
| Line: 1 to 1 | ||||||||
|---|---|---|---|---|---|---|---|---|
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| Line: 24 to 24 | ||||||||
| using Leading Order expressions [4] should provide top-coupling measurements with an accuracy similar to the one attained using the semi-leptonic events, but with different systematical effects.
French members : | ||||||||
| Changed: | ||||||||
| < < | F. Le Diberder, E. Kou, R. Poeschl, F. Richard, A. Lleres, V. Shavy | |||||||
| > > | F. Le Diberder, S. Bilokin, P. Colas, E. Kou, R. Poeschl, F. Richard, V. Shavy, M. Titov, B. Tuchming | |||||||
|
Japanese members : | ||||||||
| Changed: | ||||||||
| < < | K. Fujii, A. Ishikawa, Y. Kiyo, Y. Kurihara, T. Suehara, Y. Sudo, Y. Sumino, T. Tanabe | |||||||
| > > | K. Fujii, A. Ishikawa, D. Jeans, Y. Kiyo, M. Kurata, Y. Kurihara, T. Suehara, Y. Sato, Y. Sumino, T. Tanabe, H Yamamoto | |||||||
|
References : [1] M.S. Amjad et al. : arXiv:1307.8102 (2013) | ||||||||
| Line: 45 to 45 | ||||||||
| 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, we plan to test various designs of silicon sensors and their radiation hardness.
French members : | ||||||||
| Changed: | ||||||||
| < < | V. Balagura, V. Boudry, | |||||||
| > > | V. Boudry, V. Balagura, | |||||||
| J-C. Brient, R. Cornat, | ||||||||
| Changed: | ||||||||
| < < | D. Lacour, | |||||||
| > > | A. Irles | |||||||
| R. Poeschl,
K. Shpak,
D. Zerwas
Japanese members : | ||||||||
| Changed: | ||||||||
| < < | Y. Kamiya, S. Komamiya, D. Jeans, | |||||||
| > > | D. Jeans, Y. Kamiya, | |||||||
| K. Kawagoe, | ||||||||
| Changed: | ||||||||
| < < | T. Suehara | |||||||
| > > | S. Komamiya, H. Nakanishi, T. Suehara, H. Yamashiro | |||||||
|
References : [1] T.H.Tran, "ILD SiW ECAL and sDHCAL dimension-performance optimisation", report at LCWS'13, arXiv:1404.3173 [physics.ins-det] | ||||||||
| Line: 81 to 83 | ||||||||
| Apart from focussing on the more theoretical construction of the corresponding models, we also investigate in detail the bounds and discovery potential of new fundamental particles present in these models, such as new heavy vector-like quarks and other new vector [3] and scalar particles [4].
French members : | ||||||||
| Changed: | ||||||||
| < < | A. Deandrea, G. Cacciapaglia, S. Le Corre | |||||||
| > > | P. Serpico, G. Belanger, F. Boudjema, K. Shimada | |||||||
|
Japanese members : | ||||||||
| Changed: | ||||||||
| < < | Y. Okada, D. Harada, M. Hashimoto, | |||||||
| > > | K. Kohri, S. Iso | |||||||
|
References : [1] G.Cacciapaglia, A.Deandrea, L.Panizzi, N.Gaur, D.Harada and Y.Okada, “Heavy Vector-like Top Partners at the LHC and flavour constraints”, JHEP 1203 (2012) 070 [arXiv:1108.6329] | ||||||||
| Line: 120 to 122 | ||||||||
| "Dynamical fine-tuning of initial conditions for small field inflation," Phys. Rev. D 93, 084009 (2016) [arXiv:1511.05923] \ No newline at end of file | ||||||||
| Added: | ||||||||
| > > |
French members : S. Davidson, A. M.Teixeira Japanese members : Y. Kuno, J. Sato, K. Tobe, S. Kanemura References : | |||||||