arXiv Open Access 2022

Low Background kTon-Scale Liquid Argon Time Projection Chambers

A. Avasthi T. Bezerra A. Borkum E. Church J. Genovesi +26 lainnya
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Abstrak

We find that it is possible to increase sensitivity to low energy physics in a third or fourth DUNE-like module with careful controls over radiopurity and some modifications to a detector similar to the DUNE Far Detector design. In particular, sensitivity to supernova and solar neutrinos can be enhanced with improved MeV-scale reach. A neutrinoless double beta decay search with $^{136}$Xe loading appears feasible. Furthermore, sensitivity to Weakly-Interacting Massive Particle (WIMP) Dark Matter (DM) becomes competitive with the planned world program in such a detector, offering a unique seasonal variation detection that is characteristic for the nature of WIMPs.

Topik & Kata Kunci

Penulis (31)

A

A. Avasthi

T

T. Bezerra

A

A. Borkum

E

E. Church

J

J. Genovesi

J

J. Haiston

C

C. M. Jackson

I

I. Lazanu

B

B. Monreal

S

S. Munson

C

C. Ortiz

M

M. Parvu

S

S. J. M. Peeters

D

D. Pershey

S

S. S. Poudel

J

J. Reichenbacher

R

R. Saldanha

K

K. Scholberg

G

G. Sinev

J

J. Zennamo

H

H. O. Back

J

J. F. Beacom

F

F. Capozzi

C

C. Cuesta

Z

Z. Djurcic

A

A. C. Ezeribe

I

I. Gil-Botella

S

S. W. Li

M

M. Mooney

M

M. Sore

S

S. Westerdale

Format Sitasi

Avasthi, A., Bezerra, T., Borkum, A., Church, E., Genovesi, J., Haiston, J. et al. (2022). Low Background kTon-Scale Liquid Argon Time Projection Chambers. https://arxiv.org/abs/2203.08821

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2022
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en
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arXiv
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