CERN Accelerating science

Published Articles
Title A 3D diamond detector for particle tracking
Author(s) Artuso, M (Syracuse U.) ; Bachmair, F (ETH, Zurich (main)) ; Bäni, L (ETH, Zurich (main)) ; Bartosik, M (CERN ; CERN) ; Beacham, J (Ohio State U.) ; Bellini, V (INFN, Catania) ; Belyaev, V (Moscow Phys. Eng. Inst.) ; Bentele, B (Colorado U.) ; Berdermann, E (Darmstadt, GSI) ; Bergonzo, P (Paris, CEA) ; Bes, A (LPSC, Grenoble) ; Brom, J-M (Strasbourg, IPHC) ; Bruzzi, M (INFN, Florence) ; Cerv, M (CERN) ; Chau, C (Toronto U.) ; Chiodini, G (INFN, Lecce) ; Chren, D (Prague, Tech. U.) ; Cindro, V (Stefan Inst., Ljubljana) ; Claus, G (Strasbourg, IPHC) ; Collot, J (LPSC, Grenoble) ; Costa, S (INFN, Catania) ; Cumalat, J (Colorado U.) ; Dabrowski, A (CERN) ; D׳Alessandro, R (INFN, Florence) ; de Boer, W (Karlsruhe U.) ; Dehning, B (CERN) ; Dobos, D (CERN) ; Dünser, M (ETH, Zurich (main)) ; Eremin, V (Ioffe Phys. Tech. Inst.) ; Eusebi, R (Texas A-M) ; Forcolin, G (Manchester U.) ; Forneris, J (Turin U.) ; Frais-Kölbl, H (Fachhochsch., Wiener Neustadt) ; Gan, K K (Ohio State U.) ; Gastal, M (CERN) ; Goffe, M (Strasbourg, IPHC) ; Goldstein, J (Bristol U.) ; Golubev, A (Moscow, ITEP) ; Gonella, L (Bonn U.) ; Gorišek, A (Stefan Inst., Ljubljana) ; Graber, L (Gottingen U.) ; Grigoriev, E (Moscow, ITEP) ; Grosse-Knetter, J (Gottingen U.) ; Gui, B (Ohio State U.) ; Guthoff, M (CERN) ; Haughton, I (Manchester U.) ; Hidas, D (Rutgers U., Piscataway) ; Hits, D (ETH, Zurich (main)) ; Hoeferkamp, M (New Mexico U.) ; Hofmann, T (CERN) ; Hosslet, J (Strasbourg, IPHC) ; Hostachy, J-Y (LPSC, Grenoble) ; Hügging, F (Bonn U.) ; Jansen, H (CERN) ; Janssen, J (Bonn U.) ; Kagan, H (Ohio State U.) ; Kanxheri, K (INFN, Perugia) ; Kasieczka, G (ETH, Zurich (main)) ; Kass, R (Ohio State U.) ; Kassel, F (Karlsruhe U.) ; Kis, M (Darmstadt, GSI) ; Kramberger, G (Stefan Inst., Ljubljana) ; Kuleshov, S (Moscow, ITEP) ; Lacoste, A (LPSC, Grenoble) ; Lagomarsino, S (INFN, Florence) ; Lo Giudice, A (Turin U.) ; Maazouzi, C (Strasbourg, IPHC) ; Mandic, I (Stefan Inst., Ljubljana) ; Mathieu, C (Strasbourg, IPHC) ; McFadden, N (New Mexico U.) ; McGoldrick, G (Toronto U.) ; Menichelli, M (INFN, Perugia) ; Mikuž, M (Stefan Inst., Ljubljana) ; Morozzi, A (INFN, Perugia) ; Moss, J (Ohio State U.) ; Mountain, R (Syracuse U.) ; Murphy, S (Manchester U.) ; Oh, A (Manchester U.) ; Olivero, P (Turin U.) ; Parrini, G (INFN, Florence) ; Passeri, D (INFN, Perugia) ; Pauluzzi, M (INFN, Perugia) ; Pernegger, H (CERN) ; Perrino, R (INFN, Lecce) ; Picollo, F (Turin U.) ; Pomorski, M (Paris, CEA) ; Potenza, R (INFN, Catania) ; Quadt, A (Gottingen U.) ; Re, A (Turin U.) ; Riley, G (Tennessee U.) ; Roe, S (CERN) ; Sapinski, M (CERN) ; Scaringella, M (INFN, Florence) ; Schnetzer, S (Rutgers U., Piscataway) ; Schreiner, T (Fachhochsch., Wiener Neustadt) ; Sciortino, S (INFN, Florence) ; Scorzoni, A (INFN, Perugia) ; Seidel, S (New Mexico U.) ; Servoli, L (INFN, Perugia) ; Sfyrla, A (CERN) ; Shimchuk, G (Moscow, ITEP) ; Smith, D S (Ohio State U.) ; Sopko, B (Prague, Tech. U.) ; Sopko, V (Prague, Tech. U.) ; Spagnolo, S (INFN, Lecce) ; Spanier, S (Tennessee U.) ; Stenson, K (Colorado U.) ; Stone, R (Rutgers U., Piscataway) ; Sutera, C (INFN, Catania) ; Taylor, A (New Mexico U.) ; Traeger, M (Darmstadt, GSI) ; Tromson, D (Paris, CEA) ; Trischuk, W (Toronto U.) ; Tuve, C (INFN, Catania) ; Uplegger, L (Fermilab) ; Velthuis, J (Bristol U.) ; Venturi, N (Toronto U.) ; Vittone, E (Turin U.) ; Wagner, S (Colorado U.) ; Wallny, R (ETH, Zurich (main)) ; Wang, J C (Syracuse U.) ; Weilhammer, P (CERN) ; Weingarten, J (Gottingen U.) ; Weiss, C (CERN) ; Wengler, T (CERN) ; Wermes, N (Bonn U.) ; Yamouni, M (LPSC, Grenoble) ; Zavrtanik, M (Stefan Inst., Ljubljana)
Publication 2016
Number of pages 4
In: Nucl. Instrum. Methods Phys. Res., A 824 (2016) 402-405
In: Frontier Detectors for Frontier Physics: 13th Pisa Meeting on Advanced Detectors, La Biodola, Isola D'elba, Italy, 24 - 30 May 2015, pp.402-405
DOI 10.1016/j.nima.2015.09.079
Subject category Detectors and Experimental Techniques
Abstract In the present study, results towards the development of a 3D diamond sensor are presented. Conductive channels are produced inside the sensor bulk using a femtosecond laser. This electrode geometry allows full charge collection even for low quality diamond sensors. Results from testbeam show that charge is collected by these electrodes. In order to understand the channel growth parameters, with the goal of producing low resistivity channels, the conductive channels produced with a different laser setup are evaluated by Raman spectroscopy.
Copyright/License Elsevier B.V.

Corresponding record in: Inspire


 Record created 2017-05-10, last modified 2017-07-31