Atomic resolution elemental mapping using energy-filtered imaging scanning transmission electron microscopy with chromatic aberration correction
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Atomic resolution elemental mapping using energy-filtered imaging scanning transmission electron microscopy with chromatic aberration correction

机译:采用能量滤波成像扫描透射电子显微镜与色差校正的原子分辨率元素映射

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Highlights ? This paper addresses a novel approach to atomic resolution elemental mapping. ? Approach is immune to spatial incoherence in the electron source. ? Also immune to coherent aberrations in the probe forming lens and probe jitter. ? Substantially reduces the preservation of elastic contrast relative to EFTEM. ? Application is demonstrated in a proof-of-principle study on strontium titanate. Abstract This paper addresses a novel approach to atomic resolution elemental mapping, demonstrating a method that produces elemental maps with a similar resolution to the established method of electron energy-loss spectroscopy in scanning transmission electron microscopy. Dubbed energy-filtered imaging scanning transmission electron microscopy (EFISTEM) this mode of imaging is, by the quantum mechanical principle of reciprocity, equivalent to tilting the probe in energy-filtered transmission electron microscopy (EFTEM) through a cone and incoherently averaging the results. In this paper we present a proof-of-principle EFISTEM experimental study on strontium titanate. The present approach, made possible by chromatic aberration correction, has the advantage that it provides elemental maps which are immune to spatial incoherence in the electron source, coherent aberrations in the probe-forming lens and probe jitter. The veracity of the experiment is supported by quantum mechanical image simulations, which provide an insight into the image-forming process. Elemental maps obtained in EFTEM suffer from the effect known as preservation of elastic contrast, which, for example, can lead to a given atomic species appearing to be in atomic columns where it is not to be found. EFISTEM very substantially reduces the preservation of elastic contrast and yields images which show stability of contrast with changing thickness. The experimental application is demonstrated in a proof-of-principle study on strontium titanate. ]]>
机译:<![cdata [ 亮点 本文解决了原子分辨率元素映射的新方法。 方法在电子源中的空间间隙免受空间不连结。 在探针形成镜头和探针抖动中的相干像差也免疫。 大大减少了相对于EFTEM的保存弹性对比度。 应用程序在钛酸锶的原则上证明。 < / ce:摘要> 抽象 纸张解决了原子分辨率元素映射的新方法,证明了一种方法,该方法产生具有与扫描透射电子显微镜扫描扫描透射电子显微镜中的电子能损光谱法的相似分辨率的元素映射。被称为能量过滤的成像扫描透射电子显微镜(EFISTEM)这种成像模式通过往复式的量子机械原理,相当于通过锥体倾斜能量过滤电子显微镜(EFTEM)并不混合平均结果。在本文中,我们提出了钛酸锶的原则上的efistem实验研究。通过色差校正使得可能的方法具有优点:它提供了在电子源,探针形成透镜和探针抖动中的电子源中的空间间隙不相干的元素映射。实验的真实性由量子机械图像模拟支持,这提供了对图像形成过程的洞察力。 EFTEM中获得的元素映射患有称为弹性对比度的效果,例如,可以导致出现在不发现的原子柱中的给定原子物质。 EFISTEM非常大大减少了弹性对比度的保存,并产生了与变化厚度对比度的图像。实验申请表明在钛酸锶上的原则上研究。 ]]>

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