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High-resolution STEM imaging with a quadrant detector Conditions for differential phase contrast microscopy in the weak phase object approximation

机译:象限检测器的高分辨率STEM成像弱相目标近似下差分相衬显微镜的条件

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Differential phase contrast is a contrast mechanism that can be utilized in the scanning transmission electron microscope (STEM) to determine the distribution of magnetic or electric Fields. In practice, several different detector geometries can be used to obtain differential phase contrast. As recent high resolution differential phase contrast experiments with the STEM are focused on ring quadrant detectors, we evaluate the contrast transfer characteristics of different quadrant detector geometries, namely two ring quadrant detectors with different inner detector angles and a conventional quadrant detector, by calculating the Corresponding phase gradient transfer functions. For an ideal microscope and a weak phase object, this can be done analytically. The calculated phase gradient transfer functions indicate that the barely illuminated ring quadrant detector setup used for imaging magnetic fields in the specimen reduces the resolution limit to about 2.5 angstrom for an aberration corrected STEM. Our results show that the resolution can be drastically improved by using a conventional quadrant detector instead. (C) 2014 Elsevier B.V. All rights reserved.
机译:差分相衬是一种可以在扫描透射电子显微镜(STEM)中用于确定磁场或电场分布的对比机制。实际上,可以使用几种不同的检测器几何形状来获得差分相位对比。由于最近使用STEM进行的高分辨率微分相位对比实验都集中在环形象限探测器上,我们通过计算相应的象素来评估不同象限探测器几何形状(即两个具有不同内部探测器角度的环形象限探测器和一个常规象限探测器)的对比度转移特性相梯度传递函数。对于理想的显微镜和弱相对象,可以通过分析来完成。计算出的相位梯度传递函数表明,用于像差校正的STEM的用于对样本中的磁场进行成像的几乎不发光的环形象限检测器设置将分辨率限制降低到约2.5埃。我们的结果表明,通过使用常规象限检测器可以大大提高分辨率。 (C)2014 Elsevier B.V.保留所有权利。

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