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Noah Kurinsky
Noah Kurinsky
SLAC National Laboratory
Verified email at slac.stanford.edu
Title
Cited by
Cited by
Year
Projected Sensitivity of the SuperCDMS SNOLAB experiment
R Agnese, AJ Anderson, T Aramaki, I Arnquist, W Baker, D Barker, ...
Physical Review D 95 (8), 082002, 2017
4022017
Dark sectors 2016 workshop: community report
J Alexander, M Battaglieri, B Echenard, R Essig, M Graham, E Izaguirre, ...
arXiv preprint arXiv:1608.08632, 2016
3992016
First dark matter constraints from a SuperCDMS single-charge sensitive detector
R Agnese, T Aralis, T Aramaki, IJ Arnquist, E Azadbakht, W Baker, S Banik, ...
Physical review letters 121 (5), 051301, 2018
3382018
Low-mass dark matter search with CDMSlite
R Agnese, AJ Anderson, T Aralis, T Aramaki, IJ Arnquist, W Baker, ...
Physical Review D 97 (2), 022002, 2018
2832018
LiteBIRD: a satellite for the studies of B-mode polarization and inflation from cosmic background radiation detection
M Hazumi, PAR Ade, Y Akiba, D Alonso, K Arnold, J Aumont, ...
Journal of Low Temperature Physics 194, 443-452, 2019
2762019
Results from the super cryogenic dark matter search experiment at Soudan
R Agnese, T Aramaki, IJ Arnquist, W Baker, D Balakishiyeva, S Banik, ...
Physical review letters 120 (6), 061802, 2018
2212018
Correlated charge noise and relaxation errors in superconducting qubits
CD Wilen, S Abdullah, NA Kurinsky, C Stanford, L Cardani, G d’Imperio, ...
Nature 594 (7863), 369-373, 2021
2072021
Search for low-mass dark matter with CDMSlite using a profile likelihood fit
R Agnese, T Aralis, T Aramaki, IJ Arnquist, E Azadbakht, W Baker, S Banik, ...
Physical Review D 99 (6), 062001, 2019
1742019
Constraints on low-mass, relic dark matter candidates from a surface-operated SuperCDMS single-charge sensitive detector
DW Amaral, T Aralis, T Aramaki, IJ Arnquist, E Azadbakht, S Banik, ...
Physical Review D 102 (9), 091101, 2020
1702020
The litebird satellite mission: Sub-kelvin instrument
A Suzuki, PAR Ade, Y Akiba, D Alonso, K Arnold, J Aumont, C Baccigalupi, ...
Journal of Low Temperature Physics 193, 1048-1056, 2018
1462018
Diamond detectors for direct detection of sub-GeV dark matter
N Kurinsky, TC Yu, Y Hochberg, B Cabrera
Physical Review D 99 (12), 123005, 2019
1332019
Updated design of the CMB polarization experiment satellite LiteBIRD
H Sugai, PAR Ade, Y Akiba, D Alonso, K Arnold, J Aumont, J Austermann, ...
Journal of Low Temperature Physics 199, 1107-1117, 2020
1102020
Axion dark matter
CB Adams, N Aggarwal, A Agrawal, R Balafendiev, C Bartram, ...
arXiv preprint arXiv:2203.14923, 2022
1062022
Light dark matter search with a high-resolution athermal phonon detector operated above ground
I Alkhatib, DWP Amaral, T Aralis, T Aramaki, IJ Arnquist, IA Langroudy, ...
Physical review letters 127 (6), 061801, 2021
1062021
Silicon carbide detectors for sub-GeV dark matter
SM Griffin, Y Hochberg, K Inzani, N Kurinsky, T Lin, TC Yu
Physical Review D 103 (7), 075002, 2021
972021
Broadband solenoidal haloscope for terahertz axion detection
J Liu, K Dona, G Hoshino, S Knirck, N Kurinsky, M Malaker, DW Miller, ...
Physical Review Letters 128 (13), 131801, 2022
892022
Constraints on dark photons and axionlike particles from the SuperCDMS Soudan experiment
T Aralis, T Aramaki, IJ Arnquist, E Azadbakht, W Baker, S Banik, D Barker, ...
Physical Review D 101 (5), 052008, 2020
812020
Thermal detection of single eh pairs in a biased silicon crystal detector
RK Romani, PL Brink, B Cabrera, M Cherry, T Howarth, N Kurinsky, ...
Applied Physics Letters 112 (4), 2018
792018
Erratum: First Dark Matter Constraints from a SuperCDMS Single-Charge Sensitive Detector [Phys. Rev. Lett. 121, 051301 (2018)]
R Agnese, T Aralis, T Aramaki, IJ Arnquist, E Azadbakht, W Baker, S Banik, ...
Physical review letters 122 (6), 069901, 2019
742019
Determining dark-matter–electron scattering rates from the dielectric function
Y Hochberg, Y Kahn, N Kurinsky, BV Lehmann, TC Yu, KK Berggren
Physical review letters 127 (15), 151802, 2021
692021
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