First Probe of Sub-GeV Dark Matter Beyond the Cosmological Expectation with the COHERENT CsI Detector at the SNS

dc.contributor.author

Akimov, D

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An, P

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Awe, C

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Barbeau, PS

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Becker, B

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Belov, V

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Bernardi, I

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Blackston, MA

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Bock, C

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Bolozdynya, A

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Browning, J

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Cabrera-Palmer, B

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Chernyak, D

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Conley, E

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Daughhetee, J

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Detwiler, J

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Ding, K

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Durand, MR

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Efremenko, Y

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Elliott, SR

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Fabris, L

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Febbraro, M

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Rosso, A Gallo

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Galindo-Uribarri, A

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Green, MP

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Heath, MR

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Hedges, S

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Hoang, D

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Hughes, M

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Johnson, T

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Khromov, A

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Konovalov, A

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Kozlova, E

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Kumpan, A

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Li, L

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Link, JM

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Liu, J

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Mann, K

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Markoff, DM

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Mastroberti, J

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Mueller, PE

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Newby, J

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Parno, DS

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Penttila, SI

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Pershey, D

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Rapp, R

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Raybern, J

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Razuvaeva, O

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Reyna, D

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Rich, GC

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Ross, J

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Rudik, D

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Runge, J

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Salvat, DJ

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Salyapongse, AM

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Sander, J

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Scholberg, K

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Shakirov, A

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Simakov, G

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Sinev, G

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Snow, WM

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Sosnovstsev, V

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Suh, B

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Tayloe, R

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Tellez-Giron-Flores, K

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Tolstukhin, I

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Ujah, E

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Vanderwerp, J

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Varner, RL

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Virtue, CJ

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Visser, G

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Wongjirad, T

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Yen, Y-R

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Yoo, J

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Yu, C-H

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Zettlemoyer, J

dc.date.accessioned

2021-11-17T15:40:29Z

dc.date.available

2021-11-17T15:40:29Z

dc.date.updated

2021-11-17T15:40:28Z

dc.description.abstract

The COHERENT collaboration searched for scalar dark matter particles produced at the Spallation Neutron Source with masses between 1 and 220~MeV/c$^2$ using a CsI[Na] scintillation detector sensitive to nuclear recoils above 9~keV$_\text{nr}$. No evidence for dark matter is found and we thus place limits on allowed parameter space. With this low-threshold detector, we are sensitive to coherent elastic scattering between dark matter and nuclei. The cross section for this process is orders of magnitude higher than for other processes historically used for accelerator-based direct-detection searches so that our small, 14.6~kg detector significantly improves on past constraints. At peak sensitivity, we reject the flux consistent with the cosmologically observed dark-matter concentration for all coupling constants $\alpha_D<0.64$, assuming a scalar dark-matter particle. We also calculate the sensitivity of future COHERENT detectors to dark-matter signals which will ambitiously test multiple dark-matter spin scenarios.

dc.identifier.uri

https://hdl.handle.net/10161/23987

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hep-ex

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hep-ex

dc.title

First Probe of Sub-GeV Dark Matter Beyond the Cosmological Expectation with the COHERENT CsI Detector at the SNS

dc.type

Journal article

duke.contributor.orcid

Barbeau, PS|0000-0002-8891-8988

duke.contributor.orcid

Scholberg, K|0000-0002-7007-2021

pubs.organisational-group

Trinity College of Arts & Sciences

pubs.organisational-group

Physics

pubs.organisational-group

Duke

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