World's Best Scientists 2026 revealed!

D-Index & Metrics

Physics

D-Index
71
Citations
38032
World Ranking
3604
National Ranking
1687

Overview

S. Mine is affiliated with the University of California, Irvine in the United States. Their research is predominantly situated in the fields of Physics and Astronomy, with a primary focus on Nuclear and High Energy Physics. Additional subfields of their work include Radiation, Astronomy and Astrophysics, Electrical and Electronic Engineering, and Biomedical Engineering.

The scientist's research topics cover a range of specialized areas, including:

  • Neutrino Physics Research
  • Astrophysics and Cosmic Phenomena
  • Particle physics theoretical and experimental studies
  • Dark Matter and Cosmic Phenomena
  • Radiation Detection and Scintillator Technologies
  • Gamma-ray bursts and supernovae
  • Particle Detector Development and Performance

The work of S. Mine has been published extensively, with notable publication venues including:

  • Physical review. D/Physical review. D.
  • arXiv (Cornell University)
  • The Astrophysical Journal
  • Physical Review Letters
  • Digital Access to Libraries

Collaboration features prominently in their research, with frequent co-authors comprising:

  • Y. Hayato
  • M. Nakahata
  • T. Yano
  • Y. Takemoto
  • E. Kearns

Selected recent papers illustrate the scope and focus of their research:

  • First gadolinium loading to Super-Kamiokande, 2022, Digital Access to Libraries
  • Diffuse supernova neutrino background search at Super-Kamiokande, 2021, Physical review. D/Physical review. D.
  • Search for Astrophysical Electron Antineutrinos in Super-Kamiokande with 0.01% Gadolinium-loaded Water, 2023, The Astrophysical Journal Letters
  • Search for Cosmic-Ray Boosted Sub-GeV Dark Matter Using Recoil Protons at Super-Kamiokande, 2023, Physical Review Letters
  • Solar neutrino measurements using the full data period of Super-Kamiokande-IV, 2024, Physical review. D/Physical review. D.

The research contributions emphasize experimental and theoretical approaches in neutrino physics, dark matter studies, and particle detector technologies. Projects often involve large-scale particle detection and measurement efforts, reflecting the intersection of astrophysical observation and particle physics methodologies.

Best Publications

  • Evidence for oscillation of atmospheric neutrinos

    Y. Fukuda;T. Hayakawa;E. Ichihara;K. Inoue

  • Solar 8B and hep Neutrino Measurements from 1258 Days of Super-Kamiokande Data

    Y. Fukuda;M. Ishitsuka;Y. Itow;T. Kajita

  • Indications of neutrino oscillation in a 250 km long-baseline experiment.

    M. H. Ahn;S. Aoki;H. Bhang;S. Boyd

  • Measurement of atmospheric neutrino oscillation parameters by Super-Kamiokande I

    Y. Ashie;J. Hosaka;K. Ishihara;Y. Itow

  • The Super-Kamiokande detector

    S. Fukuda;Y. Fukuda;T. Hayakawa;E. Ichihara

  • Constraints on neutrino oscillations using 1258 days of Super-Kamiokande solar neutrino data.

    S. Fukuda;Y. Fukuda;M. Ishitsuka;Y. Itow

  • Determination of solar neutrino oscillation parameters using 1496 days of Super-Kamiokande-I data

    S. Fukuda;Y. Fukuda;M. Ishitsuka;Y. Itow

  • Measurement of the Flux and Zenith-Angle Distribution of Upward Throughgoing Muons by Super-Kamiokande

    Y. Fukuda;T. Hayakawa;E. Ichihara;K. Inoue

  • Evidence for an Oscillatory Signature in Atmospheric Neutrino Oscillations

    Y. Ashie;J. Hosaka;K. Ishihara;Y. Itow

  • Solar neutrino measurements in Super-Kamiokande-II

    J. P. Cravens;K. Abe;T. Iida;K. Ishihara

  • Evidence for Muon Neutrino Oscillation in an Accelerator-Based Experiment

    E. Aliu;S. Andringa;S. Aoki;J. Argyriades

  • Solar neutrino results in Super-Kamiokande-III

    K. Abe;Y. Hayato;T. Iida;M. Ikeda;M. Ikeda

  • Measurement of the Solar Neutrino Energy Spectrum Using Neutrino-Electron Scattering

    Y. Fukuda;T. Hayakawa;E. Ichihara;K. Inoue

  • CONSTRAINTS ON NEUTRINO OSCILLATION PARAMETERS FROM THE MEASUREMENT OF DAY-NIGHT SOLAR NEUTRINO FLUXES AT SUPER-KAMIOKANDE

    Y. Fukuda;T. Hayakawa;E. Ichihara;K. Inoue

  • Search for dark matter WIMPs using upward through-going muons in Super-Kamiokande

    S. Desai;Y. Ashie;S. Fukuda;Y. Fukuda

  • Atmospheric neutrino oscillation analysis with subleading effects in Super-Kamiokande I, II, and III

    R. Wendell;C. Ishihara;K. Abe;Y. Hayato

  • Hyper-Kamiokande Design Report

    K. Abe;I. Anghel;S. Playfer;O. Drapier

  • Detection of accelerator produced neutrinos at a distance of 250-km

    S. H. Ahn;S. An;S. Aoki;H. G. Berns

  • Search for neutrinos from annihilation of captured low-mass dark matter particles in the Sun by Super-Kamiokande

    K. Choi;K. Abe;K. Abe;Y. Haga;Y. Hayato;Y. Hayato

  • Three flavor neutrino oscillation analysis of atmospheric neutrinos in Super-Kamiokande

    J. Hosaka;K. Ishihara;J. Kameda;Y. Koshio

Frequent Co-Authors

Kate Scholberg
Kate Scholberg Duke University
Y. Hayato
Y. Hayato University of Tokyo
C. W. Walter
C. W. Walter Duke University
Takaaki Kajita
Takaaki Kajita University of Tokyo
C. K. Jung
C. K. Jung Stony Brook University
E. Kearns
E. Kearns Boston University
S. Moriyama
S. Moriyama University of Tokyo
Yoshitaka Itow
Yoshitaka Itow Nagoya University
Ko Okumura
Ko Okumura Juntendo University
Y. Totsuka
Y. Totsuka University of Tokyo

If you think any of the details on this page are incorrect, let us know.

Report an issue

We appreciate your kind effort to assist us to improve this page, it would be helpful providing us with as much detail as possible in the text box below:

Best Scientists Citing S. Mine

Trending Scientists