Conveners
WG6 — Near Detectors & Time Projection Chambers
- Akira Takenaka (Tsung-Dao Lee Institute, Shanghai Jiao Tong University)
-
Camilla Forza9/1/26, 2:00 PMWG6: Detector PhysicsOral contribution
The T2K experiment has recently completed the upgrade of its off-axis near detector, ND280. Two new gaseous High-Angle Time Projection Chambers (HA-TPCs) have been installed above and below the highly segmented scintillator active target, the Super-Fine Grained Detector (SFGD), to precisely track particles emitted at large angles with respect to the beam direction. The two new gaseous...
Go to contribution page -
Giovanni Ferrante (INFN, Section of Milano Bicocca)9/1/26, 2:25 PMWG6: Detector PhysicsOral contribution
The Taishan Antineutrino Observatory (JUNO-TAO) is a satellite detector of the Jiangmen Underground Neutrino Observatory (JUNO), located 44 m from the 4.6 GW$_{\mathrm{th}}$ core of Unit 1 of the Taishan Nuclear Power Plant. Its primary goal is a precision measurement of the reactor electron-antineutrino ($\bar{\nu}_e$) spectrum with unprecedented energy resolution, providing a...
Go to contribution page -
Shailesh Pincha (Indian Institute of Technology Guwahati)9/1/26, 2:50 PMWG6: Detector PhysicsOral contribution
DUNE is a future long-baseline neutrino oscillation experiment hosted by Fermilab, USA. It aims to measure neutrino oscillation properties with high precision, supernova and solar neutrinos, and possible signatures of nucleon decay. To measure neutrino oscillation parameters, it uses a beam produced at Fermilab and detects the oscillated neutrinos in a 70 kton Liquid Argon TPC volume (divided...
Go to contribution page -
63. Analysis of Muon Neutrino Interactions in the Upgraded Near Detector ND280 of the T2K ExperimentDaria Fedorova (INR RAS)9/1/26, 3:15 PMWG1: Neutrino Oscillation PhysicsOral contribution
The Tokai-to-Kamioka (Т2K) experiment is a long-baseline neutrino oscillation experiment designed to precisely measure oscillation parameters and search for CP violation in lepton sector using an intense muon (anti)neutrino beam. The experimental setup consists of the J-PARC proton accelerator complex, the near detector ND280, and the far Super-Kamiokande water Cherenkov detector. Data from...
Go to contribution page