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Development of a PbWO4 Detector for Single-Shot Positron Annihilation Lifetime Spectroscopy at the GBAR Experiment

Kim, B. H. (author)
Choi, J. J. (author)
Chung, M. (author)
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Clade, P. (author)
Comini, P. (author)
Crivelli, P. (author)
Crepin, P.-P. (author)
Dalkarov, O. (author)
Debu, P. (author)
Dodd, L. (author)
Douillet, A. (author)
Froehlich, P. (author)
Stockholms universitet,Fysikum
Guellati, S. (author)
Heinrich, J. (author)
Hervieux, P.-A. (author)
Hilico, L. (author)
Husson, A. (author)
Indelicato, P. (author)
Janka, G. (author)
Jonsell, Svante (author)
Stockholms universitet,Fysikum
Karr, J.-P. (author)
Kim, E.-S. (author)
Kim, S. K. (author)
Ko, Y. (author)
Kosinski, T. (author)
Kuroda, N. (author)
Latacz, B. (author)
Lee, H. (author)
Lee, J. (author)
Leite, A. M. M. (author)
Lim, E. (author)
Liszkay, L. (author)
Louvradoux, T. (author)
Lunney, D. (author)
Leveque, K. (author)
Manfredi, G. (author)
Mansoulie, B. (author)
Matusiak, M. (author)
Mornacchi, G. (author)
Nesvizhevsky, V. V. (author)
Nez, F. (author)
Niang, S. (author)
Nishi, R. (author)
Nourbaksh, S. (author)
Lotrus, P. (author)
Park, K. H. (author)
Paul, N. (author)
Perez, P. (author)
Radics, B. (author)
Regenfus, C. (author)
Reynaud, S. (author)
Rousse, J.-Y. (author)
Rubbia, A. (author)
Rzadkiewicz, J. (author)
Sacquin, Y. (author)
Schmidt-Kaler, F. (author)
Staszczak, M. (author)
Tuchming, B. (author)
Vallage, B. (author)
van der Werf, D. P. (author)
Voronin, A. (author)
Welker, A. (author)
Wolf, S. (author)
Won, D. (author)
Wronka, S. (author)
Yamazaki, Y. (author)
Yoo, K.-H. (author)
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 (creator_code:org_t)
2020
2020
English.
In: Acta Physica Polonica. A. - 0587-4246 .- 1898-794X. ; 137:2, s. 122-125
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • We have developed a PbWO4 (PWO) detector with a large dynamic range to measure the intensity of a positron beam and the absolute density of the ortho-positronium (o-Ps) cloud it creates. A simulation study shows that a setup based on such detectors may be used to determine the angular distribution of the emission and reflection of o-Ps to reduce part of the uncertainties of the measurement. These will allow to improve the precision in the measurement of the cross-section for the (anti)hydrogen formation by (anti)proton-positronium charge exchange and to optimize the yield of antihydrogen ion which is an essential parameter in the GBAR experiment.

Subject headings

NATURVETENSKAP  -- Fysik (hsv//swe)
NATURAL SCIENCES  -- Physical Sciences (hsv//eng)

Publication and Content Type

ref (subject category)
art (subject category)

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