Neutron tomography instrument CONRAD at HZB

Neutron tomography instrument CONRAD at HZB
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DOI:
10.1016/j.nima.2011.01.067
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发表时间:
2011-09
影响因子:
1.4
通讯作者:
N. Kardjilov;A. Hilger;I. Manke;M. Strobl;M. Dawson;Scott Williams;J. Banhart
N. Kardjilov;A. Hilger;I. Manke;M. Strobl;M. Dawson;Scott Williams;J. Banhart
中科院分区:
物理与天体物理3区
文献类型:
--
作者:
N. Kardjilov;A. Hilger;I. Manke;M. Strobl;M. Dawson;Scott Williams;J. Banhart

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康拉德中子层析成像仪器自2005年以来一直在柏林亥姆霍兹中心的哈恩-迈特纳研究反应堆(HZB)运行。在过去的5年里,已经开展了大量的开发工作,以扩展光束线的射线和断层成像能力[1-3]。已经实施了新的技术,包括极化中子成像[4-9]、布拉格边缘映射[10,11]、高分辨率中子成像和光栅干涉测量法[12-15]。这些方法已提供给用户社区,作为帮助解决超导、材料研究、生命科学[16,17]、文化遗产和古生物学[18,19]等广泛主题的科学问题的工具。通过这些新的发展,包括燃料电池研究在内的工业应用也得到了改善。将介绍所开发的备选方案的说明和参数,以及突出的例子。
The neutron tomography instrument CONRAD has been in operation since 2005 at the Hahn-Meitner research reactor at Helmholtz-Zentrum Berlin (HZB). Over the last 5 years, significant developmental work has been performed to expand the radiographic and tomographic capabilities of the beamline [1–3]. New techniques have been implemented, including imaging with polarized neutrons [4–9], Bragg-edge mapping [10,11], high-resolution neutron imaging and grating interferometry [12–15]. These methods have been provided to the user community as tools to help address scientific problems over a broad range of topics such as superconductivity, materials research, life sciences [16,17], cultural heritage and paleontology [18,19]. Industrial applications including fuel cell research [20–27] have also been improved through these new developments. Descriptions and parameters of the developed options will be presented, along with prominent examples.