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Metamaterials for novel X- or gamma-ray detector designs

In the majority of X and gamma ray conversion detector heads there is generally a trade-off between the spatial and the energy resolution, as a good spatial resolution requires a high segmentation whereas a good energy resolution is obtained in a large enough detector volume to contain all the casca...

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Autor principal: Lecoq, P
Lenguaje:eng
Publicado: 2009
Materias:
Acceso en línea:http://cds.cern.ch/record/1267945
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author Lecoq, P
author_facet Lecoq, P
author_sort Lecoq, P
collection CERN
description In the majority of X and gamma ray conversion detector heads there is generally a trade-off between the spatial and the energy resolution, as a good spatial resolution requires a high segmentation whereas a good energy resolution is obtained in a large enough detector volume to contain all the cascade interactions generated by the incoming particle. The quest for better spatial resolution in all three dimensions for the majority of applications (High-energy physics and particle detectors, Spectrometry of low energy gamma-quanta, Medical imaging, Homeland security, Space applications) may lead to a huge increase of the number of readout channels, with all the associated problems of connectivity, detector integration and heat dissipation. This paper explores the potential of recent progress in the field of crystallogenesis, quantum dots and photonics crystals towards a new concept of X- and gamma-ray detector based on metamaterials to simultaneously record with high precision the maximum of information of the cascade conversion process such as its direction, the spatial distribution of the energy deposition and its composition in terms of electromagnetic, charged and neutral hadron contents (for high energy).
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institution Organización Europea para la Investigación Nuclear
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spelling cern-12679452019-09-30T06:29:59Zhttp://cds.cern.ch/record/1267945engLecoq, PMetamaterials for novel X- or gamma-ray detector designsHealth Physics and Radiation EffectsIn the majority of X and gamma ray conversion detector heads there is generally a trade-off between the spatial and the energy resolution, as a good spatial resolution requires a high segmentation whereas a good energy resolution is obtained in a large enough detector volume to contain all the cascade interactions generated by the incoming particle. The quest for better spatial resolution in all three dimensions for the majority of applications (High-energy physics and particle detectors, Spectrometry of low energy gamma-quanta, Medical imaging, Homeland security, Space applications) may lead to a huge increase of the number of readout channels, with all the associated problems of connectivity, detector integration and heat dissipation. This paper explores the potential of recent progress in the field of crystallogenesis, quantum dots and photonics crystals towards a new concept of X- and gamma-ray detector based on metamaterials to simultaneously record with high precision the maximum of information of the cascade conversion process such as its direction, the spatial distribution of the energy deposition and its composition in terms of electromagnetic, charged and neutral hadron contents (for high energy).oai:cds.cern.ch:12679452009
spellingShingle Health Physics and Radiation Effects
Lecoq, P
Metamaterials for novel X- or gamma-ray detector designs
title Metamaterials for novel X- or gamma-ray detector designs
title_full Metamaterials for novel X- or gamma-ray detector designs
title_fullStr Metamaterials for novel X- or gamma-ray detector designs
title_full_unstemmed Metamaterials for novel X- or gamma-ray detector designs
title_short Metamaterials for novel X- or gamma-ray detector designs
title_sort metamaterials for novel x- or gamma-ray detector designs
topic Health Physics and Radiation Effects
url http://cds.cern.ch/record/1267945
work_keys_str_mv AT lecoqp metamaterialsfornovelxorgammaraydetectordesigns