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| R&D of silicon-tungsten calorimeter is the goal of this project. We plan to finalize the optimization of the ECAL geometry (dimensions and number of layers), to build and to test a detector (so-called "active sensor unit", or ASU) with 1024 channels per PCB serving 4 silicon sensors with 16x16 pixels, improve the DAQ software and to work on integration of several ASUs into one ILC full-scale detector. In parallel, Tokyo University plans irradiation tests and Kyushu University - tests of different designs of silicon sensors.
French member : | ||||||||
| Changed: | ||||||||
| < < | V. Balagura M. Anduze V. Boudry J-C. Brient R. Cornat | |||||||
| > > | V. Balagura, M. Anduze, V. Boudry, J-C. Brient, R. Cornat, | |||||||
| T. Tran
Japanese member : | ||||||||
| Changed: | ||||||||
| < < | Y. Kamiya D. Jeans | |||||||
| > > | Y. Kamiya, D. Jeans, | |||||||
|
References : T.H.Tran, "ILD SiW ECAL and sDHCAL dimension-performance optimisation", report at LCWS'13, arXiv:1404.3173 [physics.ins-det] | ||||||||