Measurement of Proton Quenching in a Plastic Scintillator Detector

dc.contributor.author

Awe, Connor

dc.contributor.author

Barbeau, Phillip

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Haghighat, Alireza

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Hedges, Sam

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Johnson, Tyler

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Li, Shengchao

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Link, Jonathan M

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Mascolino, Valerio

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Runge, Jay

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Steenis, Jacob

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Subedi, Tulasi

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Walkup, Keegan

dc.date.accessioned

2021-11-17T15:43:12Z

dc.date.available

2021-11-17T15:43:12Z

dc.date.issued

2020-11-22

dc.date.updated

2021-11-17T15:43:11Z

dc.description.abstract

The non-linear energy response of the plastic scintillator EJ-260 is measured with the MicroCHANDLER detector, using neutron beams of energy 5 to 27 MeV at the Triangle Universities Nuclear Laboratory. The first and second order Birks' constants are extracted from the data, and found to be $k_B = (8.70 \pm 0.93)\times 10^{-3}\ {\rm g/cm^2/MeV}$ and $k_C = (1.42 \pm 1.00) \times 10^{-5}\ {\rm (g/cm^2/MeV)^2}$. This result covers a unique energy range that is of direct relevance for fast neutron backgrounds in reactor inverse beta decay detectors. These measurements will improve the energy non-linearity modeling of plastic scintillator detectors. In particular, the updated energy response model will lead to an improvement of fast neutron modeling for detectors based on the CHANDLER reactor neutrino detector technology.

dc.identifier.issn

1748-0221

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1748-0221

dc.identifier.uri

https://hdl.handle.net/10161/23996

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IOP Publishing

dc.relation.ispartof

Journal of Instrumentation

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10.1088/1748-0221/16/02/P02035

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physics.ins-det

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physics.ins-det

dc.title

Measurement of Proton Quenching in a Plastic Scintillator Detector

dc.type

Journal article

duke.contributor.orcid

Barbeau, Phillip|0000-0002-8891-8988

pubs.begin-page

P02035

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P02035

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2

pubs.organisational-group

Trinity College of Arts & Sciences

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Physics

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Duke

pubs.publication-status

Published

pubs.volume

16

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