D打印和体内成像之类的大多数光束控制应用中,基本挑战之一是高分辨率高速多维光束扫描。尽管预注入的空间电荷控制的钽酸钾铌酸盐(KTN)偏转器可以达到纳秒级的速度,但它们仅在一个维度上偏转。为了开发高分辨率的高速多维KTN偏转器,我们研究了在预注入空间电荷和成分梯度共存的情况下KTN偏转器的偏转行为。我们发现这种共存可以实现基于KTN晶体的电光偏转器的新功能。当成分梯度的方向与外部电场的方向平行时,零偏位置可以移动,这可以减小内部电场引起的光束畸变,从而提高分辨率。当成分梯度的方向垂直于外部电场的方向时,仅利用一块KTN晶体就可以实现二维光束扫描,从而可以形成紧凑的高速二维偏转器。进行了理论分析和实验,这是相互一致的。这些新功能可以加快KTN偏转在许多应用中的使用,例如高速3D打印,高速,高分辨率成像和自由空间宽带光通信。

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  • 来源
    《Journal of Applied Physics》 |2017年第13期|133111.1-133111.9|共9页
  • 作者单位

    Department of Electric Engineering, Penn State University, University Park, PA, United States;

    Department of Electric Engineering, Penn State University, University Park, PA, United States;

    Department of Electric Engineering, Penn State University, University Park, PA, United States;

    Department of Electric Engineering, Penn State University, University Park, PA, United States;

    Department of Electric Engineering, Penn State University, University Park, PA, United States;

    Department of Electric Engineering, Penn State University, University Park, PA, United States;

    Army Research Laboratory, 2800 Powder Mill Rd., Adelphi, MD, United States;

  • 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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