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Title: Development of Γ-ray tracking detectors

Abstract

The next generation of 4π arrays for high-precision γ-ray spectroscopy AGATA will consist of γ-ray tracking detectors. They represent high-fold segmented Ge detectors and a front-end electronics, based on digital signal processing techniques, which allows to extract energy, timing and spatial information on the interactions of a γ-ray in the Ge detector by pulse shape analysis of its signals. Utilizing the information on the positions of the interaction points and the energies released at each point the tracks of the γ-rays in a Ge shell can be reconstructed in three dimensions on the basis of the Compton-scattering formula.

Authors:
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  1. Forschungszentrum Julich, Julich (Germany)
  2. Univ. zu Koln, Koln (Germany)
  3. IReS Strasbourg, Strasbourg (France)
  4. INFN, Padova (Italy)
  5. INFN, Legnaro (Italy)
  6. Politecnico di Milano, Milano (Italy)
  7. INFN, Milano (Italy)
  8. Univ. of Manchester, Manchester (United Kingdom)
  9. Univ. of Liverpool, Liverpool (United Kingdom)
  10. Kungliga Tekniska Hogskolan, Stockholm (Sweden)
  11. Uppsala Univ., Uppsala (Sweden)
  12. Univ. of Copenhagen, Copenhagen (Denmark)
  13. Eurisys Mesures, Tanneries (France)
Publication Date:
Research Org.:
Lawrence Berkeley National Lab. (LBNL), Berkeley, CA (United States)
Sponsoring Org.:
USDOE Office of Science (SC)
OSTI Identifier:
1407028
Grant/Contract Number:  
AC02-05CH11231
Resource Type:
Accepted Manuscript
Journal Name:
Acta Physica Polonica. Series B
Additional Journal Information:
Journal Volume: 32; Journal Issue: 9; Journal ID: ISSN 0587-4254
Publisher:
Jagiellonian University
Country of Publication:
United States
Language:
English
Subject:
72 PHYSICS OF ELEMENTARY PARTICLES AND FIELDS

Citation Formats

Lieder, R. M., Gast, W., Jäger, H. M., Mihailescu, L., Rossewij, M., Eberth, J., Pascovici, G., Thomas, H. G., Weisshaar, D., Beck, F., Curien, D., Duchene, G., Pachoud, E., Piqueras, I., Alvarez, C. Rossi, Bazzacco, D., Bellato, M., Kroell, Th., Manea, Ch., Quintana, B., Venturelli, R., Napoli, D. R., Rosso, D., Spolaore, P., Geraci, A., Pullia, A., Ripamonti, G., Camera, F., Leoni, S., Million, B., Wieland, O., Bracco, A., Pignanelli, M., Brambilla, S., Lisle, J., Smith, A. G., Well, R., Nolan, P., Boston, A., Descovich, D., Enqvist, T., Cederwall, B., Ideguchi, E., Van Der Marel, J., Nyberg, J., Herskind, B., Sletten, G., Wilson, J., Redouin, B., Henck, R., Gutknecht, D., Jääskeläinen, K., and Cullen, D. Development of Γ-ray tracking detectors. United States: N. p., 2001. Web.
Lieder, R. M., Gast, W., Jäger, H. M., Mihailescu, L., Rossewij, M., Eberth, J., Pascovici, G., Thomas, H. G., Weisshaar, D., Beck, F., Curien, D., Duchene, G., Pachoud, E., Piqueras, I., Alvarez, C. Rossi, Bazzacco, D., Bellato, M., Kroell, Th., Manea, Ch., Quintana, B., Venturelli, R., Napoli, D. R., Rosso, D., Spolaore, P., Geraci, A., Pullia, A., Ripamonti, G., Camera, F., Leoni, S., Million, B., Wieland, O., Bracco, A., Pignanelli, M., Brambilla, S., Lisle, J., Smith, A. G., Well, R., Nolan, P., Boston, A., Descovich, D., Enqvist, T., Cederwall, B., Ideguchi, E., Van Der Marel, J., Nyberg, J., Herskind, B., Sletten, G., Wilson, J., Redouin, B., Henck, R., Gutknecht, D., Jääskeläinen, K., & Cullen, D. Development of Γ-ray tracking detectors. United States.
Lieder, R. M., Gast, W., Jäger, H. M., Mihailescu, L., Rossewij, M., Eberth, J., Pascovici, G., Thomas, H. G., Weisshaar, D., Beck, F., Curien, D., Duchene, G., Pachoud, E., Piqueras, I., Alvarez, C. Rossi, Bazzacco, D., Bellato, M., Kroell, Th., Manea, Ch., Quintana, B., Venturelli, R., Napoli, D. R., Rosso, D., Spolaore, P., Geraci, A., Pullia, A., Ripamonti, G., Camera, F., Leoni, S., Million, B., Wieland, O., Bracco, A., Pignanelli, M., Brambilla, S., Lisle, J., Smith, A. G., Well, R., Nolan, P., Boston, A., Descovich, D., Enqvist, T., Cederwall, B., Ideguchi, E., Van Der Marel, J., Nyberg, J., Herskind, B., Sletten, G., Wilson, J., Redouin, B., Henck, R., Gutknecht, D., Jääskeläinen, K., and Cullen, D. Sat . "Development of Γ-ray tracking detectors". United States. https://www.osti.gov/servlets/purl/1407028.
@article{osti_1407028,
title = {Development of Γ-ray tracking detectors},
author = {Lieder, R. M. and Gast, W. and Jäger, H. M. and Mihailescu, L. and Rossewij, M. and Eberth, J. and Pascovici, G. and Thomas, H. G. and Weisshaar, D. and Beck, F. and Curien, D. and Duchene, G. and Pachoud, E. and Piqueras, I. and Alvarez, C. Rossi and Bazzacco, D. and Bellato, M. and Kroell, Th. and Manea, Ch. and Quintana, B. and Venturelli, R. and Napoli, D. R. and Rosso, D. and Spolaore, P. and Geraci, A. and Pullia, A. and Ripamonti, G. and Camera, F. and Leoni, S. and Million, B. and Wieland, O. and Bracco, A. and Pignanelli, M. and Brambilla, S. and Lisle, J. and Smith, A. G. and Well, R. and Nolan, P. and Boston, A. and Descovich, D. and Enqvist, T. and Cederwall, B. and Ideguchi, E. and Van Der Marel, J. and Nyberg, J. and Herskind, B. and Sletten, G. and Wilson, J. and Redouin, B. and Henck, R. and Gutknecht, D. and Jääskeläinen, K. and Cullen, D.},
abstractNote = {The next generation of 4π arrays for high-precision γ-ray spectroscopy AGATA will consist of γ-ray tracking detectors. They represent high-fold segmented Ge detectors and a front-end electronics, based on digital signal processing techniques, which allows to extract energy, timing and spatial information on the interactions of a γ-ray in the Ge detector by pulse shape analysis of its signals. Utilizing the information on the positions of the interaction points and the energies released at each point the tracks of the γ-rays in a Ge shell can be reconstructed in three dimensions on the basis of the Compton-scattering formula.},
doi = {},
journal = {Acta Physica Polonica. Series B},
number = 9,
volume = 32,
place = {United States},
year = {2001},
month = {12}
}

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