logo
ResearchBunny Logo
Optical imaging of muons

Physics

Optical imaging of muons

S. Yamamoto, K. Ninomiya, et al.

Discover the exciting world of optical imaging in muon research, conducted by Seiichi Yamamoto, Kazuhiko Ninomiya, Naritoshi Kawamura, and Yoshiyuki Hirano. This study reveals how distinct images from water and plastic scintillator can provide insights into muon ranges and asymmetry, paving the way for innovative applications in quality assessment and future muon radiotherapy.... show more
Abstract
Optical imaging of particle beams is a promising method for range and width estimations. However it was not clear that optical imaging was possible for muons. To clarify this, we conducted optical imaging of muons, since high-intensity muons are now available at J-PARC. We irradiated positive muons with different momenta to water or plastic scintillator block, and imaged using a charge-coupled device (CCD) camera during irradiation. The water and plastic scintillator block produced quite different images. The images of water during irradiation of muons produced elliptical shape light distribution at the end of the ranges due to Cherenkov-light from the positrons produced by positive muon decay, while, for the plastic scintillator block, we measured images similar to the dose distributions. We were able to estimate the ranges of muons as well as the measurement of the asymmetry of the direction of the positron emission by the muon decays from the optical images of the water, although the measured ranges were 4 mm to 5 mm larger than the calculated values. The ranges and widths of the beams could also be estimated from the optical images of the plastic scintillator block. We confirmed that optical imaging of muons was possible and is a promising method for the quality assessment, research of muons, and the future muon radiotherapy.
Publisher
Scientific Reports
Published On
Nov 26, 2020
Authors
Seiichi Yamamoto, Kazuhiko Ninomiya, Naritoshi Kawamura, Yoshiyuki Hirano
Tags
optical imaging
muons
J-PARC
Cherenkov light
plastic scintillator
radiotherapy
Listen, Learn & Level Up
Over 10,000 hours of research content in 25+ fields, available in 12+ languages.
No more digging through PDFs, just hit play and absorb the world's latest research in your language, on your time.
listen to research audio papers with researchbunny