Event reconstruction in a liquid xenon Time Projection Chamber with an optically-open field cage

dc.contributor.author

Stiegler, T

dc.contributor.author

Sangiorgio, S

dc.contributor.author

Brodsky, JP

dc.contributor.author

Heffner, M

dc.contributor.author

Kharusi, SA

dc.contributor.author

Anton, G

dc.contributor.author

Arnquist, IJ

dc.contributor.author

Badhrees, I

dc.contributor.author

Barbeau, PS

dc.contributor.author

Beck, D

dc.contributor.author

Belov, V

dc.contributor.author

Bhatta, T

dc.contributor.author

Bolotnikov, A

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Breur, PA

dc.contributor.author

Brown, E

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Brunner, T

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Caden, E

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Cao, GF

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Cao, L

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Chambers, C

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Chana, B

dc.contributor.author

Charlebois, SA

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Chiu, M

dc.contributor.author

Cleveland, B

dc.contributor.author

Coon, M

dc.contributor.author

Craycraft, A

dc.contributor.author

Dalmasson, J

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Daniels, T

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Darroch, L

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De, A

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Mesrobian-Kabakian, AD

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Deslandes, K

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DeVoe, R

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Di Vacri, ML

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Dilling, J

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Ding, YY

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Dolinski, MJ

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Dragone, A

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Echevers, J

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Edaltafar, F

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Elbeltagi, M

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Fabris, L

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Fairbank, D

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Fairbank, W

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Farine, J

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Ferrara, S

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Feyzbakhsh, S

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Gallina, G

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Gautam, P

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Giacomini, G

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Goeldi, D

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Gornea, R

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Gratta, G

dc.contributor.author

Hansen, EV

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Hoppe, EW

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Hößl, J

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House, A

dc.contributor.author

Hughes, M

dc.contributor.author

Iverson, A

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Jamil, A

dc.contributor.author

Jewell, MJ

dc.contributor.author

Jiang, XS

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Karelin, A

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Kaufman, LJ

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Koffas, T

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Krücken, R

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Kuchenkov, A

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Kumar, KS

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Lan, Y

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Larson, A

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Leach, KG

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Lenardo, BG

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Leonard, DS

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Li, G

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Li, S

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Li, Z

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Licciardi, C

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Lv, P

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MacLellan, R

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Massacret, N

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McElroy, T

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Medina-Peregrina, M

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Michel, T

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Mong, B

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Moore, DC

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Murray, K

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Nakarmi, P

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Natzke, CR

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Newby, RJ

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Ni, K

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Ning, Z

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Njoya, O

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Nolet, F

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Nusair, O

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Odgers, K

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Odian, A

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Oriunno, M

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Orrell, JL

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Ortega, GS

dc.contributor.author

Ostrovskiy, I

dc.date.accessioned

2021-11-17T15:42:26Z

dc.date.available

2021-11-17T15:42:26Z

dc.date.issued

2021-06-01

dc.date.updated

2021-11-17T15:42:24Z

dc.description.abstract

nEXO is a proposed tonne-scale neutrinoless double beta decay (0νββ) experiment using liquid 136Xe (LXe) in a Time Projection Chamber (TPC) to read out ionization and scintillation signals. Between the field cage and the LXe vessel, a layer of LXe (“skin” LXe) is present, where no ionization signal is collected. Only scintillation photons are detected, owing to the lack of optical barrier around the field cage. In this work, we show that the light originating in the skin LXe region can be used to improve background discrimination by 5% over previous published estimates. This improvement comes from two elements. First, a fraction of the γ-ray background is removed by identifying light from interactions with an energy deposition in the skin LXe. Second, background from 222Rn dissolved in the skin LXe can be efficiently rejected by tagging the α decay in the 214Bi-214Po chain in the skin LXe.

dc.identifier.issn

0168-9002

dc.identifier.issn

1872-9576

dc.identifier.uri

https://hdl.handle.net/10161/23995

dc.language

en

dc.publisher

Elsevier BV

dc.relation.ispartof

Nuclear Instruments and Methods in Physics Research, Section A: Accelerators, Spectrometers, Detectors and Associated Equipment

dc.relation.isversionof

10.1016/j.nima.2021.165239

dc.subject

Neutrinoless double beta decay

dc.subject

Liquid xenon detectors

dc.subject

Time-projection chambers

dc.subject

Monte Carlo methods

dc.title

Event reconstruction in a liquid xenon Time Projection Chamber with an optically-open field cage

dc.type

Journal article

duke.contributor.orcid

Barbeau, PS|0000-0002-8891-8988

pubs.begin-page

165239

pubs.end-page

165239

pubs.organisational-group

Trinity College of Arts & Sciences

pubs.organisational-group

Physics

pubs.organisational-group

Duke

pubs.publication-status

Published

pubs.volume

1000

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