Detailed measurement of the e+e- pair continuum in p+p and Au+Au collisions at √sNN=200 GeV and implications for direct photon production

In 2002, an innovative neutron time-of-flight facility started operation at CERN: n_TOF. The main characteristics that make the new facility unique are the high instantaneous neutron flux, high resolution and wide energy range. Combined with state-of-the-art detectors and data acquisition system, th...

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Veröffentlicht in:Physical review. C 2010, Vol.81
Hauptverfasser: Adare, A., Afanasiev, S., Aidala, C., N. Ajitanand, N., Akiba, Y., Al-Bataineh, H., Alexander, J., Al-Jamel, A., Aoki, K., Aphecetche, Laurent, Armendariz, R., H. Aronson, S., Asai, J., T. Atomssa, E., Averbeck, R., C. Awes, T., Azmoun, B., Babintsev, V., Baksay, G., Baksay, L., Baldisseri, A., N. Barish, K., D. Barnes, P., Bassalleck, B., Bathe, S., Batsouli, S., Baublis, V., Bauer, F., Bazilevsky, A., Belikov, S., Bennett, R., Berdnikov, Y., A. Bickley, A., T. Bjorndal, M., G. Boissevain, J., Borel, H., Boyle, K., L. Brooks, M., S. Brown, D., Bucher, D., Buesching, H., Bumazhnov, V., Bunce, G., M. Burward-Hoy, J., Butsyk, S., Campbell, S., Chai, J.S., S. Chang, B., L. Charvet, J., Chernichenko, S., Chiba, J., Y. Chi, C., Chiu, M., J. Choi, I., Chujo, T., Chung, P., Churyn, A., Cianciolo, V., R. Cleven, C., Cobigo, Y., A. Cole, B., P. Comets, M., Constantin, P., Csanád, M., Csörgő, T., Dahms, T., Das, K., David, G., B. Deaton, M., Dehmelt, K., Delagrange, H., Denisov, A., d'Enterria, D., Deshpande, A., J. Desmond, E., Dietzsch, O., Dion, A., Donadelli, M., L. Drachenberg, J., Drapier, O., Drees, A., K. Dubey, A., Durum, A., Dzhordzhadze, V., V. Efremenko, Y., Egdemir, J., Ellinghaus, F., S. Emam, W., Enokizono, A., En'Yo, H., Espagnon, B., Esumi, S., O. Eyser, K., E. Fields, D., Finger, M., M. Finger, Jr, Fleuret, F., L. Fokin, S., Forestier, B., Fraenkel, Z.
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Sprache:eng
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Zusammenfassung:In 2002, an innovative neutron time-of-flight facility started operation at CERN: n_TOF. The main characteristics that make the new facility unique are the high instantaneous neutron flux, high resolution and wide energy range. Combined with state-of-the-art detectors and data acquisition system, these features have allowed to collect high accuracy neutron cross-section data on a variety of isotopes, many of which radioactive, of interest for Nuclear Astrophysics and for applications to advanced reactor technologies. A review of the most important results on capture and fission reactions obtained so far at n_TOF is presented, together with plans for new measurements related to nuclear industry.
ISSN:2469-9985
2469-9993
DOI:10.1103/PhysRevC.81.034911