Neutron reflectometry on highly absorbing films and its application to 10 B 4 C-based neutron detectors

Author:

Piscitelli F.123,Khaplanov A.12,Devishvili A.4,Schmidt S.15,Höglund C.15,Birch J.5,Dennison A. J. C.26,Gutfreund P.2,Hall-Wilton R.17,Van Esch P.2

Affiliation:

1. European Spallation Source ERIC, PO Box 176, Lund 22100, Sweden

2. Institut Laue-Langevin (ILL), 71, Avenue des Martyrs, Grenoble 38042, France

3. Department of Physics, University of Perugia, Piazza Università 1, Perugia 06123, Italy

4. Ruhr-Universität Bochum, Bochum 44780, Germany

5. Thin Film Physics Division, Linköping University, Linköping 58183, Sweden

6. Department of Physics and Astronomy, Uppsala University, BP 516, Uppsala 75120, Sweden

7. Mid-Sweden University, Sundsvall 85170, Sweden

Abstract

Neutron reflectometry is a powerful tool used for studies of surfaces and interfaces. The absorption in the typical studied materials is neglected and this technique is limited only to the reflectivity measurement. For strongly absorbing nuclei, the absorption can be directly measured by using the neutron-induced fluorescence technique which exploits the prompt particle emission of absorbing isotopes. This technique is emerging from soft matter and biology where highly absorbing nuclei, in very small quantities, are used as a label for buried layers. Nowadays, the importance of absorbing layers is rapidly increasing, partially because of their application in neutron detection; a field that has become more active also due to the 3 He -shortage. We extend the neutron-induced fluorescence technique to the study of layers of highly absorbing materials, in particular 10 B 4 C. The theory of neutron reflectometry is a commonly studied topic; however, when a strong absorption is present the subtle relationship between the reflection and the absorption of neutrons is not widely known. The theory for a general stack of absorbing layers has been developed and compared to measurements. We also report on the requirements that a 10 B 4 C layer must fulfil in order to be employed as a converter in neutron detection.

Funder

Knut och Alice Wallenbergs Stiftelse

European Commission 7th Framework Programme Grant Agreement

BrightnESS project

Carl Tryggers Stiftelse för Vetenskaplig Forskning

Svenska Forskningsrådet Formas

Publisher

The Royal Society

Subject

General Physics and Astronomy,General Engineering,General Mathematics

Cited by 9 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Structural and component characterization of the B4C neutron conversion layer deposited by magnetron sputtering;Nuclear Engineering and Technology;2023-09

2. Magnetron sputtering system for depositing boron carbide film use as neutron detection;Review of Scientific Instruments;2023-09-01

3. Theoretical Study of Neutron Reflection from Thin Films and Layered Nanostructures Containing Highly Absorbing Gadolinium and Boron Isotopes;Journal of Surface Investigation: X-ray, Synchrotron and Neutron Techniques;2023-08

4. Theoretical Study of Neutron Reflection from Thin Films and Layered Nanostructures Containing Highly Absorbing Gadolinium and Boron Isotopes;Поверхность. Рентгеновские, синхротронные и нейтронные исследования;2023-08-01

5. Neutron detection techniques from μeV to GeV;Physics Reports;2020-09

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