
| Line: 1 to 1 | ||||||||
|---|---|---|---|---|---|---|---|---|
| ||||||||
| Changed: | ||||||||
| < < | ||||||||
| > > | The Nu_06 team is foreseen to continue its activity on three main topics: - The hardware upgrade of the T2K off-axis near detector (ND280-Upgrade). - Preparation of the analysis of the T2K data with the ND280 Upgrade detector. - Measurements of neutrino-nucleus cross sections using data available from INGRID, ND280 and WAGASCI/Baby-MIND detectors. The common goal of these three activities is to reduce the systematics related to the neutrino-nucleus interaction in order to maximize the sensitivity of T2K. It will also benefit future long baseline neutrino experiments such as Hyper-Kamiokande. | |||||||
|
French member: M. Buizza Avanzini, O. Drapier, M. Gonin, T. Mueller, B. Quilain, S. Bolognesi, A. Delbart, S. Emery, S. Hassani, L. Munteanu, P. Colas, J. Dumarchez, C. Giganti, M. Guigue, B. Popov, Q. Viet Nguyen, A. Blanchet Japanese member: | ||||||||
| Changed: | ||||||||
| < < | K. Iwamoto, T. Kobayashi, T. Tsukamoto, T. Nakadaira, T. Matsubara, T. Nakaya, A. Ichikawa, T. Kikawa, K. Yasutome, Y. Hayato, A. Minamino, G. Pintaudi, Y. Seiya, K. Yamamoto
References: Website: | |||||||
| > > | M.Yokoyama, K. Iwamoto, T. Kobayashi, T. Tsukamoto, T. Nakadaira, T. Matsubara, T. Nakaya, A. Ichikawa, T. Kikawa, K. Yasutome, Y. Hayato, A. Minamino, G. Pintaudi, Y. Seiya, K. Yamamoto | |||||||
|
| ||||||||
| Line: 1 to 1 | ||||||||
|---|---|---|---|---|---|---|---|---|
| ||||||||
| Changed: | ||||||||
| < < | ||||||||
| > > | ||||||||
|
Summary: | ||||||||
| Line: 44 to 44 | ||||||||
| Added: | ||||||||
| > > | The Hyper-Kamiokande detector will be the largest underground water Cherenkov detector ever built with a 68 m diameter and 72 m height cylindrical tank, equipped with up to more than 50,000 photo-sensors. Timing synchronization of each PMT signal is crucial for a precise reconstruction of the particle tracks due to the triggerless nature of the detector. Moreover, the association between the local time base and the Coordinated Universal Time (UTC) is fundamental to synchronize the data acquisition with the beam sent from the J-PARC particles accelerator in Tokai and to correlate the astronomical events with other detectors. IN2P3 and University of Tokyo have established a strong collaboration and are co-responsible for both these tasks. To achieve them, an R&D campaign is started with the goal of building a high-speed serial link with embedded clock based on the Field Programmable Gate Arrays (FPGA) serializer-deserializer. The final architecture foreseen a signal that originates from an atomic clock to guarantee a very stable and precise cadence (in the order of 1 ps) associated to a Global Navigation Satellite System (GNSS) receiver to get an UTC reference. It is then distributed, embedded into a data stream, from a master entity to all the front-end nodes. Each front-end extracts the clock with a deterministic phase shift and a less then 100 ps RMS jitter. The data stream is used to exchange critical slow control information between the front-ends and the data acquisition system. | |||||||
|
French member: | ||||||||
| Line: 51 to 56 | ||||||||
|
Japanese member: Y. Hayato, Y. Kataoka, Y. Takemoto | ||||||||
| Deleted: | ||||||||
| < < |
References: Website: | |||||||
| \ No newline at end of file | ||||||||
| Line: 1 to 1 | ||||||||
|---|---|---|---|---|---|---|---|---|
| ||||||||
| Changed: | ||||||||
| < < | ||||||||
| > > | ||||||||
|
Summary: | ||||||||
| Changed: | ||||||||
| < < | A mandatory milestone in view of any future long baseline experiment is an industrial prototyping of the assumed detector and its experimental characterization. WA105 is aiming concrete prototyping effort of double-phase liquid argon TPC towards the envisioned large-scale detectors world wide, and an accompanying campaign of measurements aimed at assessing the systematic errors that will be affecting their intended physics programs based on various detector technologies. | |||||||
| > > | ||||||||
|
French member : | ||||||||
| Changed: | ||||||||
| < < | J. Dumarchez, D. Autiero, S. Bolognesi, A. Chappuis, J. Dawson, I. de Bonis, D. Duchesneau, V. Galymov, C. Giganti, Y. Karyotakis, J. Marteau, E. Mazzucato, T. Patzak, E. Pennachio, B. Popov, A. Tonnazzo, G. Vasseur, M. Zito, L. Zambelli | |||||||
| > > | M. Buizza Avanzini, O. Drapier, M. Gonin, T. Mueller, B. Quilain, S. Bolognesi, A. Delbart, S. Emery, S. Hassani, L. Munteanu, P. Colas, J. Dumarchez, C. Giganti, M. Guigue, B. Popov, Q. Viet Nguyen, A. Blanchet | |||||||
|
Japanese member : | ||||||||
| Changed: | ||||||||
| < < | T. Hasegawa, L. Aizawa, M. Friend, H. Oba, S. Kasai, T. Kishishita,H. Konari, M. Kurokawa, Y. Kuromori, T. Nakadaira, S. Narita, K. Negishi, K. Sakashita, M. Shoji, M. Tanaka, T. Uchida | |||||||
| > > | K. Iwamoto, T. Kobayashi, T. Tsukamoto, T. Nakadaira, T. Matsubara, T. Nakaya, A. Ichikawa, T. Kikawa, K. Yasutome, Y. Hayato, A. Minamino, G. Pintaudi, Y. Seiya, K. Yamamoto | |||||||
|
References: | ||||||||
| Changed: | ||||||||
| < < | [1] L.Agostino et al. (The LBNO-DEMO (WA105) Collaboration) arXiv:1409.4405 [2] S.K.Agarwalla et al. (The LAGUNA-LBNO Collaboration) JHEP 05 (2014) 094 | |||||||
| > > | ||||||||
|
Website: | ||||||||
| Changed: | ||||||||
| < < | http://lbnodemo.ethz.ch:8080/Plone | |||||||
| > > | ||||||||
|
| ||||||||
| Changed: | ||||||||
| < < | ||||||||
| > > | ||||||||
|
Summary: | ||||||||
| Changed: | ||||||||
| < < | The knowledge of the neutrino interaction cross-section is one of the largest and most complicated systematics for present and future long-baseline neutrino oscillation experiments. As an example, Hyper-Kamiokande requires systematic uncertainty of ~3% and DUNE aims at an impressive total systematic uncertainty of 1%, while the uncertainties due to neutrino cross-section in T2K are today larger than 5%. The aim of this project is to exploit the data from the T2K near detectors (ND280, INGRID) to improve the precision on neutrino interaction modeling and to design and build new improved near detectors for T2K-2 to address this issue. A dedicated water scintillator detector (WAGASCI) has been constructed, commissioned and ran during this project and an updated set of detectors for ND280 is being designed. | |||||||
| > > | ||||||||
|
French member : | ||||||||
| Changed: | ||||||||
| < < | S. Bolognesi, M.Buizza-Avanzini, S.Dolan, O.Drapier, J.Dumarchez, S.Emery, C.Giganti, M.Gonin, M.Licciardi, T.Mueller, L.Munteanu, B.Popov, M.Zito | |||||||
| > > | B. Quilain, O. Drapier, M. Gonin, T. Mueller, M. Buizza Avanzini, J. Dumarchez, A. Blondel, M. Zito, B. Popov, C. Giganti, M. Guigue, S. Russo, C. De La Taille, S. Conforti | |||||||
|
Japanese member : | ||||||||
| Changed: | ||||||||
| < < | T. Tsukamoto, Y. Asada, N. Chikuma, Y. Hayato, A. K. Ichikawa, K. Iwamoto, T. Kikawa, K. Kin, T. Kobayashi, T. Koga, K. Matsushita, A. Minamino, T. Nakaya, G. Pintaudi, B. Quilain, Y. Seiya, K. Yamamoto, K. Yasutome, M. Yokoyama | |||||||
| > > | M. Ishitsuka, M. Inomoto, N. Izumi, T. Kinoshita, M. Kuze, S. Izumiyama, I. Sashima, M. Hartz, G. Pronost | |||||||
|
References: | ||||||||
| Changed: | ||||||||
| < < | [1] Phys.Rev.Lett. 118 (2017) no.15, 151801 [2] arXiv:1609.04111 [3] Phys.Rev. D93 (2016) no.11, 112012 | |||||||
| > > | ||||||||
|
Website: | ||||||||
| Deleted: | ||||||||
| < < | http://t2k-experiment.org/ | |||||||
|
| ||||||||
| Added: | ||||||||
| > > |
French member: S. Russo, A. Blondel, S. Bolognesi, J. Dumarchez, S. Emery, S. Hassani, C. Giganti, M. Guigue, M. Gonin, O. Drapier, P. Paganini, T. Mueller, M. Buizza Avanzini, B. Quilain, B. Popov, M. Zito, C. De La Taille, S. Conforti Japanese member: Y. Hayato, Y. Kataoka, Y. Takemoto References: Website: | |||||||
| \ No newline at end of file | ||||||||
| Line: 1 to 1 | ||||||||
|---|---|---|---|---|---|---|---|---|
| ||||||||
| Line: 24 to 24 | ||||||||
| Changed: | ||||||||
| < < | The knowledge of the neutrino interaction cross-section is one of the largest and most complicated systematics for present and future long-baseline neutrino oscillation experiments. As an example, LBNF aims at an impressive total systematic uncertainty of 1%, while the uncertainties due to neutrino cross-section in T2K are today larger than 5%. The aim of this project is to exploit the data from the T2K near detectors (ND280, INGRID) to improve the precision on neutrino interaction modeling and to design and build new improved near detectors for T2K-2 to address this issue. A dedicated water scintillator detector (WAGASCI) is being constructed, commissioned and ran during this project and an updated set od detectors for ND280 is being designed. | |||||||
| > > | The knowledge of the neutrino interaction cross-section is one of the largest and most complicated systematics for present and future long-baseline neutrino oscillation experiments. As an example, Hyper-Kamiokande requires systematic uncertainty of ~3% and DUNE aims at an impressive total systematic uncertainty of 1%, while the uncertainties due to neutrino cross-section in T2K are today larger than 5%. The aim of this project is to exploit the data from the T2K near detectors (ND280, INGRID) to improve the precision on neutrino interaction modeling and to design and build new improved near detectors for T2K-2 to address this issue. A dedicated water scintillator detector (WAGASCI) has been constructed, commissioned and ran during this project and an updated set of detectors for ND280 is being designed. | |||||||
|
French member : | ||||||||
| Changed: | ||||||||
| < < | S. Bolognesi, M; Buizza Avanzini, O. Drapier, J. Dumarchez, S. Emery, C. Giganti, M. Gonin, J. Imber, M. Lamoureux, M. Licciardi, T. Mueller, B. Popov, M. Zito | |||||||
| > > | S. Bolognesi, M.Buizza-Avanzini, S.Dolan, O.Drapier, J.Dumarchez, S.Emery, C.Giganti, M.Gonin, M.Licciardi, T.Mueller, L.Munteanu, B.Popov, M.Zito | |||||||
|
Japanese member : | ||||||||
| Changed: | ||||||||
| < < | T. Tsukamoto, N. Chikuma, J. Harada, T. Hayashino, Y. Hayato, F. Hosomi, K. Kin, T. Kobayashi, T. Koga, A. Minamino, T. Nakaya, B. Quilain, Y. Seiya, K. Yamamoto, M. Yokoyama | |||||||
| > > | T. Tsukamoto, Y. Asada, N. Chikuma, Y. Hayato, A. K. Ichikawa, K. Iwamoto, T. Kikawa, K. Kin, T. Kobayashi, T. Koga, K. Matsushita, A. Minamino, T. Nakaya, G. Pintaudi, B. Quilain, Y. Seiya, K. Yamamoto, K. Yasutome, M. Yokoyama | |||||||
|
References: | ||||||||
| Line: 1 to 1 | ||||||||
|---|---|---|---|---|---|---|---|---|
| ||||||||
| Line: 6 to 6 | ||||||||
| A mandatory milestone in view of any future long baseline experiment is an industrial prototyping of the assumed detector and its experimental characterization. WA105 is aiming concrete prototyping effort of double-phase liquid argon TPC towards the envisioned large-scale detectors world wide, and an accompanying campaign of measurements aimed at assessing the systematic errors that will be affecting their intended physics programs based on various detector technologies.
French member : | ||||||||
| Changed: | ||||||||
| < < | J. Dumarchez, D. Autiero, S. Bolognesi, J. Dawson, I. de Bonis, D. Duchesneau, V. Galymov, C. Giganti, Y. Karyotis, J. Marteau, E. Mazzucato, T. Patzak, E. Pennachio, B. Popov, A. Tonnazzo, G. Vasseur, M. Zito, L. Zambelli | |||||||
| > > | J. Dumarchez, D. Autiero, S. Bolognesi, A. Chappuis, J. Dawson, I. de Bonis, D. Duchesneau, V. Galymov, C. Giganti, Y. Karyotakis, J. Marteau, E. Mazzucato, T. Patzak, E. Pennachio, B. Popov, A. Tonnazzo, G. Vasseur, M. Zito, L. Zambelli | |||||||
|
Japanese member : | ||||||||
| Changed: | ||||||||
| < < | T. Hasegawa, M. Friend, S. Kasai, T. Kishishita, T. Nakadaira, S. Narita, K. Negishi, K. Sakashita, M. Shoji, M. Tanaka, T. Uchida | |||||||
| > > | T. Hasegawa, L. Aizawa, M. Friend, H. Oba, S. Kasai, T. Kishishita,H. Konari, M. Kurokawa, Y. Kuromori, T. Nakadaira, S. Narita, K. Negishi, K. Sakashita, M. Shoji, M. Tanaka, T. Uchida | |||||||
|
References: [1] L.Agostino et al. (The LBNO-DEMO (WA105) Collaboration) arXiv:1409.4405 | ||||||||
| Line: 1 to 1 | ||||||||
|---|---|---|---|---|---|---|---|---|
| ||||||||
| Line: 24 to 24 | ||||||||
| Changed: | ||||||||
| < < | The knowledge of the neutrino interaction cross-section is one of the largest and most complicated systematics for present and future long-baseline neutrino oscillation experiments. As an example, LBNF aims at an impressive total systematic uncertainty of 1%, while the uncertainties due to neutrino cross-section in T2K are today larger than 5%. The aim of this project is to exploit the data from the T2K near detectors (ND280, INGRID) to improve the precision on neutrino interaction modeling. Moreover a dedicated water scintillator detector (WAGASCI) is being constructed to be installed on the same beamline. | |||||||
| > > | The knowledge of the neutrino interaction cross-section is one of the largest and most complicated systematics for present and future long-baseline neutrino oscillation experiments. As an example, LBNF aims at an impressive total systematic uncertainty of 1%, while the uncertainties due to neutrino cross-section in T2K are today larger than 5%. The aim of this project is to exploit the data from the T2K near detectors (ND280, INGRID) to improve the precision on neutrino interaction modeling and to design and build new improved near detectors for T2K-2 to address this issue. A dedicated water scintillator detector (WAGASCI) is being constructed, commissioned and ran during this project and an updated set od detectors for ND280 is being designed. | |||||||
|
French member : | ||||||||
| Changed: | ||||||||
| < < | S. Bolognesi, J. Dumarchez, O. Drapier, S. Emery, C. Giganti, M. Gonin, J. Imber, M. Lamoureux, T. Mueller, M. Zito | |||||||
| > > | S. Bolognesi, M; Buizza Avanzini, O. Drapier, J. Dumarchez, S. Emery, C. Giganti, M. Gonin, J. Imber, M. Lamoureux, M. Licciardi, T. Mueller, B. Popov, M. Zito | |||||||
|
Japanese member : | ||||||||
| Changed: | ||||||||
| < < | T. Tsukamoto, Y. Hayato, T. Kobayashi, A. Minamino, T. Nakaya, B. Quilain, Y. Seiya, K. Yamamoto, M. Yokoyama | |||||||
| > > | T. Tsukamoto, N. Chikuma, J. Harada, T. Hayashino, Y. Hayato, F. Hosomi, K. Kin, T. Kobayashi, T. Koga, A. Minamino, T. Nakaya, B. Quilain, Y. Seiya, K. Yamamoto, M. Yokoyama | |||||||
| Deleted: | ||||||||
| < < | References: [1] T2K Collaboration, Phys.Rev. D91 (2015) 7, 072010 [2] L.Alvarez-Ruso, Y.Hayato, J.Nieves, New J.Phys. 16 (2014) 075015 [3] Phys.Rev. D93 (2016) no.11, 112012 | |||||||
| Added: | ||||||||
| > > | References: [1] Phys.Rev.Lett. 118 (2017) no.15, 151801 [2] arXiv:1609.04111 [3] Phys.Rev. D93 (2016) no.11, 112012 | |||||||
|
Website: http://t2k-experiment.org/ | ||||||||
| Line: 1 to 1 | ||||||||
|---|---|---|---|---|---|---|---|---|
| ||||||||
| Deleted: | ||||||||
| < < | The Double Chooz experiment measures precisely the anti-electron-neutrino flux from Chooz reactor cores in Ardennes, using two large liquid-scintillator detectors located at distances of about 400m and 1000m. From this measurement, the value of the third neutrino-oscillation angle, theta_13, can be determined. It is one of the most important parameters in the neutrino research in the current decade. French member : A. Cabrera, J. Dawson, M. Fallot, D. Franco, T. Junqueira, H. de Kerret, T. Lasserre, G. Mention, A. Onillon M.Pequignot, A. Tonazzo, M. Vivier Japanese member : M. Kuze, T. Hara, M. Ishitsuka, M. Kanada, T. Kawasaki, T. Masubara F. Suekane, T. Sumiyoshi References: [1] Y. Abe et al. (Double Chooz collraboration), JHEP 10 (2014) 086 (submitted to JHEP). [2] Y. Abe et al. (Double Chooz collraboration), Phys. Lett. B735 (2014) 51-56. [3] Y. Abe et al. (Double Chooz collraboration), Phys. Lett. B723 (2013) 66-70. [4] Y. Abe et al. (Double Chooz collraboration), Phys. Rev. D 86 (2012) 052008. [5] Y. Abe et al. (Double Chooz collraboration), Phys. Rev. Lett. 108 (2012) 131801. -Phys. Rev. C 93 (2016) 054608. -JHEP 01 (2016) 163. -JHEP 10 (2014) 032. -Nucl. Instrum. Meth. A764 (2014) 330-339. -Phys. Rev. D87 (2013) 011102. Website: http://doublechooz.in2p3.fr/ http://dchooz.titech.jp.hep.net/ | |||||||
A mandatory milestone in view of any future long baseline experiment is an industrial prototyping of the assumed detector and its experimental characterization. WA105 is aiming concrete prototyping effort of double-phase liquid argon TPC towards the envisioned large-scale detectors world wide, and an accompanying campaign of measurements aimed at assessing the systematic errors that will be affecting their intended physics programs based on various detector technologies. French member : | ||||||||
| Changed: | ||||||||
| < < | J. Dumarchez, L. Agostino, D. Autiero, S. Bolognesi, J. Dawson, I. de Bonis, D. Duchesneau, V. Galymov, C. Giganti, J. Marteau, E. Mazzucato, T. Patzak, E. Pennachio, H. Pessard, B. Popov, A. Tonnazzo, G. Vasseur, M. Zito | |||||||
| > > | J. Dumarchez, D. Autiero, S. Bolognesi, J. Dawson, I. de Bonis, D. Duchesneau, V. Galymov, C. Giganti, Y. Karyotis, J. Marteau, E. Mazzucato, T. Patzak, E. Pennachio, B. Popov, A. Tonnazzo, G. Vasseur, M. Zito, L. Zambelli | |||||||
|
Japanese member : | ||||||||
| Changed: | ||||||||
| < < | T. Hasegawa, M. Friend, S. Kasai, H. Konari, M. Korokawa, Y. Kuromori, T. Nakadaira, S. Narita, K. Sakashita, M. Shoji, M. Tanaka, L. Zambelli | |||||||
| > > | T. Hasegawa, M. Friend, S. Kasai, T. Kishishita, T. Nakadaira, S. Narita, K. Negishi, K. Sakashita, M. Shoji, M. Tanaka, T. Uchida | |||||||
|
References: [1] L.Agostino et al. (The LBNO-DEMO (WA105) Collaboration) arXiv:1409.4405 | ||||||||
| Line: 70 to 21 | ||||||||
| Changed: | ||||||||
| < < | ||||||||
| > > | ||||||||
|
Summary: The knowledge of the neutrino interaction cross-section is one of the largest and most complicated systematics for present and future long-baseline neutrino oscillation experiments. As an example, LBNF aims at an impressive total systematic uncertainty of 1%, while the uncertainties due to neutrino cross-section in T2K are today larger than 5%. The aim of this project is to exploit the data from the T2K near detectors (ND280, INGRID) to improve the precision on neutrino interaction modeling. Moreover a dedicated water scintillator detector (WAGASCI) is being constructed to be installed on the same beamline. French member : | ||||||||
| Changed: | ||||||||
| < < | S. Bolognesi, M. Buizza Avanzini, O. Drapier, J. Dumarchez, S. Emery, C. Giganti, M. Gonin, J. Imber, M. Licciardi, T. Mueller, B. Popov, M. Zito | |||||||
| > > | S. Bolognesi, J. Dumarchez, O. Drapier, S. Emery, C. Giganti, M. Gonin, J. Imber, M. Lamoureux, T. Mueller, M. Zito | |||||||
|
Japanese member : | ||||||||
| Changed: | ||||||||
| < < | T. Tsukamoto, N.Chikuma, J. Harada, T. Hayashino, Y. Hayato, F. Hosomi, K. Kin, T. Kobayashi, T. Koga, A. Minamino, T. Nakaya, B. Quilain, Y. Seiya, K. Yamamoto, M. Yokoyama | |||||||
| > > | T. Tsukamoto, Y. Hayato, T. Kobayashi, A. Minamino, T. Nakaya, B. Quilain, Y. Seiya, K. Yamamoto, M. Yokoyama | |||||||
|
References: [1] T2K Collaboration, Phys.Rev. D91 (2015) 7, 072010 | ||||||||
| Line: 1 to 1 | ||||||||
|---|---|---|---|---|---|---|---|---|
| ||||||||
| Line: 58 to 58 | ||||||||
| J. Dumarchez, L. Agostino, D. Autiero, S. Bolognesi, J. Dawson, I. de Bonis, D. Duchesneau, V. Galymov, C. Giganti, J. Marteau, E. Mazzucato, T. Patzak, E. Pennachio, H. Pessard, B. Popov, A. Tonnazzo, G. Vasseur, M. Zito
Japanese member : | ||||||||
| Changed: | ||||||||
| < < | T. Hasegawa, S. Kasai, Y. Kuromori, T. Nakadaira, S. Narita, K. Sakashita, L. Zambelli | |||||||
| > > | T. Hasegawa, M. Friend, S. Kasai, H. Konari, M. Korokawa, Y. Kuromori, T. Nakadaira, S. Narita, K. Sakashita, M. Shoji, M. Tanaka, L. Zambelli | |||||||
|
References: [1] L.Agostino et al. (The LBNO-DEMO (WA105) Collaboration) arXiv:1409.4405 | ||||||||
| Line: 77 to 77 | ||||||||
| The aim of this project is to exploit the data from the T2K near detectors (ND280, INGRID) to improve the precision on neutrino interaction modeling. Moreover a dedicated water scintillator detector (WAGASCI) is being constructed to be installed on the same beamline.
French member : | ||||||||
| Changed: | ||||||||
| < < | S. Bolognesi, M. Buizza Avanzini, O. Drapier, J. Dumarchez, S. Emery, C. Giganti, M. Gonin, J. Imber, T. Mueller, B. Popov, M. Zito | |||||||
| > > | S. Bolognesi, M. Buizza Avanzini, O. Drapier, J. Dumarchez, S. Emery, C. Giganti, M. Gonin, J. Imber, M. Licciardi, T. Mueller, B. Popov, M. Zito | |||||||
|
Japanese member : | ||||||||
| Changed: | ||||||||
| < < | T. Tsukamoto, N.Chikuma, J. Harada, T. Hayashino, Y. Hayato, F. Hosomi, K. Kin, T. Kobayashi, T. Koga, A. Minamino, T. Nakaya, Y. Seiya, K. Yamamoto, M. Yokoyama | |||||||
| > > | T. Tsukamoto, N.Chikuma, J. Harada, T. Hayashino, Y. Hayato, F. Hosomi, K. Kin, T. Kobayashi, T. Koga, A. Minamino, T. Nakaya, B. Quilain, Y. Seiya, K. Yamamoto, M. Yokoyama | |||||||
|
References: [1] T2K Collaboration, Phys.Rev. D91 (2015) 7, 072010 [2] L.Alvarez-Ruso, Y.Hayato, J.Nieves, New J.Phys. 16 (2014) 075015 | ||||||||
| Added: | ||||||||
| > > | [3] Phys.Rev. D93 (2016) no.11, 112012 | |||||||
|
Website: http://t2k-experiment.org/ | ||||||||
| Line: 1 to 1 | ||||||||
|---|---|---|---|---|---|---|---|---|
| ||||||||
| Line: 11 to 11 | ||||||||
| J. Dawson, M. Fallot, D. Franco, | ||||||||
| Changed: | ||||||||
| < < | V. Fisher, | |||||||
| > > | T. Junqueira, | |||||||
| H. de Kerret, T. Lasserre, G. Mention, | ||||||||
| Added: | ||||||||
| > > | A. Onillon | |||||||
| M.Pequignot, A. Tonazzo, M. Vivier | ||||||||
| Line: 23 to 24 | ||||||||
| M. Kuze, T. Hara, M. Ishitsuka, | ||||||||
| Added: | ||||||||
| > > | M. Kanada, | |||||||
| T. Kawasaki, | ||||||||
| Added: | ||||||||
| > > | T. Masubara | |||||||
| F. Suekane,
T. Sumiyoshi
References: | ||||||||
| Changed: | ||||||||
| < < | [1] Y. Abe et al. (Double Chooz collraboration), arXiv:1406.7763 | |||||||
| > > | [1] Y. Abe et al. (Double Chooz collraboration), JHEP 10 (2014) 086 | |||||||
| (submitted to JHEP). [2] Y. Abe et al. (Double Chooz collraboration), Phys. Lett. B735 (2014) 51-56. [3] Y. Abe et al. (Double Chooz collraboration), Phys. Lett. B723 (2013) 66-70. [4] Y. Abe et al. (Double Chooz collraboration), Phys. Rev. D 86 (2012) 052008. | ||||||||
| Changed: | ||||||||
| < < | [5] Y. Abe et al. (Double Chooz collraboration), Phys. Rev. Lett. 108 (2012) 131801. | |||||||
| > > | [5] Y. Abe et al. (Double Chooz collraboration), Phys. Rev. Lett. 108 (2012) 131801. -Phys. Rev. C 93 (2016) 054608. -JHEP 01 (2016) 163. -JHEP 10 (2014) 032. -Nucl. Instrum. Meth. A764 (2014) 330-339. -Phys. Rev. D87 (2013) 011102. | |||||||
|
Website: http://doublechooz.in2p3.fr/ | ||||||||
| Line: 1 to 1 | ||||||||
|---|---|---|---|---|---|---|---|---|
| ||||||||
| Line: 43 to 43 | ||||||||
|
| ||||||||
| Changed: | ||||||||
| < < | Summary: | |||||||
| > > | Summary: A mandatory milestone in view of any future long baseline experiment is an industrial prototyping of the assumed detector and its experimental characterization. WA105 is aiming concrete prototyping effort of double-phase liquid argon TPC towards the envisioned large-scale detectors world wide, and an accompanying campaign of measurements aimed at assessing the systematic errors that will be affecting their intended physics programs based on various detector technologies. | |||||||
|
French member : J. Dumarchez, L. Agostino, D. Autiero, S. Bolognesi, J. Dawson, I. de Bonis, D. Duchesneau, V. Galymov, C. Giganti, J. Marteau, E. Mazzucato, T. Patzak, E. Pennachio, H. Pessard, B. Popov, A. Tonnazzo, G. Vasseur, M. Zito | ||||||||
| Line: 52 to 53 | ||||||||
| T. Hasegawa, S. Kasai, Y. Kuromori, T. Nakadaira, S. Narita, K. Sakashita, L. Zambelli
References: | ||||||||
| Added: | ||||||||
| > > | [1] L.Agostino et al. (The LBNO-DEMO (WA105) Collaboration) arXiv:1409.4405 [2] S.K.Agarwalla et al. (The LAGUNA-LBNO Collaboration) JHEP 05 (2014) 094 | |||||||
|
Website: | ||||||||
| Added: | ||||||||
| > > | http://lbnodemo.ethz.ch:8080/Plone | |||||||
|
| ||||||||
| Line: 1 to 1 | ||||||||
|---|---|---|---|---|---|---|---|---|
| ||||||||
| Line: 35 to 35 | ||||||||
| [4] Y. Abe et al. (Double Chooz collraboration), Phys. Rev. D 86 (2012) 052008. [5] Y. Abe et al. (Double Chooz collraboration), Phys. Rev. Lett. 108 (2012) 131801. | ||||||||
| Changed: | ||||||||
| < < | website: | |||||||
| > > | Website: | |||||||
| http://doublechooz.in2p3.fr/ http://dchooz.titech.jp.hep.net/ | ||||||||
| Line: 49 to 49 | ||||||||
| J. Dumarchez, L. Agostino, D. Autiero, S. Bolognesi, J. Dawson, I. de Bonis, D. Duchesneau, V. Galymov, C. Giganti, J. Marteau, E. Mazzucato, T. Patzak, E. Pennachio, H. Pessard, B. Popov, A. Tonnazzo, G. Vasseur, M. Zito
Japanese member : | ||||||||
| Changed: | ||||||||
| < < | M. T. Hasegawa, S. Kasai, Y. Kuromori, T. Nakadaira, S. Narita, K. Sakashita, L. Zambelli | |||||||
| > > | T. Hasegawa, S. Kasai, Y. Kuromori, T. Nakadaira, S. Narita, K. Sakashita, L. Zambelli | |||||||
|
References: | ||||||||
| Changed: | ||||||||
| < < | website: | |||||||
| > > | Website: | |||||||
|
| ||||||||
| Line: 74 to 74 | ||||||||
| [1] T2K Collaboration, Phys.Rev. D91 (2015) 7, 072010 [2] L.Alvarez-Ruso, Y.Hayato, J.Nieves, New J.Phys. 16 (2014) 075015 | ||||||||
| Changed: | ||||||||
| < < | website: | |||||||
| > > | Website: | |||||||
| http://t2k-experiment.org/ | ||||||||
| Line: 1 to 1 | ||||||||
|---|---|---|---|---|---|---|---|---|
| ||||||||
| Changed: | ||||||||
| < < | Summary: The Double Chooz experiment measures precisely the anti-electron-neutrino flux from Chooz reactor cores in Ardennes, using two large | |||||||
| > > | Summary: The Double Chooz experiment measures precisely the anti-electron-neutrino flux from Chooz reactor cores in Ardennes, using two large | |||||||
| liquid-scintillator detectors located at distances of about 400m and 1000m. From this measurement, the value of the third neutrino-oscillation angle, theta_13, can be determined. It is one of the most important parameters in the neutrino research in the current decade.
French member : | ||||||||
| Line: 27 to 28 | ||||||||
| T. Sumiyoshi
References: | ||||||||
| Changed: | ||||||||
| < < | Y. Abe et al. (Double Chooz collraboration), arXiv:1406.7763 | |||||||
| > > | [1] Y. Abe et al. (Double Chooz collraboration), arXiv:1406.7763 | |||||||
| (submitted to JHEP). | ||||||||
| Changed: | ||||||||
| < < | Y. Abe et al. (Double Chooz collraboration), Phys. Lett. B735 (2014) 51-56. Y. Abe et al. (Double Chooz collraboration), Phys. Lett. B723 (2013) 66-70. Y. Abe et al. (Double Chooz collraboration), Phys. Rev. D 86 (2012) 052008. Y. Abe et al. (Double Chooz collraboration), Phys. Rev. Lett. 108 (2012) 131801. | |||||||
| > > | [2] Y. Abe et al. (Double Chooz collraboration), Phys. Lett. B735 (2014) 51-56. [3] Y. Abe et al. (Double Chooz collraboration), Phys. Lett. B723 (2013) 66-70. [4] Y. Abe et al. (Double Chooz collraboration), Phys. Rev. D 86 (2012) 052008. [5] Y. Abe et al. (Double Chooz collraboration), Phys. Rev. Lett. 108 (2012) 131801. | |||||||
|
website: http://doublechooz.in2p3.fr/ | ||||||||
| Line: 59 to 60 | ||||||||
|
| ||||||||
| Changed: | ||||||||
| < < | Summary: | |||||||
| > > | Summary: The knowledge of the neutrino interaction cross-section is one of the largest and most complicated systematics for present and future long-baseline neutrino oscillation experiments. As an example, LBNF aims at an impressive total systematic uncertainty of 1%, while the uncertainties due to neutrino cross-section in T2K are today larger than 5%. The aim of this project is to exploit the data from the T2K near detectors (ND280, INGRID) to improve the precision on neutrino interaction modeling. Moreover a dedicated water scintillator detector (WAGASCI) is being constructed to be installed on the same beamline. | |||||||
|
French member : S. Bolognesi, M. Buizza Avanzini, O. Drapier, J. Dumarchez, S. Emery, C. Giganti, M. Gonin, J. Imber, T. Mueller, B. Popov, M. Zito Japanese member : | ||||||||
| Changed: | ||||||||
| < < | T. Tsukamoto, Y. Hayato, T. Kobayashi, A. Minamino, T. Nakaya, Y. Seiya, K. Yamamoto, M. Yokoyama | |||||||
| > > | T. Tsukamoto, N.Chikuma, J. Harada, T. Hayashino, Y. Hayato, F. Hosomi, K. Kin, T. Kobayashi, T. Koga, A. Minamino, T. Nakaya, Y. Seiya, K. Yamamoto, M. Yokoyama | |||||||
|
References: | ||||||||
| Added: | ||||||||
| > > | [1] T2K Collaboration, Phys.Rev. D91 (2015) 7, 072010 [2] L.Alvarez-Ruso, Y.Hayato, J.Nieves, New J.Phys. 16 (2014) 075015 | |||||||
|
website: | ||||||||
| Added: | ||||||||
| > > | http://t2k-experiment.org/ | |||||||
|
| ||||||||
| Line: 1 to 1 | ||||||||
|---|---|---|---|---|---|---|---|---|
| Added: | ||||||||
| > > |
A. Cabrera, J. Dawson, M. Fallot, D. Franco, V. Fisher, H. de Kerret, T. Lasserre, G. Mention, M.Pequignot, A. Tonazzo, M. Vivier Japanese member : M. Kuze, T. Hara, M. Ishitsuka, T. Kawasaki, F. Suekane, T. Sumiyoshi References: Y. Abe et al. (Double Chooz collraboration), arXiv:1406.7763 (submitted to JHEP). Y. Abe et al. (Double Chooz collraboration), Phys. Lett. B735 (2014) 51-56. Y. Abe et al. (Double Chooz collraboration), Phys. Lett. B723 (2013) 66-70. Y. Abe et al. (Double Chooz collraboration), Phys. Rev. D 86 (2012) 052008. Y. Abe et al. (Double Chooz collraboration), Phys. Rev. Lett. 108 (2012) 131801. website: http://doublechooz.in2p3.fr/ http://dchooz.titech.jp.hep.net/ J. Dumarchez, L. Agostino, D. Autiero, S. Bolognesi, J. Dawson, I. de Bonis, D. Duchesneau, V. Galymov, C. Giganti, J. Marteau, E. Mazzucato, T. Patzak, E. Pennachio, H. Pessard, B. Popov, A. Tonnazzo, G. Vasseur, M. Zito Japanese member : M. T. Hasegawa, S. Kasai, Y. Kuromori, T. Nakadaira, S. Narita, K. Sakashita, L. Zambelli References: website: S. Bolognesi, M. Buizza Avanzini, O. Drapier, J. Dumarchez, S. Emery, C. Giganti, M. Gonin, J. Imber, T. Mueller, B. Popov, M. Zito Japanese member : T. Tsukamoto, Y. Hayato, T. Kobayashi, A. Minamino, T. Nakaya, Y. Seiya, K. Yamamoto, M. Yokoyama References: website: | |||||||