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Reconstructing state mixtures from diffraction measurements

机译:通过衍射测量重建状态混合物

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摘要

Progress in imaging and metrology depends on exquisite control over and comprehensive characterization of wave fields. As reflected in its name, coherent diffractive imaging relies on high coherence when reconstructing highly resolved images from diffraction intensities alone without the need for image-forming lenses. Fully coherent light can be described adequately by a single pure state. Yet partial coherence and imperfect detection often need to be accounted for, requiring statistical optics or the superposition of states. Furthermore, the dynamics of samples are increasingly the very objectives of experiments. Here we provide a general analytic approach to the characterization of diffractive imaging systems that can be described as low-rank mixed states. We use experimental data and simulations to show how the reconstruction technique compensates for and characterizes various sources of decoherence quantitatively. Based on ptychography, the procedure is closely related to quantum state tomography and is equally applicable to high-resolution microscopy, wave sensing and fluctuation measurements. As a result, some of the most stringent experimental conditions in ptychography can be relaxed, and susceptibility to imaging artefacts is reduced. Furthermore, the method yields high-resolution images of mixed states within the sample, which may include quantum mixtures or fast stationary stochastic processes such as vibrations, switching or steady flows.
机译:成像和计量学的进步取决于对波场的精确控制和全面表征。顾名思义,相干衍射成像仅凭衍射强度即可重建高分辨图像,而无需成像透镜。完全相干的光可以用一个纯状态充分描述。然而,通常需要考虑部分相干性和不完善的检测,这需要统计光学或状态的叠加。此外,样品的动力学越来越成为实验的目标。在这里,我们为衍射成像系统的表征提供了一种通用的分析方法,可将其描述为低阶混合态。我们使用实验数据和仿真来显示重建技术如何定量补偿和表征各种退相干源。该程序基于谱图技术,与量子状态层析成像技术密切相关,同样适用于高分辨率显微镜,波感测和波动测量。结果,可以放松声谱图中某些最严格的实验条件,并降低了对成像伪像的敏感性。此外,该方法还可以生成样品内混合状态的高分辨率图像,其中可能包括量子混合物或快速固定的随机过程,例如振动,转换或稳定流动。

著录项

  • 来源
    《Nature》 |2013年第7435期|68-71|共4页
  • 作者单位

    Physics Department, Technische Universitaet Muenchen, 85748 Garching bei Muenchen, Germany;

    Paul Scherrer Institut, 5232 Villigen PSI, Switzerland;

  • 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);美国《化学文摘》(CA);
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  • 正文语种 eng
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