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Wavelength-scale errors in optical localization due to spin-orbit coupling of light

机译:光谱轨道耦合引起的波长尺度误差

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摘要

Far-field optical imaging techniques allow the determination of the position of point-like emitters and scatterers(1-3). Although the optical wavelength sets a fundamental limit to the image resolution of unknown objects, the position of an individual emitter can in principle be estimated from the image with arbitrary precision. This is used, for example, in the determination of the position of stars(4) or in optical super-resolution microscopy(5). Furthermore, precise position determination is an experimental prerequisite for the manipulation and measurement of individual quantum systems, such as atoms, ions and solid-state-based quantum emitters(6-8). Here we demonstrate that spin-orbit coupling of light in the emission of elliptically polarized emitters can lead to systematic, wavelength-scale errors in the estimation of the emitter's position. Imaging a single trapped atom as well as a single sub-wavelength-diameter gold nanoparticle, we demonstrate a shift between the emitters' measured and actual positions, which is comparable to the optical wavelength. For certain settings, the expected shift can become arbitrarily large. Beyond optical imaging techniques, our findings could be relevant for the localization of objects using any type of wave that carries orbital angular momentum relative to the emitter's position with a component orthogonal to the direction of observation.
机译:远场光学成像技术允许确定点状发射器和散射体(1-3)的位置。尽管光学波长为未知物体的图像分辨率设定基本限制,但是单个发射器的位置原则上可以从具有任意精度的图像估计。例如,在确定恒星(4)或光学超分辨率显微镜(5)的确定时使用该。此外,精确的位置测定是操纵和测量各个量子系统的实验前提条件,例如原子,离子和固态的量子发射器(6-8)。在这里,我们证明了椭圆偏振发射器的发射中光的旋转轨道耦合可以导致系统,波长级误差在发射器的位置估计。对单个被截留的原子和单个亚波长直径金纳米颗粒成像,我们证明了发射器测量的和实际位置之间的偏移,其与光学波长相当。对于某些设置,预期换档可以任意大。除了光学成像技术之外,我们的发现可以与使用相对于发射器的位置的轨道角动量的任何类型的波具有与观察方向正交的部件的轨道角动量的任何类型的波来相关。

著录项

  • 来源
    《Nature physics》 |2019年第1期|共7页
  • 作者单位

    Univ Innsbruck Inst Expt Phys Innsbruck Austria;

    TU Wien Atominst Vienna Ctr Quantum Sci &

    Technol Vienna Austria;

    Univ Innsbruck Inst Expt Phys Innsbruck Austria;

    Univ Innsbruck Inst Expt Phys Innsbruck Austria;

    TU Wien Atominst Vienna Ctr Quantum Sci &

    Technol Vienna Austria;

    Univ Innsbruck Inst Expt Phys Innsbruck Austria;

    TU Wien Atominst Vienna Ctr Quantum Sci &

    Technol Vienna Austria;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理学;
  • 关键词

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