Search Results - "Catacchini, E."

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  1. 1

    Characterization of a Double Sided Microstrip Silicon wedge Detector by Catacchini, E.

    “…One prototype of the first generation of Double Sided Silicon Detectors for the CMS silicon forward inner tracker has been characterized with laboratory…”
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  2. 2

    Radiation damage on p-type silicon detectors by Pirollo, S, Biggeri, U, Borchi, E, Bruzzi, M, Catacchini, E, Lazanu, S, Li, Z, Sciortino, S

    “…Two sets of p-type silicon (high resistivity bulk and low resistivity epitaxial) samples and one set of n +–p junctions have been irradiated with fast neutrons…”
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  3. 3
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    Heavily irradiated double-sided wedge silicon microstrip detector by Bruzzi, M., Catacchini, E., D’Alessandro, R., Parrini, G.

    “…One double-sided trapezoidal microstrip n-type detector was irradiated with 1MeV neutrons up to a dose of 7.9×1013n/cm2 at PSAIF (CERN) and was characterized…”
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  5. 5

    Performance of irradiated silicon microstrip detectors by Catacchini, E., Civinini, C., D'Alessandro, R., Focardi, E., Lenzi, M., Meschini, M., Parrini, G., Pieri, M.

    “…Silicon microstrip devices to be installed in Large Hadron Collider (LHC) tracking detectors will have to operate in a high radiation environment. We report on…”
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    Evaluation of charged pions induced damage in the CMS silicon forward detectors by Biggeri, U, Borchi, E, Bruzzi, M, Catacchini, E, Lazanu, S, Parrini, G

    “…The bulk damage induced by charged pions in the Compact Muon Solenoid forward silicon tracker region has been numerically evaluated. Charged pion fluences have…”
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  8. 8

    Radiation damage analysis of neutron irradiated double sided wedge microstrip silicon detector by Borchi, E., Bruzzi, M., Catacchini, E., D'Alessandro, R., Parrini, G.

    Published in IEEE transactions on nuclear science (01-06-1998)
    “…A double sided wedge microstrip silicon detector and a few simple pad p/sup +/n junctions, from the same silicon wafer, have been characterized and studied…”
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  11. 11

    Stark and Frequency Measurements in the FIR Spectrum of H2O2 by Bellini, M., Catacchini, E., De Natale, P., Di Lonardo, G., Fusina, L., Inguscio, M., Venuti, E.

    Published in Journal of molecular spectroscopy (01-05-1996)
    “…The submillimeter-wave spectrum of H2O2has been recorded by means of a tunable FIR spectrometer. Stark measurements have been performed on three selected…”
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  12. 12

    Radiation hard silicon detectors—developments by the RD48 (ROSE) collaboration by Lindström, G, Ahmed, M, Albergo, S, Anderson, D, Augelli, V, Bacchetta, N, Bartalini, P, Bates, R, Biggeri, U, Bisello, D, Boemi, D, Borchi, E, Burger, P, Campabadal, F, Chilingarov, A, Ciampolini, P, Cindro, V, Creanza, D, Da Via, C, Davies, G, De Boer, W, Dell’Orso, R, Dezillie, B, Eremin, V, Evrard, O, Fanourakis, G, Feick, H, Focardi, E, Fonseca, L, Fretwurst, E, Fuster, J, Gabathuler, K, Glaser, M, Hall, G, Heising, S, Holmes-Siedle, A, Hughes, G, Jones, B.K, Jungermann, L, Kohout, Z, Kramberger, G, Kuhnke, M, Kwan, S, Lemeilleur, F, Leroy, C, Li, Z, Ligonzo, T, Linhart, V, Litovchenko, P, Loukas, D, Lozano, M, Luczynski, Z, Lutz, G, MacEvoy, B, Manolopoulos, S, Markou, A, Martinez, C, Messineo, A, Moll, M, Oshea, V, Parrini, G, Passeri, D, Petre, D, Pickford, A, Pintilie, I, Pospisil, S, Raine, C, Ratoff, P.N, Richter, R.H, Roy, P, Ruzin, A, Ryazanov, A.I, Santocchia, A, Schiavulli, L, Sicho, P, Slysz, W, Smith, K, Stolze, K, Sundby Avset, B, Svensson, B, Tivarus, C, Tricomi, A, Tzamarias, S, Valvo, G, Vasilescu, A, Vayaki, A, Verbitskaya, E, Verdini, P, Vrba, V, Watts, S, Weber, E.R, Wegrzecki, M, Wegrzecka, I, Wheadon, R, Wilhelm, I, Wunstorf, R, Wüstenfeld, J, Wyss, J, Zankel, K, Žontar, D

    “…The RD48 (ROSE) collaboration has succeeded to develop radiation hard silicon detectors, capable to withstand the harsh hadron fluences in the tracking areas…”
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  13. 13

    Coherent FIR spectroscopy of molecules of atmospheric interest by Bellini, M., Catacchini, E., De Natale, P., Di Lonardo, G., Fusina, L., Inguscio, M.

    Published in Infrared physics & technology (1995)
    “…A general introduction on the importance of high precision laboratory measurements in the FIR for molecules of atmospheric interest is briefly given. The…”
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  14. 14

    Developments for radiation hard silicon detectors by defect engineering—results by the CERN RD48 (ROSE) Collaboration by Lindström, G., Ahmed, M., Albergo, S., Allport, P., Anderson, D., Andricek, L., Angarano, M.M., Bacchetta, N., Bartalini, P., Biggeri, U., Bilei, G.M., Bisello, D., Boemi, D., Brodbeck, T.J., Bruzzi, M., Budzynski, T., Burger, P., Campabadal, F., Casse, G., Catacchini, E., Chilingarov, A., Ciampolini, P., Cindro, V., Costa, M.J., Creanza, D., Davies, G., De Boer, W., Dell’Orso, R., De Palma, M., Dezillie, B., Fallica, G., Fanourakis, G., Focardi, E., Fonseca, L., Fretwurst, E., Fuster, J., Gabathuler, K., Glaser, M., Grabiec, P., Huhtinen, M., Ivanov, A., Jones, B.K., Kaminsky, A., Kohout, Z., Kramberger, G., Kuhnke, M., Lemeilleur, F., Letheren, M., Ligonzo, T., Linhart, V., Litovchenko, P., Loukas, D., MacEvoy, B., Manolopoulos, S., Martinez, C., Messineo, A., Moll, M., Nossarzewska, E., Parrini, G., Passeri, D., Pickford, A., Pintilie, L., Pospisil, S., Potenza, R., Rafi, J.M., Ratoff, P.N., Richter, R.H., Riedler, P., Roy, P., Ruzin, A., Ryazanov, A.I., Santocchia, A., Schiavulli, L., Sicho, P., Sloan, T., Slysz, W., Solanky, M., Stolze, K., Sundby Avset, B., Tonelli, G., Tricomi, A., Tzamarias, S., Valvo, G., Vasilescu, A., Verbitskaya, E., Verdini, P., Vrba, V., Watts, S., Weber, E.R., Wegrzecki, M., Wegrzecka, I., Weilhammer, P., Wheadon, R., Wilburn, C., Wilhelm, I., Wunstorf, R., Wüstenfeld, J., Wyss, J., Zabierowski, P., Zontar, D.

    “…This report summarises the final results obtained by the RD48 collaboration. The emphasis is on the more practical aspects directly relevant for LHC…”
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    Characterization of neutron irradiated silicon microstrip detectors by Lenzi, M., Catacchini, E., Civinini, C., D'Alessandro, R., Meschini, M.

    “…The radiation hardness of silicon microstrip detectors has been investigated on full-size prototypes similar to the ones that will be installed in the forward…”
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  16. 16

    New results on silicon microstrip detectors of CMS tracker by Demaria, N., Albergo, S., Angarano, M., Babucci, E., Bader, A., Bagliesi, G., Basti, A., Biggeri, U., Bilei, G.M., Bisello, D., Boemi, D., Bolla, G., Bosi, F., Borrello, L., Bortoletto, D., Braibant, S., Breuker, H., Bruzzi, M., Buffini, A., Busoni, S., Candelori, A., Castaldi, R., Catacchini, E., Checcucci, B., Ciampolini, P., Civinini, C., Creanza, D., D'Alessandro, R., Rold, M.Da, de Palma, M., Dell'Orso, R., Marina, R.Della, Dutta, S., Eklund, C., Elliott-Peisert, A., Favro, G., Feld, L., Fiore, L., Focardi, E., French, M., Freudenreich, K., Fürtjes, A., Giassi, A., Giraldo, A., Glessing, B., Hall, G., Hammerstrom, R., Hebbeker, T., Hrubec, J., Huhtinen, M., Kaminsky, A., Karimaki, V., Koenig, St, Krammer, M., Lariccia, P., Lenzi, M., Loreti, M., Luebelsmeyer, K., Lustermann, W., Mättig, P., Maggi, G., Mannelli, M., Mantovani, G., Marchioro, A., Mariotti, C., Martignon, G., Evoy, B.Mc, Meschini, M., Messineo, A., My, S., Paccagnella, A., Palla, F., Pandoulas, D., Papi, A., Parrini, G., Passeri, D., Piperov, S., Radicci, V., Raffaelli, F., Santocchia, A., Schmitt, B., Selvaggi, G., Servoli, L., Sguazzoni, G., Siedling, R., Silvestris, L., Skog, K., Starodumov, A., Stavitski, I., Stefanini, G., Tempesta, P., Tonelli, G., Tuuva, T., Vannini, C., Verdini, P.G., Viertel, G., Xie, Z., Yahong, Li, Watts, S., Wittmer, B.

    “…Interstrip and backplane capacitances on silicon microstrip detectors with p + strip on n substrate of 320 μm thickness were measured for pitches between 60…”
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  17. 17

    Optimization of the silicon sensors for the CMS tracker by Albergo, S., Angarano, M., Azzi, P., Babucci, E., Bacchetta, N., Bader, A., Bagliesi, G., Basti, A., Biggeri, U., Biino, C., Bilei, G.M., Bisello, D., Boemi, D., Bosi, F., Borello, L., Braibant, S., Breuker, H., Brunetti, M.T., Bruzzi, M., Buffini, A., Busoni, S., Candelori, A., Caner, A., Castaldi, R., Castro, A., Catacchini, E., Checcucci, B., Ciampolini, P., Civinini, C., Costa, M., Creanza, D., D’Alessandro, R., DeMaria, N., de Palma, M., Dell’Orso, R., Dutta, S., Favro, G., Fiore, L., Focardi, E., French, M., Freudenreich, K., Frey, A., Friedl, M., Fürtjes, A., Giassi, A., Giorgi, M., Giraldo, A., Glessing, W., Gu, W.H., Hammarstrom, R., Hebbeker, T., Honkanen, A., Honma, A., Hrubec, J., Huhtinen, M., Kaminsky, A., Karimaki, V., Koenig, St, Krammer, M., Lariccia, P., Loreti, M., Luebelsmeyer, K., Lustermann, W., Mättig, P., Maggi, G., Mannelli, M., Mantovani, G., Marchioro, A., Mariotti, C., Martignon, G., Mc Evoy, B., Meschini, M., Neviani, A., Paccagnella, A., Palla, F., Pandoulas, D., Papi, A., Piperov, S., Raffaelli, F., Raymond, M., Rizzo, F., Santocchia, A., Segneri, G., Selvaggi, G., Servoli, L., Sguazzoni, G., Siedling, R., Silvestris, L., Starodumov, A., Stavitski, I., Surrow, B., Tempesta, P., Tonelli, G., Tuominiemi, J., Tuuva, T., Verdini, P.G., Viertel, G., Xie, Z., Yahong, Li, Watts, S.

    “…The CMS experiment at the LHC will comprise a large silicon strip tracker. This article highlights some of the results obtained in the R&D studies for the…”
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  18. 18

    CMS silicon tracker developments by Civinini, C, Albergo, S, Angarano, M, Babucci, E, Bacchetta, N, Bader, A, Bagliesi, G, Basti, A, Biggeri, U, Bilei, G.M, Bisello, D, Bosi, F, Borrello, L, Bozzi, C, Braibant, S, Breuker, H, Bruzzi, M, Buffini, A, Busoni, S, Candelori, A, Caner, A, Castaldi, R, Catacchini, E, Checcucci, B, Ciampolini, P, Creanza, D, D'Alessandro, R, Da Rold, M, Demaria, N, de Palma, M, Dell'Orso, R, Marina, R.Della, Dutta, S, Feld, L, Focardi, E, French, M, Freudenreich, K, Frey, A, Fürtjes, A, Giorgi, M, Giraldo, A, Glessing, B, Hall, G, Hammarstrom, R, Hebbeker, T, Honma, A, Hrubec, J, Huhtinen, M, Kaminsky, A, Karimaki, V, Koenig, St, Lariccia, P, Lenzi, M, Loreti, M, Luebelsmeyer, K, Lustermann, W, Mättig, P, Maggi, G, Mannelli, M, Mantovani, G, Marchioro, A, Mariotti, C, Martignon, G, Evoy, B.Mc, Meschini, M, Messineo, A, Migliore, E, My, S, Paccagnella, A, Palla, F, Pandoulas, D, Papi, A, Parrini, G, Passeri, D, Pieri, M, Piperov, S, Potenza, R, Radicci, V, Raymond, M, Santocchia, A, Schmitt, B, Selvaggi, G, Servoli, L, Sguazzoni, G, Siedling, R, Silvestris, L, Starodumov, A, Stefanini, G, Surrow, B, Tempesta, P, Tonelli, G, Tricomi, A, Tuuva, T, Vannini, C, Verdini, P.G, Viertel, G, Xie, Z, Yahong, Li, Watts, S, Wittmer, B

    “…The CMS Silicon tracker consists of 70 m 2 of microstrip sensors which design will be finalized at the end of 1999 on the basis of systematic studies of device…”
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  19. 19

    Performance of CMS silicon microstrip detectors with the APV6 readout chip by Meschini, M., Albergo, S., Angarano, M., Babucci, E., Bader, A., Bagliesi, G., Basti, A., Biggeri, U., Bilei, G.M., Bisello, D., Boemi, D., Bosi, F., Borrello, L., Bozzi, C., Braibant, S., Breuker, H., Bruzzi, M., Buffini, A., Busoni, S., Candelori, A., Caner, A., Castaldi, R., Castro, A., Catacchini, E., Checcucci, B., Ciampolini, P., Civinini, C., Creanza, D., D'Alessandro, R., Rold, M.Da, Demaria, N., de Palma, M., Dell'Orso, R., Marina, R.Della, Dutta, S., Eklund, C., Elliott-Peisert, A., Feld, L., Fiore, L., Focardi, E., French, M., Freudenreich, K., Fürtjes, A., Giassi, A., Giraldo, A., Glessing, B., Gu, W.H., Hall, G., Hammerstrom, R., Hebbeker, T., Hrubec, J., Huhtinen, M., Kaminsky, A., Karimaki, V., Koenig, St, Krammer, M., Lariccia, P., Lenzi, M., Loreti, M., Luebelsmeyer, K., Lustermann, W., Mättig, P., Maggi, G., Mannelli, M., Mantovani, G., Mariotti, C., Martignon, G., Evoy, B.Mc, Messineo, A., My, S., Paccagnella, A., Pandoulas, D., Papi, A., Parrini, G., Passeri, D., Pieri, M., Piperov, S., Potenza, R., Radicci, V., Raffaelli, F., Raymond, M., Santocchia, A., Schmitt, B., Selvaggi, G., Servoli, L., Sguazzoni, G., Silvestris, L., Skog, K., Starodumov, A., Tempesta, P., Tonelli, G., Tricomi, A., Tuuva, T., Vannini, C., Verdini, P.G., Viertel, G., Xie, Z., Yahong, Li, Watts, S., Wittmer, B.

    “…We present results obtained with full-size wedge silicon microstrip detectors bonded to APV6 (Raymond et al., Proceedings of the 3rd Workshop on Electronics…”
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