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Observation of low-lying isomeric states in $^{136}$Cs: a new avenue for dark matter and solar neutrino detection in xenon detectors

Publication ,  Preprint
Haselschwardt, SJ; Lenardo, BG; Daniels, T; Finch, SW; Friesen, FQL; Howell, CR; Malone, CR; Mancil, E; Tornow, W
January 27, 2023

Duke Scholars

Publication Date

January 27, 2023
 

Citation

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Haselschwardt, S. J., Lenardo, B. G., Daniels, T., Finch, S. W., Friesen, F. Q. L., Howell, C. R., … Tornow, W. (2023). Observation of low-lying isomeric states in $^{136}$Cs: a new avenue for dark matter and solar neutrino detection in xenon detectors.
Haselschwardt, Scott J., Brian G. Lenardo, Timothy Daniels, Sean W. Finch, Forrest Q. L. Friesen, Calvin R. Howell, Collin R. Malone, Ethan Mancil, and Werner Tornow. “Observation of low-lying isomeric states in $^{136}$Cs: a new avenue for dark matter and solar neutrino detection in xenon detectors,” January 27, 2023.
Haselschwardt SJ, Lenardo BG, Daniels T, Finch SW, Friesen FQL, Howell CR, et al. Observation of low-lying isomeric states in $^{136}$Cs: a new avenue for dark matter and solar neutrino detection in xenon detectors. 2023.
Haselschwardt SJ, Lenardo BG, Daniels T, Finch SW, Friesen FQL, Howell CR, Malone CR, Mancil E, Tornow W. Observation of low-lying isomeric states in $^{136}$Cs: a new avenue for dark matter and solar neutrino detection in xenon detectors. 2023.

Publication Date

January 27, 2023