Recoil-proton track imaging as a new way for neutron spectrometry measurements

  • Jing Hu
  • , Jinliang Liu
  • , Zhongbing Zhang
  • , Liang Chen
  • , Yuhang Guo
  • , Shiyi He
  • , Mengxuan Xu
  • , Leidang Zhou
  • , Zhiming Yao
  • , Xingqiu Yuan
  • , Qingmin Zhang
  • , Xiaoping Ouyang

Research output: Contribution to journalArticlepeer-review

8 Scopus citations

Abstract

Recoil-proton track imaging (RPTI) is an attractive technique to optically record the tracks of recoil protons in scintillation gas by using realtime imaging devices. For the first time, its use as an online nuclear track detector for neutron spectrometry measurements (NSM) is explored. Based on the RPTI methodology for NSM, a very basic detector system is designed, consisting of the neutron-to-proton recoil system and proton track imaging system. Satisfactory performance of the RPTI neutron spectrometer has been examined with a series of Monte Carlo simulations. Moreover, using well-defined line-proton sources from a tandem accelerator, the capability of the detector for imaging proton tracks at the single-particle level in real time has been validated in preliminary experiments. From the clear single proton tracks in the images, the proton ranges were easily distinguished, and precise proton energy spectra were unfolded, laying a solid experimental foundation for the future implementation of NSM.

Original languageEnglish
Article number13363
JournalScientific Reports
Volume8
Issue number1
DOIs
StatePublished - 1 Dec 2018

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