Papers
Topics
Authors
Recent
Assistant
AI Research Assistant
Well-researched responses based on relevant abstracts and paper content.
Custom Instructions Pro
Preferences or requirements that you'd like Emergent Mind to consider when generating responses.
Gemini 2.5 Flash
Gemini 2.5 Flash 165 tok/s
Gemini 2.5 Pro 53 tok/s Pro
GPT-5 Medium 28 tok/s Pro
GPT-5 High 30 tok/s Pro
GPT-4o 127 tok/s Pro
Kimi K2 200 tok/s Pro
GPT OSS 120B 433 tok/s Pro
Claude Sonnet 4.5 32 tok/s Pro
2000 character limit reached

Measurement of $γ$-rays generated by neutron interaction with ${}^{16}$O at 30 MeV and 250 MeV (2405.15366v3)

Published 24 May 2024 in nucl-ex and hep-ex

Abstract: Deep understanding of $\gamma$-ray production from the fast neutron reaction in water is crucial for various physics studies at large-scale water Cherenkov detectors. We performed test experiments using quasi-mono energetic neutron beams ($E_n = 30$ and 250~MeV) at Osaka University's Research Center for Nuclear Physics to measure $\gamma$-rays originating from the neutron-oxygen reaction with a high-purity germanium detector. Multiple $\gamma$-ray peaks which are expected to be from excited nuclei after the neutron-oxygen reaction were successfully observed. We measured the neutron beam flux by using a liquid scintillator for the cross section measurement. With a spectral fitting analysis based on the tailored $\gamma$-ray signal and background templates, we measured cross sections for each observed $\gamma$-ray component. The results will be useful to validate neutron models employed in the on-going and future water Cherenkov experiments.

Definition Search Book Streamline Icon: https://streamlinehq.com
References (21)
  1. S. Fukuda et al. Nucl. Instrum. Meth., A501:418–462, 2003.
  2. K. Abe et al. arXiv, 1109.3262 [hep-ex].
  3. M. Harada et al. Search for Astrophysical Electron Antineutrinos in Super-Kamiokande with 0.01% Gadolinium-loaded Water. Astrophys. J. Lett., 951(2):L27, 2023.
  4. K. Abe et al. Measurement of the neutrino-oxygen neutral-current interaction cross section by observing nuclear deexcitation γ𝛾\gammaitalic_γ rays. Physical Review D, 90(7):072012, 2014.
  5. K. Abe et al. Measurement of neutrino and antineutrino neutral-current quasielasticlike interactions on oxygen by detecting nuclear deexcitation γ𝛾\gammaitalic_γ rays. Physical Review D, 100(11):112009, 2019.
  6. L. Wan et al. Measurement of the neutrino-oxygen neutral-current quasielastic cross section using atmospheric neutrinos at Super-Kamiokande. Physical Review D, 99(3):032005, 2019.
  7. S. Sakai et al. Measurement of the neutrino-oxygen neutral-current quasielastic cross section using atmospheric neutrinos in the SK-Gd experiment. Physical Review D, 109(1):L011101, 2024.
  8. Analysis of γ𝛾\gammaitalic_γ-Ray Production in Neutral-Current Neutrino-Oxygen Interactions at Energies above 200 MeV. Physical Review Letters, 108(5):052505, 2012.
  9. Neutron knockout in neutral-current neutrino-oxygen interactions. Physical Review D, 88(9):093004, 2013.
  10. Measurement of γ𝛾\gammaitalic_γ -ray production via the neutron-16O reaction using a 77 MeV quasimonoenergetic neutron beam. Physical Review C, 109(1):014620, 2024.
  11. D. Sato et al. JAEA-Data/Code 2006-023, 2006.
  12. Y. Iwamoto et al. Nucl. Instr. and Meth. Phys. Res. A, 804, 2015.
  13. Separation of gamma-ray and neutron events with CsI(Tl) pulse shape analysis. Progress of Theoretical and Experimental Physics, 2018(4):043H01, 2018.
  14. S. Agostinelli et al. Nuclear Instruments and Methods in Physics Research Section A: Accelerators, 506:250 – 303, 2003.
  15. F. James and M. Roos. Minuit: A System for Function Minimization and Analysis of the Parameter Errors and Correlations. Comput. Phys. Commun., 10:343–367, 1975.
  16. A. Michaudon R. O. Nelson, M. B. Chadwick and P. G. Young. High-resolution measurements and calculations of photon-production cross sections for O16superscriptO16{}^{16}\mathrm{O}start_FLOATSUPERSCRIPT 16 end_FLOATSUPERSCRIPT roman_O(n,xγ𝛾\gammaitalic_γ) reactions induced by neutrons with energies between 4 and 200 mev. Nuclear Science and Engineering, 138(2):105–144, 2001.
  17. Cross sections for production of the 15.10-mev and other astrophysically significant gamma-ray lines through excitation and spallation of C12superscriptC12{}^{12}\mathrm{C}start_FLOATSUPERSCRIPT 12 end_FLOATSUPERSCRIPT roman_C and O16superscriptO16{}^{16}\mathrm{O}start_FLOATSUPERSCRIPT 16 end_FLOATSUPERSCRIPT roman_O with protons. Phys. Rev. C, 35:1214–1227, Apr 1987.
  18. R. Akustu et al. Study of neutrons associated with neutrino and anti-neutrino interactions on water at T2K. Journal of Physics: Conference Series, 1468(1):012123, 2020.
  19. R. Akutsu. Ph.D Thesis, The University of Tokyo, 2019.
  20. The geant4 bertini cascade. Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 804:175–188, 2015.
  21. New potentialities of the liège intranuclear cascade model for reactions induced by nucleons and light charged particles. Phys. Rev. C, 87:014606, Jan 2013.

Summary

We haven't generated a summary for this paper yet.

Lightbulb Streamline Icon: https://streamlinehq.com

Continue Learning

We haven't generated follow-up questions for this paper yet.

List To Do Tasks Checklist Streamline Icon: https://streamlinehq.com

Collections

Sign up for free to add this paper to one or more collections.

X Twitter Logo Streamline Icon: https://streamlinehq.com

Tweets

This paper has been mentioned in 2 tweets and received 1 like.

Upgrade to Pro to view all of the tweets about this paper: