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      Fast neutron sensitivity of neutron detectors based on boron-10 converter layers

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          Abstract

          In the last few years many detector technologies for thermal neutron detection have been developed in order to face the shortage of 3He, which is now much less available and more expensive. Moreover the 3He-based detectors can not fulfil the requirements in performance, e.g. the spatial resolution and the counting rate capability needed for the new instruments. The Boron-10-based gaseous detectors have been proposed as a suitable choice. This and other alternatives technologies are being developed at ESS. Higher intensities mean higher signals but higher background as well. The signal-to-background ratio is an important feature to study, in particular the gamma-ray and the fast neutron contributions. This paper investigates, for the first time, the fast neutrons sensitivity of 10B-based thermal neutron detector. It presents the study of the detector response as a function of energy threshold and the underlying physical mechanisms. The latter are explained with the help of theoretical considerations and simulations.

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          Most cited references16

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          B4C thin films for neutron detection

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            The 10B based Jalousie neutron detector – An alternative for 3He filled position sensitive counter tubes

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              $^{10}{\rm B}_{4}{\rm C}\(Multi-Grid as an Alternative to \)^{3}{\rm He}$ for Large Area Neutron Detectors

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                Author and article information

                Journal
                15 December 2017
                Article
                1712.05614
                db3a2a6c-c8f7-43dc-a3d5-cdf43b8f40d8

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

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                Custom metadata
                physics.ins-det physics.app-ph

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