Real-time portable muography with Hankuk Atmospheric-muon Wide Landscaping : HAWL

Fuente: arXiv
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Main Authors: Seo, J., Carlin, N., Cavalcante, D. F. F. S., Chung, J. S., Franca, L. E., Ha, C., Kim, J., Kim, J. Y., Kimku, H., Koh, B. C., Lee, Y. J., Manzato, B. B., Oh, S. W., Pitta, R. L. C., Won, S. J.
Format: Preprint
Published: 2024
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author Seo, J.
Carlin, N.
Cavalcante, D. F. F. S.
Chung, J. S.
Franca, L. E.
Ha, C.
Kim, J.
Kim, J. Y.
Kimku, H.
Koh, B. C.
Lee, Y. J.
Manzato, B. B.
Oh, S. W.
Pitta, R. L. C.
Won, S. J.
author_facet Seo, J.
Carlin, N.
Cavalcante, D. F. F. S.
Chung, J. S.
Franca, L. E.
Ha, C.
Kim, J.
Kim, J. Y.
Kimku, H.
Koh, B. C.
Lee, Y. J.
Manzato, B. B.
Oh, S. W.
Pitta, R. L. C.
Won, S. J.
contents Cosmic ray muons prove valuable across various fields, from particle physics experiments to non-invasive tomography, thanks to their high flux and exceptional penetrating capability. Utilizing a scintillator detector, one can effectively study the topography of mountains situated above tunnels and underground spaces. The Hankuk Atmospheric-muon Wide Landscaping (HAWL) project successfully charts the mountainous region of eastern Korea by measuring cosmic ray muons with a detector in motion. The real-time muon flux measurement shows a tunnel length accuracy of 6.0 %, with a detectable overburden range spanning from 8 to 400 meter-water-equivalent depth. This is the first real-time portable muon tomography.
format Preprint
id arxiv_https___arxiv_org_abs_2403_02638
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Real-time portable muography with Hankuk Atmospheric-muon Wide Landscaping : HAWL
Seo, J.
Carlin, N.
Cavalcante, D. F. F. S.
Chung, J. S.
Franca, L. E.
Ha, C.
Kim, J.
Kim, J. Y.
Kimku, H.
Koh, B. C.
Lee, Y. J.
Manzato, B. B.
Oh, S. W.
Pitta, R. L. C.
Won, S. J.
High Energy Physics - Experiment
Instrumentation and Methods for Astrophysics
Cosmic ray muons prove valuable across various fields, from particle physics experiments to non-invasive tomography, thanks to their high flux and exceptional penetrating capability. Utilizing a scintillator detector, one can effectively study the topography of mountains situated above tunnels and underground spaces. The Hankuk Atmospheric-muon Wide Landscaping (HAWL) project successfully charts the mountainous region of eastern Korea by measuring cosmic ray muons with a detector in motion. The real-time muon flux measurement shows a tunnel length accuracy of 6.0 %, with a detectable overburden range spanning from 8 to 400 meter-water-equivalent depth. This is the first real-time portable muon tomography.
title Real-time portable muography with Hankuk Atmospheric-muon Wide Landscaping : HAWL
topic High Energy Physics - Experiment
Instrumentation and Methods for Astrophysics
url https://arxiv.org/abs/2403.02638