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      Imaging the inside of thick structures using cosmic rays

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          Abstract

          The authors present here a new method to image reinforcement elements inside thick structures and the results of a demonstration measurement performed on a mock-up wall built at Los Alamos National Laboratory. The method, referred to as "multiple scattering muon radiography", relies on the use of cosmic-ray muons as probes. The work described in this article was performed to prove the viability of the technique as a means to image the interior of the dome of Florence Cathedral Santa Maria del Fiore, one of the UNESCO World Heritage sites and among the highest profile buildings in existence. Its result shows the effectiveness of the technique as a tool to radiograph thick structures and image denser object inside them.

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          Most cited references22

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          Big-Bang Nucleosynthesis

          A critical review is given of the current status of cosmological nucleosynthesis. In the framework of the Standard Model with 3 types of relativistic neutrinos, the baryon-to-photon ratio, \(\eta\), corresponding to the inferred primordial abundances of deuterium and helium-4 is consistent with the independent determination of \(\eta\) from observations of anisotropies in the cosmic microwave background. However the primordial abundance of lithium-7 inferred from observations is significantly below its expected value. Taking systematic uncertainties in the abundance estimates into account, there is overall concordance in the range \(\eta = (5.7-6.7)\times 10^{-10}\) at 95% CL (corresponding to a cosmological baryon density \(\Omega_B h^2 = 0.021 - 0.025\)). The D and He-4 abundances, when combined with the CMB determination of \(\eta\), provide the bound \(N_\nu=3.28 \pm 0.28\) on the effective number of neutrino species. Other constraints on new physics are discussed briefly.
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            Molière's Theory of Multiple Scattering

            H. Bethe (1953)
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              Search for hidden chambers in the pyramids.

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                Author and article information

                Journal
                2016-01-06
                Article
                10.1063/1.4940897
                1601.01291
                52ef640a-e229-4855-8014-ada93d27a356

                http://arxiv.org/licenses/nonexclusive-distrib/1.0/

                History
                Custom metadata
                AIP Advances 6, 015213 (2016)
                physics.ins-det

                Technical & Applied physics
                Technical & Applied physics

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