Mark Vagins
University of California, Irvine · Physics & Astronomy
Active 1985–2025
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Research topics
- Physics
- Particle physics
- Nuclear physics
- Astronomy
- Artificial Intelligence
- Astrophysics
- Optics
- Machine Learning
- Computer Science
- Environmental science
Selected publications
Constraint on the matter–antimatter symmetry-violating phase in neutrino oscillations
Nature · 2020 · 430 citations
The charge-conjugation and parity-reversal (CP) symmetry of fundamental particles is a symmetry between matter and antimatter. Violation of this CP symmetry was first observed in 19641, and CP violation in the weak interactions of quarks was soon established2. Sakharov proposed3 that CP violation is necessary to explain the observed imbalance of matter and antimatter abundance in the Universe. However, CP violation in quarks is too small to support this explanation. So far, CP violation has not…
Volume I. Introduction to DUNE
Journal of Instrumentation · 2020 · 401 citations
A.4 Constraining the flux in the ND A.4.1 Neutrino-electron elastic scattering A.4.2 The low- method A.4.3 Coherent neutrino-nucleus scattering A.4.4 Beam e content A.5 Movable components of the ND and the DUNE-PRISM program A.5.1 Introduction to DUNE-PRISM A.5.2 LArTPC component in the DUNE ND: ArgonCube A.5.3 Multipurpose detector A.5.4 The DUNE-PRISM program A.6 Fixed on-axis component of the DUNE ND A.6.1 Motivation and introduction A.6.2 Three-dimensional projection scintillator tracker spe…
Long-baseline neutrino oscillation physics potential of the DUNE experiment
The European Physical Journal C · 2020 · 239 citations
The sensitivity of the Deep Underground Neutrino Experiment (DUNE) to neutrino oscillation is determined, based on a full simulation, reconstruction, and event selection of the far detector and a full simulation and parameterized analysis of the near detector. Detailed uncertainties due to the flux prediction, neutrino interaction model, and detector effects are included. DUNE will resolve the neutrino mass ordering to a precision of 5$σ$, for all $δ_{\mathrm{CP}}$ values, after 2 years of runni…
Long-Baseline Neutrino Facility (LBNF) and Deep Underground Neutrino Experiment (DUNE)
arXiv (Cornell University) · 2016-01-12 · 227 citations
articleOpen accessThis document presents the Conceptual Design Report (CDR) put forward by an international neutrino community to pursue the Deep Underground Neutrino Experiment at the Long-Baseline Neutrino Facility (LBNF/DUNE), a groundbreaking science experiment for long-baseline neutrino oscillation studies and for neutrino astrophysics and nucleon decay searches. The DUNE far detector will be a very large modular liquid argon time-projection chamber (LArTPC) located deep underground, coupled to the LBNF mult…
Deep Underground Neutrino Experiment (DUNE) Near Detector Conceptual Design Report
Instruments · 2021 · 206 citations
The Deep Underground Neutrino Experiment (DUNE) is an international, world-class experiment aimed at exploring fundamental questions about the universe that are at the forefront of astrophysics and particle physics research. DUNE will study questions pertaining to the preponderance of matter over antimatter in the early universe, the dynamics of supernovae, the subtleties of neutrino interaction physics, and a number of beyond the Standard Model topics accessible in a powerful neutrino beam. A c…
Frequent coauthors
- 1308 shared
E. Kearns
The University of Tokyo
- 1210 shared
Y. Takeuchi
University of Regina
- 1101 shared
M. Nakahata
The University of Tokyo
- 1075 shared
Y. Hayato
- 1074 shared
C. K. Jung
Stony Brook University
- 1049 shared
Y. Suzuki
Kobe University
- 929 shared
B. Popov
European Organization for Nuclear Research
- 883 shared
K. Scholberg
Education
- 1994
Ph.D., Physics
Yale University
- 1987
B.S., Physics
California Institute of Technology
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