Novel muon imaging techniques

Author:

Yang Guangliang12ORCID,Clarkson Tony12,Gardner Simon12,Ireland David12,Kaiser Ralf12ORCID,Mahon David12ORCID,Jebali Ramsey Al12,Shearer Craig3,Ryan Matthew3

Affiliation:

1. School of Physics and Astronomy, University of Glasgow, Glasgow G12 8QQ, UK

2. Lynkeos Technology Ltd., University of Glasgow, Glasgow G12 8QQ, UK

3. National Nuclear Laboratory, Central Laboratory, Sellafield, Seascale, Cumbria CA20 1PG, UK

Abstract

Owing to the high penetrating power of high-energy cosmic ray muons, muon imaging techniques can be used to image large bulky objects, especially objects with heavy shielding. Muon imaging systems work just like CT scanners in the medical imaging field—that is, they can reveal information inside of a target. There are two forms of muon imaging techniques: muon absorption imaging and muon multiple scattering imaging. The former is based on the flux attenuation of muons, and the latter is based on the multiple scattering of muons in matter. The muon absorption imaging technique is capable of imaging very large objects such as volcanoes and large buildings, and also smaller objects like spent fuel casks; the muon multiple scattering imaging technique is best suited to inspect smaller objects such as nuclear waste containers. Muon imaging techniques can be applied in a broad variety of fields, i.e. from measuring the magma thickness of volcanoes to searching for secret cavities in pyramids, and from monitoring the borders of countries checking for special nuclear materials to monitoring the spent fuel casks for nuclear safeguards applications. In this paper, the principles of muon imaging are reviewed. Image reconstruction algorithms such as Filtered Back Projection and Maximum Likelihood Expectation Maximization are discussed. The capability of muon imaging techniques is demonstrated through a Geant4 simulation study for imaging a nuclear spent fuel cask. This article is part of the Theo Murphy meeting issue ‘Cosmic-ray muography’.

Funder

EPSRC and STFC Impact Accelerator Accounts at the University of Glasgow

Publisher

The Royal Society

Subject

General Physics and Astronomy,General Engineering,General Mathematics

Reference24 articles.

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