publication:2025:start
文書の過去の版を表示しています。
2025年度
Machine Learning-Assisted Unfolding for Neutrino Cross-section Measurements with the OmniFold Technique,
Roger G. Huang, Andrew Cudd, Masaki Kawaue, Tatsuya Kikawa, Benjamin Nachman, Vinicius Mikuni, Callum Wilkinson,
Phys. Rev. D 112, 012008 (2025),
arXiv:2504.06857
Development and Performance Evaluation of a Water-Based Liquid Scintillator Tracking Detector with Wavelength-Shifting Fiber Readout ,
Naoto Onda , Yuka Asano , Takashi Iida , Tatsuya Kikawa , Tsuyoshi Nakaya , Atsushi Tokiyasu , Daiki Wakabayashi
Prog. Theor. Exp. Phys. 2025, 12, (2025),
arXiv:2507.18893
Implementation of a relativistic distorted wave impulse approximation model into the NEUT event generator,
Jake McKean, Raul González-Jiménez, Monireh Kabirnezhad, Jose Manuel Udías, Yoshi Uchida
Phys. Rev. D 112, 032009 (2025),
arXiv:2502.10629
Benchmarking neutrino-nucleus quasielastic scattering model predictions against a missing energy profile obtained using a monoenergetic neutrino beam,
Jake McKean, Laura Munteanu, Seisho Abe
Preprint (2026),
arXiv:2601.14831
AXEL: High pressure Xe gas TPC for neutrinoless double-beta decay search,
J. Hikida, S. Akiyama, S. Ban, M. Hirose, A.K. Ichikawa, Y. Iwashita, T. Kikawa, Y. Nakajima, K.D. Nakamura, T. Nakaya, S. Obara, K. Sakashita, H. Sekiya, M. Yoshida, B. Sugashima, S. Urano, S. Hatsumi, S. Kobayashi, H. Sasaki, L. Evan,
Nuclear Inst. and Methods in Physics Research, A 1080 (2025) 170706
publication/2025/start.1772682977.txt.gz · 最終更新: 2026/03/05 03:56 by neutrino