作者
Gennaro Ruggiero, E Alagoz, V Avati, V Bassetti, V Berardi, V Bergholm, V Boccone, M Bozzo, A Buzzo, MG Catanesi, R Cereseto, S Cuneo, M Deile, R De Oliveira, K Eggert, N Egorov, I Eremin, F Ferro, J Hasi, F Haug, R Herzog, P Jarron, J Kalliopuska, A Kiiskinen, K Kurvinen, A Kok, W Kundrat, R Lauhakangas, M Lokajiccek, D Macina, M Macri, T Maki, S Minutoli, L Mirabito, A Morelli, P Musico, M Negri, H Niewiadomski, E Noschis, F Oljemark, R Orava, M Oriunno, K Osterberg, VG Palmieri, R Puppo, E Radicioni, R Rudischer, H Saarikko, G Sanguinetti, A Santroni, P Siegrist, A Sidorov, G Sette, J Smotlacha, W Snoeys, S Tapprogge, A Toppinen, A Verdier, S Watts, E Wobst
发表日期
2005/10
期刊
IEEE transactions on nuclear science
卷号
52
期号
5
页码范围
1899-1902
出版商
IEEE
简介
Silicon detectors for the Roman Pots of the the large hadron collider TOTEM experiment aim for full sensitivity at the edge where a terminating structure is required for electrical stability. This work provides an innovative approach reducing the conventional width of the terminating structure to less than 100 /spl mu/m, still using standard planar fabrication technology. The objective of this new development is to decouple the electric behavior of the surface from the sensitive volume within a few tens of micrometers. The explanation of the basic principle of this new approach together with the experimental confirmation via electric measurements and beam test are presented in this paper, demonstrating that silicon detectors with this new terminating structure are fully operational and efficient to under 60 /spl mu/m from the die cut.
引用总数
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G Ruggiero, E Alagoz, V Avati, V Bassetti, V Berardi… - IEEE transactions on nuclear science, 2005