Showing 361 - 380 results of 3,455 for search '"gamma ray"', query time: 0.14s Refine Results
  1. 361
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  3. 363
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  6. 366

    Modelling the bimodal distribution of indoor gamma-ray dose-rates in Great Britain by Kendall, GM, Chernyavskiy, P, Appleton, JD, Miles, JCH, Wakeford, R, Athanson, M, Vincent, TJ, McColl, N, Little, MP

    Published 2018
    “…In the present paper, indoor measurements of naturally occurring gamma-rays at representative locations in Great Britain are summarized. …”
    Journal article
  7. 367

    Search for Prompt Neutrino Emission from Gamma-Ray Bursts with IceCube by Aartsen, MG, Ackermann, M, Adams, J, Sarkar, S, IceCube Collaboration

    Published 2015
    “…We present constraints derived from a search of four years of IceCube data for a prompt neutrino flux from gamma-ray bursts (GRBs). A single low-significance neutrino, compatible with the atmospheric neutrino background, was found in coincidence with one of the 506 observed bursts. …”
    Journal article
  8. 368

    A gamma-ray burst at a redshift of z approximately 8.2. by Tanvir, N, Fox, D, Levan, A, Berger, E, Wiersema, K, Fynbo, J, Cucchiara, A, Krühler, T, Gehrels, N, Bloom, J, Greiner, J, Evans, P, Rol, E, Olivares, F, Hjorth, J, Jakobsson, P, Farihi, J, Willingale, R, Starling, R, Cenko, S, Perley, D, Maund, JR, Duke, J, Wijers, R, Adamson, A

    Published 2009
    “…Long-duration gamma-ray bursts (GRBs) are thought to result from the explosions of certain massive stars, and some are bright enough that they should be observable out to redshifts of z > 20 using current technology. …”
    Journal article
  9. 369

    The intrinsic gamma-ray spectrum of TXS 0506+056: intergalactic propagation effects by Saveliev, A, Batista, RA

    Published 2020
    “…In this work, we present a comprehensive study of the influence of these fields and the extragalactic background light on the determination of the intrinsic gamma-ray spectrum of this blazar.…”
    Journal article
  10. 370

    Search for Galactic PeV gamma rays with the IceCube Neutrino Observatory by Aartsen, M, Abbasi, R, Abdou, Y, Ackermann, M, Adams, J, Aguilar, J, Ahlers, M, Altmann, D, Andeen, K, Auffenberg, J, Bai, X, Baker, M, Barwick, S, Baum, V, Bay, R, Beattie, K, Beatty, J, Bechet, S, Becker Tjus, J, Becker, K, Bell, M, Benabderrahmane, M, Benzvi, S, Berdermann, J, Berghaus, P, Berley, D, Bernardini, E, Bertrand, D, Besson, D, Bindig, D, Bissok, M, Blaufuss, E, Blumenthal, J, Boersma, D, Bohaichuk, S, Bohm, C, Bose, D, Böser, S, Botner, O, Brayeur, L, Brown, A, Bruijn, R, Brunner, J, Buitink, S, Carson, M, Casey, J, Casier, M, Chirkin, D, Christy, B, Clark, K, Clevermann, F, Cohen, S, Cowen, D, Cruz Silva, A, Danninger, M, Daughhetee, J, Davis, J, De Clercq, C, De Ridder, S, Descamps, F, Desiati, P, De Vries-Uiterweerd, G, Deyoung, T, Díaz-Vélez, J, Dreyer, J, Dumm, J, Dunkman, M, Eagan, R, Eisch, J, Ellsworth, R, Engdegård, O, Euler, S, Evenson, P, Fadiran, O, Fazely, A, Fedynitch, A, Feintzeig, J, Feusels, T, Filimonov, K, Finley, C, Fischer-Wasels, T, Flis, S, Franckowiak, A, Franke, R, Frantzen, K, Fuchs, T, Gaisser, T, Gallagher, J, Gerhardt, L, Gladstone, L, Glüsenkamp, T, Goldschmidt, A, Golup, G, Goodman, J, Góra, D, Grant, D, Groß, A, Grullon, S, Gurtner, M, Ha, C, Haj Ismail, A, Hallgren, A, Halzen, F, Hanson, K, Heereman, D, Heimann, P, Heinen, D, Helbing, K, Hellauer, R, Hickford, S, Hill, G, Hoffman, K, Hoffmann, R, Homeier, A, Hoshina, K, Huelsnitz, W, Hulth, P, Hultqvist, K, Hussain, S, Ishihara, A, Jacobi, E, Jacobsen, J, Japaridze, G, Jlelati, O, Kappes, A, Karg, T, Karle, A, Kiryluk, J, Kislat, F, Kläs, J, Klein, S, Köhne, J, Kohnen, G, Kolanoski, H, Köpke, L, Kopper, C, Kopper, S, Koskinen, D, Kowalski, M, Krasberg, M, Kroll, G, Kunnen, J, Kurahashi, N, Kuwabara, T, Labare, M, Landsman, H, Larson, M, Lauer, R, Lesiak-Bzdak, M, Lünemann, J, Madsen, J, Maruyama, R, Mase, K, Matis, H, McNally, F, Meagher, K, Merck, M, Mészáros, P, Meures, T, Miarecki, S, Middell, E, Milke, N, Miller, J, Mohrmann, L, Montaruli, T, Morse, R, Nahnhauer, R, Naumann, U, Nowicki, S, Nygren, D, Obertacke, A, Odrowski, S, Olivas, A, Olivo, M, O’Murchadha, A, Panknin, S, Paul, L, Pepper, J, Pérez De Los Heros, C, Pieloth, D, Pirk, N, Posselt, J, Price, P, Przybylski, G, Rädel, L, Rawlins, K, Redl, P, Resconi, E, Rhode, W, Ribordy, M, Richman, M, Riedel, B, Rodrigues, J, Rothmaier, F, Rott, C, Ruhe, T, Ruzybayev, B, Ryckbosch, D, Saba, S, Salameh, T, Sander, H, Santander, M, Sarkar, S, Schatto, K, Scheel, M, Scheriau, F, Schmidt, T, Schmitz, M, Schoenen, S, Schöneberg, S, Schönherr, L, Schönwald, A, Schukraft, A, Schulte, L, Schulz, O, Seckel, D, Seo, S, Sestayo, Y, Seunarine, S, Sheremata, C, Smith, M, Soiron, M, Soldin, D, Spiczak, G, Spiering, C, Stamatikos, M, Stanev, T, Stasik, A, Stezelberger, T, Stokstad, R, Stößl, A, Strahler, E, Ström, R, Sullivan, G, Taavola, H, Taboada, I, Tamburro, A, Ter-Antonyan, S, Tilav, S, Toale, P, Toscano, S, Usner, M, Van Der Drift, D, Van Eijndhoven, N, Van Overloop, A, Van Santen, J, Vehring, M, Voge, M, Vraeghe, M, Walck, C, Waldenmaier, T, Wallraff, M, Walter, M, Wasserman, R, Weaver, C, Wendt, C, Westerhoff, S, Whitehorn, N, Wiebe, K, Wiebusch, C, Williams, D, Wissing, H, Wolf, M, Wood, T, Woschnagg, K, Xu, C, Xu, D, Xu, X, Yanez, J, Yodh, G, Yoshida, S, Zarzhitsky, P, Ziemann, J, Zierke, S, Zilles, A, Zoll, M

    Published 2013
    “…Gamma-ray induced air showers are notable for their lack of muons, compared to hadronic showers. …”
    Journal article
  11. 371

    The search for muon neutrinos from northern hemisphere gamma-ray bursts with amanda by Achterberg, A, Ackermann, M, Adams, J, Ahrens, J, Andeen, K, Auffenberg, J, Bahcall, J, Bai, X, Baret, B, Barwick, S, Bay, R, Beattie, K, Becka, T, Becker, J, Becker, K, Berghaus, P, Berley, D, Bernardini, E, Bertrand, D, Besson, D, Blaufuss, E, Boersma, D, Bohm, C, Bolmont, J, Boeser, S

    Published 2008
    “…We present the results of the analysis of neutrino observations by the Antarctic Muon and Neutrino Detector Array (AMANDA) correlated with photon observations of more than 400 gamma-ray bursts (GRBs) in the northern hemisphere from 1997 to 2003. …”
    Journal article
  12. 372

    OxGamma: A MATLAB based application for the analysis of gamma-ray spectra by Kumar, R, Frouin, M, Gazack, J, Schwenninger, J-L

    Published 2022
    “…Gamma-ray spectrometry is a well-established technique which enables to perform qualitative and quantitative analyses of gamma-ray emitting radionuclides. …”
    Journal article
  13. 373

    Gamma-Ray Bursts from tidally spun-up Wolf-Rayet stars? by Detmers, R, Langer, N, Podsiadlowski, P, Izzard, R

    Published 2008
    “…The collapsar model requires rapidly rotating Wolf-Rayet stars as progenitors of long gamma-ray bursts. However, Galactic Wolf-Rayet stars rapidly lose angular momentum due to their intense stellar winds. …”
    Journal article
  14. 374

    A new population of high-redshift short-duration gamma-ray bursts by Berger, E, Fox, D, Price, P, Nakar, E, Gal-Yam, A, Holz, D, Schmidt, B, Cucchiara, A, Cenko, S, Kulkarni, SR, Soderberg, A, Frail, D, Penprase, B, Rau, A, Ofek, E, Burnell, S, Cameron, P, Cowie, L, Dopita, M, Hook, I, Peterson, B, Podsiadlowski, P, Roth, K, Rutledge, R, Sheppard, S

    Published 2007
    “…The redshift distribution of the short-duration gamma-ray bursts (GRBs) is a crucial, but currently fragmentary, clue to the nature of their progenitors. …”
    Journal article
  15. 375
  16. 376

    Linear polarization and directional distribution of gamma-rays from oriented172Lu by Nováková, D, Říkovská, J, Jankech, A, Ferencei, J, Pavlov, V, Finger, M

    Published 1983
    “…The gamma-ray linear polarization data in combination with the results of the directional distribution measurements were used to determine precise values of the multipole mixing ratios of the gamma-transitions in the172Yb nucleus. …”
    Journal article
  17. 377
  18. 378
  19. 379

    Properties of a gamma-ray burst host galaxy at z similar to 5 by Price, P, Songaila, A, Cowie, L, Burnell, J, Berger, E, Cucchiara, A, Fox, D, Hook, I, Kulkarni, SR, Penprase, B, Roth, K, Schmidt, B

    Published 2007
    “…We describe the properties of the host galaxy of the gamma-ray burst GRB 060510B based on a spectrum of the burst afterglow obtained with the Gemini North 8 m telescope. …”
    Journal article
  20. 380

    Search for Galactic PeV Gamma Rays with the IceCube Neutrino Observatory by collaboration, I, Aartsen, MG, Abbasi, R, Abdou, Y, Ackermann, M, Adams, J, Aguilar, J, Ahlers, M, Altmann, D, Andeen, K, Auffenberg, J, Bai, X, Baker, M, Barwick, S, Baum, V, Bay, R, Beattie, K, Beatty, J, Bechet, S, Tjus, J, Becker, K, Bell, M, Benabderrahmane, M, BenZvi, S, Berdermann, J, Berghaus, P, Berley, D, Bernardini, E, Bertrand, D, Besson, D, Bindig, D, Bissok, M, Blaufuss, E, Blumenthal, J, Boersma, D, Bohaichuk, S, Bohm, C, Bose1, D, Böser, S, Botner, O, Brayeur, L, Brown, A, Bruijn, R, Brunner, J, Buitink, S, Carson, M, Casey, J, Casier, M, Chirkin, D, Christy, B, Clark, K, Clevermann, F, Cohen, S, Cowen, D, Silva, A, Danninger, M, Daughhetee, J, Davis, J, Clercq, C, Ridder, S, Descamps, F, Desiati, P, Vries-Uiterweerd, G, DeYoung, T, Díaz-Vélez, J, Dreyer, J, Dumm, J, Dunkman, M, Eagan, R, Eberhardt, B, Eisch, J, Ellsworth, R, Engdegård, O, Euler, S, Evenson, P, Fadiran, O, Fazely, A, Fedynitch, A, Feintzeig, J, Feusels, T, Filimonov, K, Finley, C, Fischer-Wasels, T, Flis, S, Franckowiak, A, Franke, R, Frantzen, K, Fuchs, T, Gaisser, T, Gallagher, J, Gerhardt, L, Gladstone, L, Glüsenkamp, T, Goldschmidt, A, Golup, G, Goodman, J, Góra, D, Grant, D, Groß, A, Grullon, S, Gurtner, M, Ha, C, Ismail, A, Hallgren, A, Halzen, F, Hanson, K, Heereman, D, Heimann, P, Heinen, D, Helbing, K, Hellauer, R, Hickford, S, Hill, G, Hoffman, K, Hoffmann, R, Homeier, A, Hoshina, K, Huelsnitz, W, Hulth, P, Hultqvist, K, Hussain, S, Ishihara, A, Jacobi, E, Jacobsen, J, Japaridze, G, Jlelati, O, Kappes, A, Karg, T, Karle, A, Kiryluk, J, Kislat, F, Kläs, J, Klein, SR, Köhne, J, Kohnen, G, Kolanoski, H, Köpke, L, Kopper, C, Kopper, S, Koskinen, D, Kowalski, M, Krasberg, M, Kroll, G, Kunnen, J, Kurahashi, N, Kuwabara, T, Labare, M, Landsman, H, Larson, M, Lauer, R, Lesiak-Bzdak, M, Lünemann, J, Madsen, J, Maruyama, R, Mase, K, Matis, H, McNally, F, Meagher, K, Merck, M, Mészáros, P, Meures, T, Miarecki, S, Middell, E, Milke, N, Miller, J, Mohrmann, L, Montaruli, T, Morse, R, Nahnhauer, R, Naumann, U, Nowicki, S, Nygren, DR, Obertacke, A, Odrowski, S, Olivas, A, Olivo, M, O'Murchadha, A, Panknin, S, Paul, L, Pepper, J, Heros, C, Pieloth, D, Pirk, N, Posselt, J, Price, P, Przybylski, G, Rädel, L, Rawlins, K, Redl, P, Resconi, E, Rhode, W, Ribordy, M, Richman, M, Riedel, B, Rodrigues, J, Rott, C, Ruhe, T, Ruzybayev, B, Ryckbosch, D, Saba, S, Salameh, T, Sander, H, Santander, M, Sarkar, S, Schatto, K, Scheel, M, Scheriau, F, Schmidt, T, Schmitz, M, Schoenen, S, Schöneberg, S, Schönherr, L, Schönwald, A, Schukraft, A, Schulte, L, Schulz, O, Seckel, D, Seo, S, Sestayo, Y, Seunarine, S, Sheremata, C, Smith, M, Soiron, M, Soldin, D, Spiczak, G, Spiering, C, Stamatikos, M, Stanev, T, Stasik, A, Stezelberger, T, Stokstad, R, Stöß, A, Strahler, E, Ström, R, Sullivan, G, Taavola, H, Taboada, I, Tamburro, A, Ter-Antonyan, S, Tilav, S, Toale, P, Toscano, S, Usner, M, Drift, D, Eijndhoven, N, Overloop, A, Santen, J, Vehring, M, Voge1, M, Vraeghe, M, Walck, C, Waldenmaier, T, Wallraff, M, Walter, M, Wasserman, R, Weaver, C, Wendt, C, Westerhoff, S, Whitehorn, N, Wiebe, K, Wiebusch, C, Williams, DR, Wissing, H, Wolf, M, Wood, T, Woschnagg, K, Xu, C, Xu, D, Xu, X, Yanez, J, Yodh, G, Yoshida, S, Zarzhitsky, P, Ziemann, J, Zierke, S, Zilles, A, Zoll, M

    Published 2012
    “…Gamma-ray induced air showers are notable for their lack of muons, compared to hadronic showers. …”
    Journal article