Search Results - "Stainforth, R."

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  1. 1

    Perforation drilling for easing spudcan–footprint interaction issues by Hossain, M.S., Stainforth, R.

    Published in Ocean engineering (01-02-2016)
    “…The interaction between a spudcan and an existing footprint is a major concern during jack-up rig installation. No guidelines were provided in the recently…”
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    Journal Article
  2. 2

    Experimental investigation on the effect of spudcan shape on spudcan-footprint interaction by Hossain, M.S., Stainforth, R., Ngo, V.T., Cassidy, M.J., Kim, Y.H., Jun, M.J.

    Published in Applied ocean research (01-12-2017)
    “…•1g model testing.•Novel and conventional spudcans.•Easing spudcan-footprint interaction issues.•Soft to moderate seabed strength profiles close to the…”
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    Journal Article
  3. 3

    Long-term survival and bipotent terminal differentiation of human mesenchymal stem cells (hMSC) in combination with a commercially available three-dimensional collagen scaffold by Neuss, S, Stainforth, R, Salber, J, Schenck, P, Bovi, M, Knüchel, R, Perez-Bouza, A

    Published in Cell transplantation (01-01-2008)
    “…Researchers working in the field of tissue engineering ideally combine autologous cells and biocompatible scaffolds to replace defect tissues/organs. Due to…”
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    Journal Article
  4. 4

    First Results from the DEAP-3600 Dark Matter Search with Argon at SNOLAB by Amaudruz, P-A, Baldwin, M, Batygov, M, Beltran, B, Bina, C E, Bishop, D, Bonatt, J, Boorman, G, Boulay, M G, Broerman, B, Bromwich, T, Bueno, J F, Burghardt, P M, Butcher, A, Cai, B, Chan, S, Chen, M, Chouinard, R, Cleveland, B T, Cranshaw, D, Dering, K, DiGioseffo, J, Dittmeier, S, Duncan, F A, Dunford, M, Erlandson, A, Fatemighomi, N, Florian, S, Flower, A, Ford, R J, Gagnon, R, Giampa, P, Golovko, V V, Gorel, P, Gornea, R, Grace, E, Graham, K, Gulyev, E, Hakobyan, R, Hall, A, Hallin, A L, Hamstra, M, Harvey, P J, Hearns, C, Jillings, C J, Kamaev, O, Kemp, A, Kuźniak, M, Langrock, S, La Zia, F, Lehnert, B, Lidgard, J J, Lim, C, Lindner, T, Linn, Y, Liu, S, Majewski, P, Mathew, R, McDonald, A B, McElroy, T, McGinn, T, McLaughlin, J B, Mead, S, Mehdiyev, R, Mielnichuk, C, Monroe, J, Muir, A, Nadeau, P, Nantais, C, Ng, C, Noble, A J, O'Dwyer, E, Ohlmann, C, Olchanski, K, Olsen, K S, Ouellet, C, Pasuthip, P, Peeters, S J M, Pollmann, T R, Rand, E T, Rau, W, Rethmeier, C, Retière, F, Seeburn, N, Shaw, B, Singhrao, K, Skensved, P, Smith, B, Smith, N J T, Sonley, T, Soukup, J, Stainforth, R, Stone, C, Strickland, V, Sur, B, Tang, J, Taylor, J, Veloce, L, Vázquez-Jáuregui, E, Walding, J

    Published in Physical review letters (17-08-2018)
    “…This Letter reports the first results of a direct dark matter search with the DEAP-3600 single-phase liquid argon (LAr) detector. The experiment was performed…”
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    Journal Article
  5. 5

    The use of a shape-memory poly(ϵ-caprolactone)dimethacrylate network as a tissue engineering scaffold by Neuss, Sabine, Blomenkamp, Iris, Stainforth, Rebekah, Boltersdorf, Dagmar, Jansen, Marc, Butz, Nick, Perez-Bouza, Alberto, Knüchel, Ruth

    Published in Biomaterials (01-03-2009)
    “…Abstract Shape-memory polymers produced from many natural or synthetic raw polymers are able to undergo a shape transformation after exposure to a specific…”
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    Journal Article
  6. 6

    Characterising the optical response of the sno+ detector by Stainforth, R

    Published 01-01-2016
    “…SNO+ is a liquid scintillator based neutrino experiment located 2039 m underground in VALE's Creighton mine, Lively, Ontario, CA. It is a re-purposing of the…”
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    Dissertation
  7. 7

    In-situ characterization of the Hamamatsu R5912-HQE photomultiplier tubes used in the DEAP-3600 experiment by Amaudruz, P. -A., Batygov, M., Beltran, B., Bina, C. E., Bishop, D., Bonatt, J., Boorman, G., Boulay, M. G., Broerman, B., Bromwich, T., Bueno, J. F., Butcher, A., Cai, B., Chan, S., Chen, M., Chouinard, R., Churchwell, S., Cleveland, B. T., Cranshaw, D., Dering, K., Dittmeier, S., Duncan, F. A., Dunford, M., Erlandson, A., Fatemighomi, N., Ford, R. J., Gagnon, R., Giampa, P., Golovko, V. V., Gorel, P., Gornea, R., Grace, E., Graham, K., Grant, D. R., Gulyev, E., Hall, A., Hallin, A. L., Hamstra, M., Harvey, P. J., Hearns, C., Jillings, C. J., Kamaev, O., Kemp, A., Kuźniak, M., Langrock, S., La Zia, F., Lehnert, B., Li, O., Lidgard, J. J., Liimatainen, P., Lim, C., Lindner, T., Linn, Y., Liu, S., Mathew, R., McElroy, T., McFarlane, K., McLaughlin, J., Mead, S., Mehdiyev, R., Mielnichuk, C., Monroe, J., Muir, A., Nadeau, P., Nantais, C., Ng, C., Noble, A. J., O’Dwyer, E., Ohlmann, C., Olchanski, K., Olsen, K. S., Ouellet, C., Pasuthip, P., Peeters, S. J. M., Pollmann, T. R., Rand, E. T., Rau, W., Rethmeier, C., Retière, F., Seeburn, N., Shaw, B., Singhrao, K., Skensved, P., Smith, B., Smith, N. J. T., Sonley, T., Stainforth, R., Stone, C., Strickland, V., Sur, B., Tang, J., Taylor, J., Veloce, L., Vázquez-Jáuregui, E., Walding, J., Ward, M., Westerdale, S., White, R., Woolsey, E., Zielinski, J.

    “…The Hamamatsu R5912-HQE photomultiplier-tube (PMT) is a novel high-quantum efficiency PMT. It is currently used in the DEAP-3600 dark matter detector and is of…”
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    Journal Article
  8. 8

    Design and construction of the DEAP-3600 dark matter detector by Amaudruz, P. -A., Baldwin, M., Batygov, M., Beltran, B., Bina, C. E., Bishop, D., Bonatt, J., Boorman, G., Boulay, M. G., Broerman, B., Bueno, J. F., Burghardt, P. M., Butcher, A., Cai, B., Chan, S., Chen, M., Chouinard, R., Churchwell, S., Cleveland, B. T., Cranshaw, D., Dering, K., Dittmeier, S., Duncan, F. A., Dunford, M., Erlandson, A., Fatemighomi, N., Florian, S., Flower, A., Ford, R. J., Gagnon, R., Giampa, P., Golovko, V. V., Gorel, P., Gornea, R., Grace, E., Graham, K., Grant, D. R., Gulyev, E., Hall, A., Hallin, A. L., Harvey, P. J., Hearns, C., Jillings, C. J., Kamaev, O., Kuźniak, M., Langrock, S., La Zia, F., Lehnert, B., Lidgard, J. J., Liimatainen, P., Lim, C., Lindner, T., Linn, Y., Liu, S., Majewski, P., Mathew, R., McDonald, A. B., McElroy, T., McFarlane, K., McLaughlin, J. B., Mead, S., Mehdiyev, R., Mielnichuk, C., Monroe, J., Muir, A., Nadeau, P., Nantais, C., Ng, C., Noble, A. J., O’Dwyer, E., Ohlmann, C., Olchanski, K., Olsen, K. S., Ouellet, C., Pasuthip, P., Peeters, S. J. M., Pollmann, T. R., Rand, E. T., Rau, W., Rethmeier, C., Retière, F., Seeburn, N., Shaw, B., Singhrao, K., Skensved, P., Smith, B., Smith, N. J. T., Sonley, T., Soukup, J., Stainforth, R., Sur, B., Tang, J., Taylor, J., Vázquez-Jáuregui, E., Walding, J., Ward, M., Westerdale, S., White, R., Woolsey, E., Zielinski, J.

    Published in Astroparticle physics (05-12-2018)
    “…The Dark matter Experiment using Argon Pulse-shape discrimination (DEAP) has been designed for a direct detection search for particle dark matter using a…”
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    Journal Article
  9. 9
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  11. 11

    Relative Measurement and Extrapolation of the Scintillation Quenching Factor of $\alpha$-Particles in Liquid Argon using DEAP-3600 Data by The DEAP Collaboration, Adhikari, P, Alpízar-Venegas, M, Amaudruz, P. -A, Anstey, J, Auty, D. J, Batygov, M, Beltran, B, Bina, C. E, Bonivento, W, Boulay, M. G, Bueno, J. F, Cai, B, Cárdenas-Montes, M, Choudhary, S, Cleveland, B. T, Crampton, R, Daugherty, S, DelGobbo, P, Di Stefano, P, Dolganov, G, Doria, L, Duncan, F. A, Dunford, M, Ellingwood, E, Erlandson, A, Farahani, S. S, Fatemighomi, N, Fiorillo, G, Ford, R. J, Gahan, D, Gallacher, D, Abia, P. García, Garg, S, Giampa, P, Giménez-Alcázar, A, Goeldi, D, Gorel, P, Graham, K, Hallin, A. L, Haskins, S, Hu, J, Hucker, J, Hugues, T, Ilyasov, A, Jigmeddorj, B, Jillings, C. J, Kaur, G, Yazdi, M. Khoshraftar, Kemp, A, Kuźniak, M, La Zia, F, Lai, M, Langrock, S, Lehnert, B, Levashko, N, Luzzi, L, Machulin, I, Maru, A, Mason, J, McDonald, A. B, McElroy, T, McLaughlin, J. B, Mielnichuk, C, Mirasola, L, Moharana, A, Monroe, J, Murray, A, Ng, C, Oliviéro, G, Olszewski, M, Pal, S, Papi, D, Park, B, Perry, M, Pesudo, V, Pollmann, T. R, Rad, F, Rethmeier, C, Retière, F, Roszkowski, L, Santorelli, R, SchuckmanII, F. G, Seth, S, Shalamova, V, Smirnova, T, Sonley, T, Sosiak, J, Soukup, J, Stainforth, R, Stringer, M, Tang, J, Vázquez-Jáuregui, E, Viel, S, Vyas, B, Walczak, M, Walding, J, Ward, M, Westerdale, S, Wormington, R

    Published 12-06-2024
    “…The knowledge of scintillation quenching of $\alpha$-particles plays a paramount role in understanding $\alpha$-induced backgrounds and improving the…”
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    Journal Article
  12. 12
  13. 13

    First direct detection constraints on Planck-scale mass dark matter with multiple-scatter signatures using the DEAP-3600 detector by Adhikari, P, Ajaj, R, Alpízar-Venegas, M, Auty, D. J, Benmansour, H, Bina, C. E, Bonivento, W, Boulay, M. G, Cadeddu, M, Cai, B, Cárdenas-Montes, M, Cavuoti, S, Chen, Y, Cleveland, B. T, Corning, J. M, Daugherty, S, DelGobbo, P, Di Stefano, P, Doria, L, Dunford, M, Ellingwood, E, Erlandson, A, Farahani, S. S, Fatemighomi, N, Fiorillo, G, Gallacher, D, Abia, P. García, Garg, S, Giampa, P, Goeldi, D, Gorel, P, Graham, K, Grobov, A, Hallin, A. L, Hamstra, M, Hugues, T, Ilyasov, A, Joy, A, Jigmeddorj, B, Jillings, C. J, Kamaev, O, Kaur, G, Kemp, A, Kochanek, I, Ku{ź}niak, M, Lai, M, Langrock, S, Lehnert, B, Leonhardt, A, Levashko, N, Li, X, Lissia, M, Litvinov, O, Lock, J, Longo, G, Machulin, I, McDonald, A. B, McElroy, T, McLaughlin, J. B, Mielnichuk, C, Mirasola, L, Monroe, J, Oliviéro, G, Pal, S, Peeters, S. J. M, Perry, M, Pesudo, V, Picciau, E, Piro, M. -C, Pollmann, T. R, Raj, N, Rand, E. T, Rethmeier, C, Retière, F, Rodríguez-García, I, Roszkowski, L, Ruhland, J. B, García, E. Sanchez, Sánchez-Pastor, T, Santorelli, R, Seth, S, Sinclair, D, Skensved, P, Smith, B, Smith, N. J. T, Sonley, T, Stainforth, R, Stringer, M, Sur, B, Vázquez-Jáuregui, E, Viel, S, Walding, J, Waqar, M, Ward, M, Westerdale, S, Willis, J, Zuñiga-Reyes, A

    Published 05-01-2022
    “…Phys. Rev. Lett. 128, 011801 (2022) Dark matter particles with Planck-scale mass ($\simeq10^{19}\text{GeV}/c^2$) arise in well-motivated theories and could be…”
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    Journal Article
  14. 14

    Pulseshape discrimination against low-energy Ar-39 beta decays in liquid argon with 4.5 tonne-years of DEAP-3600 data by The DEAP Collaboration, Adhikari, P, Ajaj, R, Alpízar-Venegas, M, Auty, D. J, Batygov, M, Beltran, B, Benmansour, H, Bina, C. E, Bonatt, J, Boulay, M. G, Broerman, B, Bueno, J. F, Burghardt, P. M, Cai, B, Cárdenas-Montes, M, Cavuoti, S, Chen, Y, Cleveland, B. T, Corning, J. M, Cranshaw, D, Dering, K, DiGioseffo, J, Di Stefano, P, Doria, L, Duncan, F. A, Dunford, M, Ellingwood, E, Erlandson, A, Farahani, S. S, Fatemighomi, N, Fiorillo, G, Florian, S, Flower, T, Gallacher, D, Abia, P. García, Giampa, P, Goeldi, D, Golovko, V, Gorel, P, Graham, K, Grant, D. R, Grobov, A, Hallin, A. L, Harvey, P. J, Hugues, T, Ilyasov, A, Joy, A, Jigmeddorj, B, Jillings, C. J, Kamaev, O, Kemp, A, Kochanek, I, Kuźniak, M, Lai, M, Langrock, S, Lehnert, B, Leonhardt, A, Levashko, N, Li, X, Lindner, T, Lissia, M, Lock, J, Longo, G, McElroy, T, McGinn, T, McLaughlin, J. B, Mehdiyev, R, Monroe, J, Nadeau, P, Ng, C, Noble, A. J, O'Dwyer, E, Oliviéro, G, Ouellet, C, Pal, S, Perry, M, Pesudo, V, Piro, M. -C, Pollmann, T. R, Rand, E. T, Rethmeier, C, Retière, F, Rodríguez-García, I, Roszkowski, L, Ruhland, J. B, Sánchez-García, E, Santorelli, R, Smith, B, Sonley, T, Soukup, J, Stainforth, R, Stone, C, Stringer, M, Tang, J, Walding, J, Waqar, M, Ward, M, Westerdale, S, Zuñiga-Reyes, A

    Published 22-03-2021
    “…Eur. Phys. J. C 81, 823 (2021) The DEAP-3600 detector searches for the scintillation signal from dark matter particles scattering on a 3.3 tonne liquid argon…”
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    Journal Article
  15. 15

    Development, characterisation, and deployment of the SNO+ liquid scintillator by Collaboration, SNO+, Anderson, M. R, Anselmo, L, Arushanova, E, Back, A. R, Barnard, Z, Bartlett, D, Bayes, R, Bialek, A, Biller, S. D, Blucher, E, Boulay, M, Caden, E, Cavalli, L, Chauhan, D, Chen, M, Chkvorets, O, Cleveland, B, Coulter, I. T, Dai, X, Duhaime, N, Duncan, F, Dunger, J, Earle, A. D, Fabris, D, Frankiewicz, K, Gagnon, N, Gaur, A, Gilje, K, Graham, K, Grant, C, Grove, J, Hall, S, Hans, S, Hartnell, J, Heise, J, Helmer, R. L, Horne, D, Jelley, N. A, Kaspar, J, Kefelian, C, Kippenbrock, L, Knapik, R, Kormos, L. L, Kraus, C, Kroupova, T, Lafleur, F, Lan, C, Land, B. J, Lane, R, Langrock, S, Lawson, I, Leming, E. J, Liggins, B, Maio, A, Martin, R. D, Mauel, J, McDonald, A. B, Miller, C, Morton-Blake, I, Mottram, M. J, Nae, S, Nolan, L. J, O'Keeffe, H. M, O'Sullivan, E, Gann, G. D. Orebi, Pickard, L, Reichold, A, Robertson, A, Rose, J, Schumaker, M. A, Secrest, J, Seibert, S, Semenec, I, Shaker, F, Shantz, T, Sibley, L, Skensved, P, Sonley, T, Strait, M, Svoboda, R, Tam, B, Tatar, J, Tian, L, Tseng, J, Tseung, H. W. C, Van Berg, R, Virtue, C. J, von Krosigk, B, Walker, J. M. G, Walker, M, Ward, M, Waterfield, J, Wilson, J. R, Winchester, T. J, Woosaree, P, Wright, A, Zhang, T, Zhao, T, Zuber, K

    Published 22-02-2021
    “…JINST 16 (2021) P05009 A liquid scintillator consisting of linear alkylbenzene as the solvent and 2,5-diphenyloxazole as the fluor was developed for the SNO+…”
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    Journal Article
  16. 16

    Search for dark matter with a 231-day exposure of liquid argon using DEAP-3600 at SNOLAB by Ajaj, R, Araujo, G. R, Baldwin, M, Batygov, M, Beltran, B, Bina, C. E, Bonatt, J, Boulay, M. G, Broerman, B, Bueno, J. F, Burghardt, P. M, Butcher, A, Cai, B, Cavuoti, S, Chen, M, Chen, Y, Cleveland, B. T, Cranshaw, D, Dering, K, DiGioseffo, J, Doria, L, Duncan, F. A, Dunford, M, Erlandson, A, Fatemighomi, N, Fiorillo, G, Florian, S, Flower, A, Ford, R. J, Gagnon, R, Gallacher, D, Garcés, E. A, Garg, S, Giampa, P, Goeldi, D, Golovko, V. V, Gorel, P, Graham, K, Grant, D. R, Hallin, A. L, Hamstra, M, Harvey, P. J, Hearns, C, Joy, A, Jillings, C. J, Kamaev, O, Kaur, G, Kemp, A, Kochanek, I, Kuźniak, M, Langrock, S, La Zia, F, Li, X, Lidgard, J, Lindner, T, Litvinov, O, Lock, J, Longo, G, Majewski, P, McDonald, A. B, McElroy, T, McGinn, T, McLaughlin, J. B, Mehdiyev, R, Mielnichuk, C, Monroe, J, Nadeau, P, Nantais, C, Ng, C, Noble, A. J, O'Dwyer, E, Ouellet, C, Pasuthip, P, Peeters, S. J. M, Piro, M. -C, Pollmann, T. R, Rand, E. T, Rethmeier, C, Retière, F, Seeburn, N, Singhrao, K, Skensved, P, Smith, B, Smith, N. J. T, Sonley, T, Soukup, J, Stainforth, R, Stone, C, Strickland, V, Sur, B, Tang, J, Vázquez-Jáuregui, E, Veloce, L, Viel, S, Walding, J, Waqar, M, Ward, M, Westerdale, S, Willis, J, Zuñiga-Reyes, A

    Published 04-07-2019
    “…Phys. Rev. D 100, 022004 (2019) DEAP-3600 is a single-phase liquid argon (LAr) direct-detection dark matter experiment, operating 2 km underground at SNOLAB…”
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    Journal Article
  17. 17
  18. 18

    In-situ characterization of the Hamamatsu R5912-HQE photomultiplier tubes used in the DEAP-3600 experiment by DEAP Collaboration, Batygov, M, Beltran, B, Bina, C. E, Bishop, D, Bonatt, J, Boorman, G, Boulay, M. G, Broerman, B, Bromwich, T, Bueno, J. F, Butcher, A, Cai, B, Chan, S, Chen, M, Chouinard, R, Churchwell, S, Cleveland, B. T, Cranshaw, D, Dering, K, Dittmeier, S, Duncan, F. A, Dunford, M, Erlandson, A, Fatemighomi, N, Ford, R. J, Gagnon, R, Giampa, P, Golovko, V. V, Gorel, P, Gornea, R, Grace, E, Graham, K, Grant, D. R, Gulyev, E, Hall, A, Hallin, A. L, Hamstra, M, Harvey, P. J, Hearns, C, Jillings, C. J, Kamaev, O, Kuźniak, M, Langrock, S, La Zia, F, Lehnert, B, Li, O, Lidgard, J. J, Liimatainen, P, Lim, C, Lindner, T, Linn, Y, Liu, S, Mathew, R, McDonald, A. B, McElroy, T, McFarlane, K, McLaughlin, J, Mead, S, Mehdiyev, R, Mielnichuk, C, Monroe, J, Muir, A, Nadeau, P, Nantais, C, Ng, C, Noble, A. J, O'Dwyer, E, Ohlmann, C, Olchanski, K, Olsen, K. S, Ouellet, C, Pasuthip, P, Peeters, S. J. M, Pollmann, T. R, Rand, E. T, Rau, W, Rethmeier, C, Retiére, F, Seeburn, N, Shaw, B, Singhrao, K, Skensved, P, Smith, B, Smith, N. J. T, Sonley, T, Stainforth, R, Stone, C, Strickland, V, Sur, B, Tang, J, Taylor, J, Veloce, L, Vázquez-Jáuregui, E, Walding, J, Ward, M, Westerdale, S, White, R, Woolsey, E, Zielinski, J

    Published 29-01-2019
    “…Nucl. Instrum. Methods Phys. Res. A 922, 373-384 (2019) The Hamamatsu R5912-HQE photomultiplier-tube (PMT) is a novel high-quantum efficiency PMT. It is…”
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    Journal Article
  19. 19

    Search for invisible modes of nucleon decay in water with the SNO+ detector by Collaboration, SNO+, Anderson, M, Arushanova, E, Asahi, S, Back, A. R, Bartlett, D, Barão, F, Bayes, R, Biller, S. D, Blucher, E, Caden, E, Carvalho, J, Cavalli, L, Chauhan, D, Chen, M, Chkvorets, O, Clark, K. J, Cleveland, B, Connors, C, Cressy, D, Darrach, C, Davis-Purcell, B, Depatie, M. M, Descamps, F, Duhaime, N, Duncan, F, Fatemighomi, N, Fischer, V, Ford, R, Grant, C, Grove, J, Hallin, A. L, Hallman, D, Hedayatipour, M, Heise, J, Helmer, R. L, Hernández-Hernández, J. L, Iida, T, Jillings, C. J, Jones, C, Kaptanoglu, T, Kefelian, C, Khaghani, P, Klein, J. R, Kofron, J, Kormos, L. L, Krar, B, Kraus, C, Labe, K, Land, B. J, LaTorre, A, Lefeuvre, G. M, Liggins, B, Liu, Y, Lozza, V, Maio, A, Maneira, J, Martin, R. D, Mastbaum, A, McDonald, A. B, Mekarski, P, Miller, C, Mottram, M. J, O'Keeffe, H. M, O'Sullivan, E, Gann, G. D. Orebi, Parnell, M. J, Paton, J, Petriw, Z, Pracsovics, D, Prior, G, Prouty, J. C, Quirk, S, Richardson, R, Rigan, M, Robertson, A, Rose, J, Secrest, J, Skensved, P, Stainforth, R, Strait, M, Sörensen, A, Tam, B, Tatar, J, Tseung, H. W. C, Turner, E, Veinot, J. G. C, Virtue, C. J, von Krosigk, B, Vázquez-Jáuregui, E, Walker, J. M. G, Wang, J, Weigand, J. J, Wilson, J. R, Winchester, T. J, Woosaree, P, Wright, A, Yanez, J. P, Yeh, M, Zhao, T

    Published 13-12-2018
    “…Phys. Rev. D 99, 032008 (2019) This paper reports results from a search for nucleon decay through 'invisible' modes, where no visible energy is directly…”
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    Journal Article
  20. 20

    First results from the DEAP-3600 dark matter search with argon at SNOLAB by Collaboration, DEAP-3600, :, Amaudruz, P. -A, Baldwin, M, Batygov, M, Beltran, B, Bina, C. E, Bishop, D, Bonatt, J, Boorman, G, Boulay, M. G, Bromwich, T, Bueno, J. F, Burghardt, P. M, Butcher, A, Cai, B, Chan, S, Chen, M, Chouinard, R, Cleveland, B. T, Cranshaw, D, Dering, K, DiGioseffo, J, Dittmeier, S, Duncan, F. A, Erlandson, A, Fatemighomi, N, Florian, S, Flower, A, Ford, R. J, Gagnon, R, Giampa, P, Golovko, V. V, Gorel, P, Gornea, R, Graham, K, Gulyev, E, Hakobyan, R, Hall, A, Hallin, A. L, Hamstra, M, Harvey, P. J, Hearns, C, Jillings, C. J, Kamaev, O, Kemp, A, Kuźniak, M, Langrock, S, La Zia, F, Lehnert, B, Lim, C, Lindner, T, Linn, Y, Liu, S, Majewski, P, Mathew, R, McDonald, A. B, McElroy, T, McGinn, T, McLaughlin, J. B, Mead, S, Mehdiyev, R, Mielnichuk, C, Monroe, J, Muir, A, Nadeau, P, Ng, C, Noble, A. J, O'Dwyer, E, Ohlmann, C, Olchanski, K, Olsen, K. S, Ouellet, C, Pasuthip, P, Pollmann, T. R, Rand, E. T, Rau, W, Rethmeier, C, Retière, F, Seeburn, N, Shaw, B, Singhrao, K, Skensved, P, Smith, B, Smith, N. J. T, Sonley, T, Soukup, J, Stainforth, R, Stone, C, Strickland, V, Sur, B, Tang, J, Taylor, J, Veloce, L, Vázquez-Jáuregui, E, Walding, J, Ward, M, Westerdale, S, Woolsey, E, Zielinski, J

    Published 13-08-2018
    “…Phys. Rev. Lett. 121, 071801 (2018) This paper reports the first results of a direct dark matter search with the DEAP-3600 single-phase liquid argon (LAr)…”
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    Journal Article