TA
Tyler Anderson
hep-exphysics.ins-detastro-ph.COastro-ph.IMnucl-exhep-phastro-ph.HE
On Valency
published · living versionsW_pj8e4nay·v1 · currentpublished
In situ estimation of ice crystal properties at the South Pole using LED calibration data from the IceCube Neutrino Observatory
with Rasha Abbasi, Markus Ackermann, Jenni Adams, Nakul Aggarwal +378
1 version
Preprints & journals
30 papers in the corpus · 2017–2025Measurements and models of enhanced recombination following inner-shell vacancies in liquid xenon2503.05679v2 · J. Aalbers, D. S. Akerib, A. K. Al Musalhi et al.2025 · 4 citationsarXiv
Low-energy nuclear recoil calibration of the LUX-ZEPLIN experiment with a photoneutron source2509.16281v1 · J. Aalbers, D.S. Akerib, A.K. Al Musalhi et al.2025 · 0 citationsarXiv
Dark Matter Search Results from 4.2 Tonne-Years of Exposure of the LUX-ZEPLIN (LZ) Experiment2410.17036v3 · J. Aalbers, D. S. Akerib, A. K. Al Musalhi et al.2024 · 180 citationsPhys. Rev. Lett. 135, 011802 (2025)
First constraint for atmospheric millicharged particles with the LUX-ZEPLIN experiment2412.04854v4 · J. Aalbers, D. S. Akerib, A. K. Al Musalhi et al.2024 · 2 citationsPhysical Review Letters 134, 241802 (2025)
New constraints on cosmic ray-boosted dark matter from the LUX-ZEPLIN experiment2503.18158v2 · J. Aalbers, D.S. Akerib, A.K. Al Musalhi et al.2025 · 8 citationsPhysical Review Letters 134, 241801 (2025)
Two-neutrino double electron capture of $^{124}$Xe in the first LUX-ZEPLIN exposure2408.17391v2 · J. Aalbers, D. S. Akerib, A. K. Al Musalhi et al.2024 · 11 citationsJ. Phys. G: Nucl. Part. Phys. 52 015103 (2025)
Constraints On Covariant WIMP-Nucleon Effective Field Theory Interactions from the First Science Run of the LUX-ZEPLIN Experiment2404.17666v1 · J. Aalbers, D.S. Akerib, A.K. Al Musalhi et al.2024 · 2 citationsPhys. Rev. Lett. 133, 221801 (2024)
Probing the Scalar WIMP-Pion Coupling with the first LUX-ZEPLIN data2406.02441v1 · J.Aalbers, D.S.Akerib, A.K.Al Musalhi et al.2024 · 4 citationsCommun Phys 7, 292 (2024)
The Design, Implementation, and Performance of the LZ Calibration Systems2406.12874v3 · J. Aalbers, D.S. Akerib, A.K. Al Musalhi et al.2024 · 7 citationsJINST 19 P08027 (2024)
The Data Acquisition System of the LZ Dark Matter Detector: FADR2405.14732v3 · J. Aalbers, D.S. Akerib, A.K. Al Musalhi et al.2024 · 7 citationsarXiv
New constraints on ultraheavy dark matter from the LZ experiment2402.08865v1 · J. Aalbers, D.S. Akerib, A.K. Al Musalhi et al.2024 · 26 citationsPhys. Rev. D 109, 112010 (2024)
A search for new physics in low-energy electron recoils from the first LZ exposure2307.15753v2 · J. Aalbers, D.S. Akerib, A.K. Al Musalhi et al.2023 · 59 citationsPhys. Rev. D 108, 072006 (2023)
First Constraints on WIMP-Nucleon Effective Field Theory Couplings in an Extended Energy Region From LUX-ZEPLIN2312.02030v2 · J. Aalbers, D.S. Akerib, A.K. Al Musalhi et al.2023 · 21 citationsPhys. Rev. D 109, 092003 (2024)
First Dark Matter Search Results from the LUX-ZEPLIN (LZ) Experiment2207.03764v4 · J. Aalbers, D.S. Akerib, C.W. Akerlof et al.2022 · 704 citationsPhys. Rev. Lett. 131, 041002 (2023)
Background Determination for the LUX-ZEPLIN (LZ) Dark Matter Experiment2211.17120v2 · J. Aalbers, D.S. Akerib, A.K. Al Musalhi et al.2022 · 41 citationsPhys. Rev. D 108, 012010 (2023)
Cosmogenic production of $^{37}$Ar in the context of the LUX-ZEPLIN experiment2201.02858v2 · J. Aalbers, D.S. Akerib, A.K. Al Musalhi et al.2022 · 10 citationsarXiv
Design and production of the high voltage electrode grids and electron extraction region for the LZ dual-phase xenon time projection chamber2106.06622v1 · R. Linehan, R. L. Mannino, A. Fan et al.2021 · 14 citationsarXiv
Projected sensitivities of the LUX-ZEPLIN (LZ) experiment to new physics via low-energy electron recoils2102.11740v2 · D.S. Akerib, A.K. Al Musalhi, S.K. Alsum et al.2021 · 35 citationsarXiv
Projected sensitivity of the LUX-ZEPLIN (LZ) experiment to the two-neutrino and neutrinoless double beta decays of $^{134}$Xe2104.13374v3 · The LUX-ZEPLIN, A. K. Al Musalhi, S. K. Alsum et al.2021 · 12 citationsarXiv
Design and performance of the multi-PMT optical module for IceCube Upgrade2107.11383v1 · T. Anderson, L. Classen, A.T. Fienberg et al.2021 · 15 citationsarXiv
Enhancing the sensitivity of the LUX-ZEPLIN (LZ) dark matter experiment to low energy signals2101.08753v1 · D.S. Akerib, A.K. Al Musalhi, S.K. Alsum et al.2021 · 8 citationsarXiv
Projected sensitivity of the LUX-ZEPLIN experiment to the $0\nu\beta\beta$ decay of $^{136}$Xe1912.04248v2 · D. S. Akerib, C. W. Akerlof, A. Alqahtani et al.2019 · 37 citationsPhys. Rev. C 102, 014602 (2020)
Simulations of Events for the LUX-ZEPLIN (LZ) Dark Matter Experiment2001.09363v2 · D.S. Akerib, C.W. Akerlof, A. Alqahtani et al.2020 · 41 citationsarXiv
The LUX-ZEPLIN (LZ) Experiment1910.09124v2 · D.S. Akerib, C.W. Akerlof, D. Yu. Akimov et al.2019 · 200 citationsarXiv
On the Evaluation of Silicon Photomultipliers for Use as Photosensors in Liquid Xenon Detectors1706.05371v4 · Benjamin Godfrey, Tyler Anderson, Earl Breedon et al.2017 · 2 citationsB. Godfrey, T. Anderson, E. Breedon, J. Cutter, N. Dhaliwal, O.Dalager et al., 2018 On the Evaluation of Silicon Photomultipliers for Use as Photosensors in Liquid Xenon Detectors JINST 13 C03041
Career total: 78 works. 30 are in this corpus.Showing the 25 most recent.
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