Search Results - "Pushkin, K."

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  1. 1

    Spin-dependent limits from the DRIFT-IId directional dark matter detector by Daw, E., Fox, J.R., Gauvreau, J.-L., Ghag, C., Harmon, L.J., Gold, M., Lee, E.R., Loomba, D., Miller, E.H., Murphy, A.StJ, Paling, S.M., Landers, J.M., Pipe, M., Pushkin, K., Robinson, M., Snowden-Ifft, D.P., Spooner, N.J.C., Walker, D.

    Published in Astroparticle physics (01-02-2012)
    “…► DRIFT is only one of a handful of directional dark matter detectors. ► A method of rejecting Radon Progeny Recoils, DRIFT’s main background, is discussed. ►…”
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    Journal Article
  2. 2

    Development of a method for the regeneration of an alkaline electrolyte in an air–aluminum chemical power supply by Pushkin, K. V., Sevruk, S. D., Suvorova, E. V., Farmakovskaya, A. A.

    Published in Russian metallurgy Metally (01-12-2015)
    “…The results of studying the development of a regeneration technology for the spent alkaline electrolyte in an air–aluminum chemical power supply are presented…”
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    Journal Article
  3. 3

    Observation of two-neutrino double-beta decay in 136Xe with the EXO-200 detector by Ackerman, N, Aharmim, B, Auger, M, Auty, D J, Barbeau, P S, Barry, K, Bartoszek, L, Beauchamp, E, Belov, V, Benitez-Medina, C, Breidenbach, M, Burenkov, A, Cleveland, B, Conley, R, Conti, E, Cook, J, Cook, S, Coppens, A, Counts, I, Craddock, W, Daniels, T, Danilov, M V, Davis, C G, Davis, J, deVoe, R, Djurcic, Z, Dobi, A, Dolgolenko, A G, Dolinski, M J, Donato, K, Dunford, M, Fairbank, Jr, W, Farine, J, Fierlinger, P, Franco, D, Freytag, D, Giroux, G, Gornea, R, Graham, K, Gratta, G, Green, M P, Hägemann, C, Hall, C, Hall, K, Haller, G, Hargrove, C, Herbst, R, Herrin, S, Hodgson, J, Hughes, M, Johnson, A, Karelin, A, Kaufman, L J, Koffas, T, Kuchenkov, A, Kumar, A, Kumar, K S, Leonard, D S, Leonard, F, LePort, F, Mackay, D, MacLellan, R, Marino, M, Martin, Y, Mong, B, Díez, M Montero, Morgan, P, Müller, A R, Neilson, R, Nelson, R, Odian, A, O'Sullivan, K, Ouellet, C, Piepke, A, Pocar, A, Prescott, C Y, Pushkin, K, Rivas, A, Rollin, E, Rowson, P C, Russell, J J, Sabourov, A, Sinclair, D, Skarpaas, K, Slutsky, S, Stekhanov, V, Strickland, V, Swift, M, Tosi, D, Twelker, K, Vogel, P, Vuilleumier, J-L, Vuilleumier, J-M, Waite, A, Waldman, S, Walton, T, Wamba, K, Weber, M, Wichoski, U, Wodin, J

    Published in Physical review letters (18-11-2011)
    “…We report the observation of two-neutrino double-beta decay in (136)Xe with T(1/2) = 2.11 ± 0.04(stat) ± 0.21(syst) × 10(21) yr. This second-order process,…”
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    Journal Article
  4. 4

    A new generation γ-ray camera for planetary science applications: High pressure xenon time projection chamber by Kobayashi, S., Hasebe, N., Hosojima, T., Igarashi, T., Kobayashi, M.-N., Mimura, M., Miyachi, T., Miyajima, M., Pushkin, K.N., Sakaba, H., Tezuka, C., Doke, T., Shibamura, E.

    Published in Advances in space research (2006)
    “…A new γ-ray imaging camera based on High-pressure Xe Time-Projection-Chamber (HPXe-TPC) allows us to simultaneously determine arrival direction and its energy…”
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    Journal Article
  5. 5

    Scintillation Light, Ionization Yield and Scintillation Decay Times in High Pressure Xenon and Xenon Methane by Pushkin, K.N., Akimov, D.Y., Burenkov, A.A., Dmitrenko, V.V., Kovalenko, A.G., Lebedenko, V.N., Kuznetsov, I.S., Stekhanov, V.N., Tezuka, C., Ulin, S.E., Uteshev, Z.M., Vlasik, K.F.

    Published in IEEE transactions on nuclear science (01-06-2007)
    “…Scintillation light, ionization yield and scintillation decay times have been measured in xenon and in its mixture with a 0.05% concentration of methane as a…”
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    Journal Article
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    The MAJORANA DEMONSTRATOR Neutrinoless Double-Beta Decay Experiment by Shanks, B., Shima, T., Shirchenko, M. V., Snavely, K. J., Snyder, N., Thompson, J., Steele, D., Strain, J., Suriano, A. M., Timkin, V., Tornow, W., Varner, R. L., Vasilyev, S., Vetter, K., Vorren, K., White, B. R., Wilkerson, J. F., Williams, T., Xu, W., Yakushev, E., Young, A. R., Yu, C.-H., Yumatov, V., Abgrall, N., Aguayo, E., Avignone, F. T., Barabash, A. S., Bertrand, F. E., Boswell, M., Brudanin, V. B., Busch, M., Caldwell, A. S., Chan, Y.-D., Christofferson, C. D., Combs, D. C., Detwiler, J. A., Doe, P. J., Efremenko, Yu, Egorov, V. G., Ejiri, H., Elliott, S. R., Esterline, J., Fast, J. E., Finnerty, P., Fraenkle, F. M., Galindo-Uribarri, A., Giovanetti, G. K., Goett, J., Green, M. P., Gruszko, J., Guiseppe, V. E., Gusev, K., Hallin, A. L., Hazama, R., Hegai, A., Howe, M. A., Henning, R., Hoppe, E. W., Howard, S., Keeter, K. J., Kidd, M. F., Knecht, A., Kochetov, O., Konovalov, S. I., Kouzes, R. T., LaFerriere, B. D., Leon, J., Leviner, L. E., Loach, J. C., Luke, P. N., MacMullin, S., Martin, R. D., Mertens, S., O'Shaughnessy, C., Mizouni, L., Nomachi, M., Orrell, J. L., Overman, N. R., Phillips, David, Poon, A. W. P., Pushkin, K., Radford, D. C., Rielage, K., Robertson, R. G. H., Ronquest, M. C., Schubert, A. G.

    Published in Advances in high energy physics (01-01-2014)
    “…The Majorana Demonstrator will search for the neutrinoless double-beta (ββ0ν) decay of the isotope Ge with a mixed array of enriched and natural germanium…”
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    Journal Article
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    Simulations of events for the LUX-ZEPLIN (LZ) dark matter experiment by Akerlof, C. W., Armstrong, J. E., Arthurs, M., Bai, X., Balashov, S., Bang, J., Baxter, A., Bensinger, J., Bernard, E. P., Bhatti, A., Biekert, A., Boast, K. E., Boxer, B., Brás, P., Burdin, S., Carels, C., Cascella, M., Chott, N. I., Cole, A., Cottle, A., Dahl, C. E., Druszkiewicz, E., Fayer, S., Fiorucci, S., Flaecher, H., Gaitskell, R. J., Ghag, C., Hertel, S. A., Hor, J. Y-K., Horn, M., Huang, D. Q., Ignarra, C. M., Ji, W., Kaboth, A. C., Kazkaz, K., Khazov, A., Khurana, I., Kocher, C. D., Korley, L., Kreczko, L., Krikler, B., Kudryavtsev, V. A., Lee, J., Levy, C., Li, J., Liao, J., Liao, F. -T., Lin, J., Lindote, A., Linehan, R., Lippincott, W. H., Loniewski, C., Lopes, M. I., López Paredes, B., Lorenzon, W., Luitz, S., Manalaysay, A., Marangou, N., Marzioni, M. F., McKinsey, D. N., Meng, Y., Miller, E. H., Morad, J. A., Murphy, A. St.J., Naim, D., Naylor, A., Nedlik, C., Nehrkorn, C., Neves, F., Nilima, A., Parveen, N., Penning, B., Pereira, G., Piepke, A., Pushkin, K., Riffard, Q., Rischbieter, G. R.C., Rossiter, P., Rutherford, G., Schnee, R. W., Schubnell, M., Scovell, P. R., Seymour, D., Shaw, S., Shutt, T. A., Silk, J. J., Silva, C., Sorensen, P., Stancu, I., Szydagis, M., Tan, M., Taylor, W. C., Taylor, R., Tiedt, D. R., Tomás, A., Tripathi, M., Turner, W., Utku, U., Webb, R. C., White, R. G.

    Published in Astroparticle physics (16-06-2020)
    “…The LUX-ZEPLIN dark matter search aims to achieve a sensitivity to the WIMP-nucleon spin-independent cross-section down to (1-2) $\times$ $10^{-12}$ pb at a…”
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    Journal Article
  15. 15

    Simulations of events for the LUX-ZEPLIN (LZ) dark matter experiment by Akerlof, C. W., Armstrong, J. E., Arthurs, M., Bai, X., Balashov, S., Bang, J., Baxter, A., Bensinger, J., Bernard, E. P., Bhatti, A., Biekert, A., Boast, K. E., Boxer, B., Brás, P., Burdin, S., Carels, C., Cascella, M., Chott, N. I., Cole, A., Cottle, A., Dahl, C. E., Druszkiewicz, E., Fayer, S., Fiorucci, S., Flaecher, H., Gaitskell, R. J., Ghag, C., Hertel, S. A., Hor, J. Y-K., Horn, M., Huang, D. Q., Ignarra, C. M., Ji, W., Kaboth, A. C., Kazkaz, K., Khazov, A., Khurana, I., Kocher, C. D., Korley, L., Kreczko, L., Krikler, B., Kudryavtsev, V. A., Lee, J., Levy, C., Li, J., Liao, J., Liao, F. -T., Lin, J., Lindote, A., Linehan, R., Lippincott, W. H., Loniewski, C., Lopes, M. I., López Paredes, B., Lorenzon, W., Luitz, S., Manalaysay, A., Marangou, N., Marzioni, M. F., McKinsey, D. N., Meng, Y., Miller, E. H., Morad, J. A., Murphy, A. St.J., Naim, D., Naylor, A., Nedlik, C., Nehrkorn, C., Neves, F., Nilima, A., Parveen, N., Penning, B., Pereira, G., Piepke, A., Pushkin, K., Riffard, Q., Rischbieter, G. R.C., Rossiter, P., Rutherford, G., Schnee, R. W., Schubnell, M., Scovell, P. R., Seymour, D., Shaw, S., Shutt, T. A., Silk, J. J., Silva, C., Sorensen, P., Stancu, I., Szydagis, M., Tan, M., Taylor, W. C., Taylor, R., Tiedt, D. R., Tomás, A., Tripathi, M., Turner, W., Utku, U., Webb, R. C., White, R. G.

    Published in Astroparticle physics (16-06-2020)
    “…The LUX-ZEPLIN dark matter search aims to achieve a sensitivity to the WIMP-nucleon spin-independent cross-section down to (1-2) $\times$ $10^{-12}$ pb at a…”
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    Journal Article
  16. 16

    The Majorana Demonstrator radioassay program by Abgrall, N., Arnquist, I. J., Avignone, F. T., Back, H. O., Barabash, A. S., Bertrand, F. E., Boswell, Melissa, Bradley, A. W., Brudanin, V., Busch, M., Buuck, M., Byram, D., Caldwell, A. S., Chan, Y. -D., Christofferson, C. D., Chu, Pinghan, Cuesta, C., Detwiler, J. A., Dunmore, J. A., Efremenko, Yu, Ejiri, H., Elliott, S. R., Finnerty, P., Galindo-Uribarri, A., Gehman, V. M., Gilliss, T., Giovanetti, G. K., Goett, John Jerome, Green, M. P., Gruszko, J., Guinn, I. S., Guiseppe, V. E., Henning, R., Hoppe, E. W., Howard, S., Howe, M. A., Jasinski, B. R., Johnson, R. A., Keeter, K. J., Kidd, M. F., Kochetov, O., Konovalov, S. I., Kouzes, R. T., LaFerriere, B. D., Leon, J., Loach, J. C., MacMullin, J., MacMullin, S., Martin, R. D., Massarczyk, Ralph, Meijer, S., Mertens, S., Miller, M. L., Orrell, J. L., O'Shaughnessy, C., Overman, N. R., Poon, A. W. P., Pushkin, K., Radford, D. C., Rager, J., Rielage, Keith Robert, Robertson, R. G. H., Romero-Romero, E., Ronquest, M. C., Schubert, A. G., Shanks, B., Shirchenko, M., Snavely, K. J., Snyder, N., Steele, D., Suriano, A. M., Tedeschi, D., Trimble, J. E., Varner, R. L., Vasilyev, S., Vetter, K., Vorren, K., White, B. R., Wilkerson, J. F., Wiseman, C., Xu, W., Yakushev, E., Yu, C. -H., Yumatov, V., Zhitnikov, I.

    “…The Majorana collaboration is constructing the Majorana Demonstrator at the Sanford Underground Research Facility at the Homestake gold mine, in Lead, SD. The…”
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    Journal Article
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    The Majorana Parts Tracking Database by Abgrall, N., Aguayo, E., Avignone, F. T., Barabash, A. S., Bertrand, F. E., Brudanin, V., Busch, M., Byram, D., Caldwell, A. S., Chan, Y-D., Christofferson, C. D., Combs, D. C., Cuesta, C., Detwiler, J. A., Doe, P. J., Efremenko, Yu, Egorov, V., Ejiri, H., Elliott, S. R., Esterline, J., Fast, J. E., Finnerty, P., Fraenkle, F. M., Galindo-Uribarri, A., Giovanetti, G. K., Goett, J., Green, M. P., Gruszko, J., Guiseppe, V. E., Gusev, K., Hallin, A. L., Hazama, R., Hegai, A., Henning, R., Hoppe, E. W., Howard, S., Howe, M. A., Keeter, K. J., Kidd, M. F., Kochetov, O., Konovalov, S. I., Kouzes, R. T., LaFerriere, B. D., Leon, J. Diaz, Leviner, L. E., Loach, J. C., MacMullin, J., Martin, R. D., Meijer, S. J., Mertens, S., Miller, M. L., Mizouni, L., Nomachi, M., Orrell, J. L., O׳Shaughnessy, C., Overman, N. R., Petersburg, R., Phillips, D. G., Poon, A. W. P., Pushkin, K., Radford, D. C., Rager, J., Rielage, K., Robertson, R. G. H., Romero-Romero, E., Ronquest, M. C., Shanks, B., Shima, T., Shirchenko, M., Snavely, K. J., Snyder, N., Soin, A., Suriano, A. M., Tedeschi, D., Thompson, J., Timkin, V., Tornow, W., Trimble, J. E., Varner, R. L., Vasilyev, S., Vetter, K., Vorren, K., White, B. R., Wilkerson, J. F., Wiseman, C., Xu, W., Yakushev, E., Young, A. R., Yu, C. -H., Yumatov, V., Zhitnikov, I.

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    Journal Article
  19. 19

    Electron diffusion and scintillation in xenon doped with hydrogen for high-pressure xenon time projection chamber by Tezuka, C., Hasebe, N., Kobayashi, S., Igarashi, T., Mimura, M., Hosojima, T., Kobayashi, M.-N., Doke, T., Miyajima, M., Miyach, T., Okada, H., Shibamura, E., Pushkin, K.N., Ulin, S.E.

    “…High-pressure xenon time projection chamber (HPXe-TPC) is a sophisticated detector, which can determine not only an energy of gamma ray but also its arrival…”
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    Conference Proceeding
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    Scintillation yield in high pressure xenon and xenon doped with methane by Pushkin, K.N., Hasebe, N., Kobayashi, S., Tezuka, C., Mimura, M., Hosojima, T., Kobayashi, M.N., Doke, T., Miyajima, M., Miyachi, T., Shibamura, E., Ulin, S.E., Dmitrenko, V.V.

    “…Scintillation light and ionization yields in pure xenon and xenon doped with various concentration of methane (0.2-2%) have been measured as a function of the…”
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    Conference Proceeding