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用于中性原子束的约束线性单色仪设计的优化

Optimization of a constrained linear monochromator design for neutral atom beams.

作者信息

Kaltenbacher Thomas

机构信息

Department of Physics and Technology, University of Bergen, Allégaten 55, 5007 Bergen, Norway.

出版信息

Ultramicroscopy. 2016 Apr;163:62-8. doi: 10.1016/j.ultramic.2016.02.003. Epub 2016 Feb 22.

DOI:10.1016/j.ultramic.2016.02.003
PMID:26922370
Abstract

A focused ground state, neutral atom beam, exploiting its de Broglie wavelength by means of atom optics, is used for neutral atom microscopy imaging. Employing Fresnel zone plates as a lens for these beams is a well established microscopy technique. To date, even for favorable beam source conditions a minimal focus spot size of slightly below 1μm was reached. This limitation is essentially given by the intrinsic spectral purity of the beam in combination with the chromatic aberration of the diffraction based zone plate. Therefore, it is important to enhance the monochromaticity of the beam, enabling a higher spatial resolution, preferably below 100nm. We propose to increase the monochromaticity of a neutral atom beam by means of a so-called linear monochromator set-up - a Fresnel zone plate in combination with a pinhole aperture - in order to gain more than one order of magnitude in spatial resolution. This configuration is known in X-ray microscopy and has proven to be useful, but has not been applied to neutral atom beams. The main result of this work is optimal design parameters based on models for this linear monochromator set-up followed by a second zone plate for focusing. The optimization was performed for minimizing the focal spot size and maximizing the centre line intensity at the detector position for an atom beam simultaneously. The results presented in this work are for, but not limited to, a neutral helium atom beam.

摘要

一种聚焦基态中性原子束,通过原子光学利用其德布罗意波长,用于中性原子显微镜成像。采用菲涅耳波带片作为这些束的透镜是一种成熟的显微镜技术。迄今为止,即使在有利的束源条件下,也只能达到略低于1μm的最小焦斑尺寸。这种限制主要是由束的固有光谱纯度与基于衍射的波带片的色差共同造成的。因此,提高束的单色性很重要,这能够实现更高的空间分辨率,最好低于100nm。我们提议通过一种所谓的线性单色仪装置——一个菲涅耳波带片与一个针孔孔径相结合——来提高中性原子束的单色性,以便在空间分辨率上获得超过一个数量级的提升。这种配置在X射线显微镜中是已知的,并且已被证明是有用的,但尚未应用于中性原子束。这项工作的主要成果是基于该线性单色仪装置模型以及用于聚焦的第二个波带片的最佳设计参数。优化是为了同时最小化原子束在探测器位置的焦斑尺寸并最大化中心线强度而进行的。这项工作中给出的结果适用于但不限于中性氦原子束。

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