Muography: overview and future directions

Author:

Kaiser Ralf12ORCID

Affiliation:

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

2. Lynkeos Technology Ltd., Abbotsford Business Park, 8 Lammermoor Avenue, Falkirk FK2 7ZS, UK

Abstract

Cosmic-ray muography uses high-energy particles for imaging applications that are produced by cosmic rays in particle showers in the Earth's atmosphere. This technology has developed rapidly over the last 15 years, and it is currently branching out into many different applications and moving from academic research to commercial application. As in any new sub-field of research and technology, the nomenclature of the field itself is still developing and has not settled yet as new aspects of the field are appearing and with them the terms to describe them. This overview of the field of muography is not going to focus on the physics, on the reconstruction algorithms or on the involved detector technology. Detailed papers on these aspects are included in this issue of Philosophical Transactions A and I will refer to them. Instead, I will give an overview of the field as it is now, in 2018, and try to give an idea of the future directions in this field as I see them. This article is part of the Theo Murphy meeting issue ‘Cosmic-ray muography’.

Funder

Innovate UK, STFC and EPSRC

Publisher

The Royal Society

Subject

General Physics and Astronomy,General Engineering,General Mathematics

Reference25 articles.

1. Über den Ursprung der durchdringenden Strahlung;Hess VF;Phys. Z,1913

2. Note on the Nature of Cosmic-Ray Particles

3. Search for hidden chambers in the pyramids;Alvarez LW;Sci. New Series.,1970

4. Cosmic rays measure overburden of tunnel;George EP;Commonwealth Engineer,1955

5. Observation of the cosmic-ray shadow of the Moon with IceCube

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