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The production of $^{3}$H, $^{7}$Be, and $^{22}$Na by interactions of cosmic-ray particles with silicon can produce radioactive backgrounds in detectors used to search for rare events.
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J. Janesick, Scientific Charge-Coupled Devices, Press Monographs, The International Society for Optical Engineering, Bellingham, WA, 2001. URL: http://books.google.com/books?id=rkgBkbDie7kC
2001
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D. Desilets, M. Zreda, · 2001
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The nuclear physics of muon capture,
D. F. Measday, · 2001
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Secondary Light Charged Particle Emission from the Interaction of 25- to 65-MeV Neutrons on Silicon,
S. Benck, I. Slypen, J.-P. Meulders, V. Corcalciuc, · 2002
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Cosmic veto gamma-spectrometry for comprehensive nuclear-test-ban treaty samples,
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Fast neutron–induced emission of light charged particles on aluminum (En= 25 to 55 MeV),
S. Benck, I. Slypen, J.-P. Meulders, V. Corcalciuc, M. Chadwick, · 2002
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Production of selected cosmogenic radionuclides by muons: 2. Capture of negative muons,
B. Heisinger, D. Lal, A. T. Jull, P. Kubik, S. Ivy-Ochs, K. Knie, E. Nolte, · 2002
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GEANT4—a simulation toolkit,
S. Agostinelli, et al., · 2003
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Fully depleted, back-illuminated charge-coupled devices fabricated on high-resistivity silicon,
S. Holland, D. Groom, N. Palaio, R. Stover, M. Wei, · 2003
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The binary cascade,
G. Folger, V. Ivanchenko, J. Wellisch, · 2004
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Measurement of neutron activation cross sections for major elements of water, air and soil between 30 and 70 MeV,
H. Yashima, K. Terunuma, T. Nakamura, M. Hagiwara, N. Kawata, M. Baba, · 2004
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Measurement of the flux and energy spectrum of cosmic-ray induced neutrons on the ground,
M. Gordon, P. Goldhagen, K. Rodbell, T. Zabel, H. Tang, J. Clem, P. Bailey, · 2004
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J. Burnett, A. Davies, · 2014
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Excitation functions for the production of radionuclides by neutron-induced reactions on C, O, Mg, Al, Si, Fe, Co, Ni, Cu, Ag, Te, Pb, and U up to 180 MeV,
R. Michel, D. Hansmann, S. Neumann, W. Glasser, H. Schuhmacher, V. Dangendorf, R. Nolte, U. Herpers, A. Smirnov, I. Ryzhov, et al., · 2015
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B. Marcinkevicius, S. Simakov, V. Pronyaev, 209Bi (n, f) and natPb (n, f) Cross Sections as a New Reference and Extension of the 235U, 238U and 239Pu (n, f) Standards up to 1 GeV, Technical Report, International Atomic Energy Agency, 2015
2015
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Z. W. Miller, A measurement of the prompt fission neutron energy spectrum for 235U (n, f) and the neutron-induced fission cross section for 238U (n, f), Ph.D. thesis, University of Kentucky, 2015
2015
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Direct Detection of sub-GeV Dark Matter with Semiconductor Targets,
R. Essig, M. Fernandez-Serra, J. Mardon, A. Soto, T. Volansky, T.-T. Yu, · 2016
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Measurement of radioactive contamination in the high-resistivity silicon CCDs of the DAMIC experiment,
A. Aguilar-Arevalo, et al. (DAMIC), · 2016
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Isotopic compositions of the elements 2013 (IUPAC technical Report),
J. Meija, et al., · 2016
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Cosmogenic activation of materials used in rare event search experiments,
C. Zhang, D.-M. Mei, V. Kudryavtsev, S. Fiorucci, · 2016
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Recent developments in Geant4,
J. Allison, et al., · 2016
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Search for low-mass WIMPs in a 0.6 kg day exposure of the DAMIC experiment at SNOLAB,
A. Aguilar-Arevalo, et al. (DAMIC), · 2016
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Analytical model for estimating the zenith angle dependence of terrestrial cosmic ray fluxes,
T. Sato, · 2016
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Projected sensitivity of the SuperCDMS SNOLAB experiment,
R. Agnese, et al. (SuperCDMS), · 2017
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Cosmogenic activation of materials,
S. Cebrian, · 2017
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URL: https://github.com/UniversityofWarwick/ACTIVIA
J. Back, Y. Ramachers, Accessed: 30th March 2017, ACTIVIA, · 2017
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A. Koning, S. Hilaire, M. Duijvestijn, Accessed: 21st December 2017, TALYS-1.9, · 2017
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First Direct-Detection Constraints on eV-Scale Hidden-Photon Dark Matter with DAMIC at SNOLAB,
A. Aguilar-Arevalo, et al. (DAMIC), · 2017
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On the search for a (n, f) cross-section reference at intermediate energies,
I. Duran, A. Ventura, S. L. Meo, D. Tarrío, L. Tassan-Got, C. Paradela, · 2017
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Development of a multidimensional gamma-spectrometer,
J. L. Burnett, M. G. Cantaloub, M. F. Mayer, H. S. Miley, · 2017
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Measurement of low energy ionization signals from Compton scattering in a charge-coupled device dark matter detector,
K. Ramanathan, A. Kavner, A. E. Chavarria, P. Privitera, D. Amidei, T.-L. Chou, A. Matalon, R. Thomas, J. Estrada, J. Tiffenberg, J. Molina, · 2017
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Naturally occurring 32
J. Orrell, I. Arnquist, M. Bliss, R. Bunker, Z. Finch, · 2018
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The experimental nuclear reaction data (EXFOR): Extended computer database and Web retrieval system,
V. Zerkin, B. Pritychenko, · 2018
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Evaluation of the neutron data standards,
A. Carlson, V. G. Pronyaev, R. Capote, G. Hale, Z.-P. Chen, I. Duran, F.-J. Hambsch, S. Kunieda, W. Mannhart, B. Marcinkevicius, et al., · 2018
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T. Sato, Accessed: 12th November 2018, EXcel-based Program for calculating Atmospheric Cosmic-ray Spectrum (EXPACS) v4.04, · 2018
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Review of Particle Physics,
M. Tanabashi, et al. (Particle Data Group), · 2018
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Constraints on Light Dark Matter Particles Interacting with Electrons from DAMIC at SNOLAB,
A. Aguilar-Arevalo, et al. (DAMIC), · 2019
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SENSEI: Direct-Detection Constraints on Sub-GeV Dark Matter from a Shallow Underground Run Using a Prototype Skipper-CCD,
O. Abramoff, et al. (SENSEI), · 2019
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First Dark Matter Constraints from a SuperCDMS Single-Charge Sensitive Detector,
R. Agnese, et al. (SuperCDMS), · 2019
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Production Rate Measurement of Tritium and Other Cosmogenic Isotopes in Germanium with CDMSlite,
R. Agnese, et al. (SuperCDMS), · 2019
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Production rate measurement of Tritium and other cosmogenic isotopes in Germanium with CDMSlite,
R. Agnese, T. Aralis, T. Aramaki, I. Arnquist, E. Azadbakht, W. Baker, S. Banik, D. Barker, D. Bauer, T. Binder, et al., · 2019
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Charged-particle spectra from μ \mu - capture on Al,
A. Gaponenko, A. Grossheim, A. Hillairet, G. Marshall, R. Mischke, A. Olin, · 2020
Closest in time.
A. Gaponenko, Personal Communication, 26th May 2020
2020
Closest in time.