Zobrazeno 1 - 10
of 366
pro vyhledávání: '"Ingelman, G"'
Publikováno v:
Nucl.Phys.A808:178-191,2008
The quark-gluon plasma (QGP) can be explored in relativistic heavy ion collisions by the jet quenching signature, i.e. by the energy loss of a high energy quark or gluon traversing the plasma. We introduce a novel QCD evolution formalism in the leadi
Externí odkaz:
http://arxiv.org/abs/0802.3282
Autor:
Abreu, S., Akkelin, S. V., Alam, J., Albacete, J. L., Andronic, A., Antonov, D., Arleo, F., Armesto, N., Arsene, I. C., Barnafoldi, G. G., Barrette, J., Bauchle, B., Becattini, F., Betz, B., Bleicher, M., Bluhm, M., Boer, D., Bopp, F. W., Braun-Munzinger, P., Bravina, L., Busza, W., Cacciari, M., Capella, A., Casalderrey-Solana, J., Chatterjee, R., Chen, L. -W., Cleymans, J., Cole, B. A., Del Valle, Z. Conesa, Csernai, L. P., Cunqueiro, L., Dainese, A., Ding, J. Dias de Deus H. -T., Djordjevic, M., Drescher, H., Dumitru, I. M. Dremin A., El, A., Engel, R., d'Enterria, D., Eskola, K. J., Fai, G., Ferreiro, E. G., Fries, R. J., Frodermann, E., Fujii, H., Gale, C., Gelis, F., Goncalves, V. P., Greco, V., Greiner, C., Gyulassy, M., van Hees, H., Heinz, U., Honkanen, H., Horowitz, W. A., Iancu, E., Ingelman, G., Jalilian-Marian, J., Jeon, S., Kaidalov, A. B., Kampfer, B., Kang, Z. -B., Karpenko, Iu. A., Kestin, G., Kharzeev, D., Ko, C. M., Koch, B., Kopeliovich, B., Kozlov, M., Kraus, I., Kuznetsova, I., Lee, S. H., Lednicky, R., Letessier, J., Levin, E., Li, B. -A., Lin, Z. -W., Liu, H., Liu, W., Loizides, C., Lokhtin, I. P., Machado, M. V. T., Malinina, L. V., Managadze, A. M., Mangano, M. L., Mannarelli, M., Manuel, C., Martinez, G., Milhano, J. G., Mocsy, A., Molnar, D., Nardi, M., Nayak, J. K., Niemi, H., Oeschler, H., Ollitrault, J. -Y., Paic, G., Pajares, C., Pantuev, V. S., Papp, G., Peressounko, D., Petreczky, P., Petrushanko, S. V., Piccinini, F., Pierog, T., Pirner, H. J., Porteboeuf, S., Potashnikova, I., Qin, G. Y., Qiu, J. -W., Rafelski, J., Rajagopal, K., Ranft, J., Rapp, R., Rasanen, S. S., Rathsman, J., Rau, P., Redlich, K., Renk, T., Rezaeian, A. H., Rischke, D., Roesler, S., Ruppert, J., Ruuskanen, P. V., Salgado, C. A., Sapeta, S., Sarcevic, I., Sarkar, S., Sarycheva, L. I., Schmidt, I., Shoshi, A. I., Sinha, B., Sinyukov, Yu. M., Snigirev, A. M., Srivastava, D. K., Stachel, J., Stasto, A., Stocker, H., Teplov, C. Yu., Thews, R. L., Torrieri, G., Pop, V. Topor, Triantafyllopoulos, D. N., Tuchin, K. L., Turbide, S., Tywoniuk, K., Utermann, A., Venugopalan, R., Vitev, I., Vogt, R., Wang, E., Wang, X. N., Werner, K., Wessels, E., Wheaton, S., Wicks, S., Wiedemann, U. A., Wolschin, G., Xiao, B. -W., Xu, Z., Yasui, S., Zabrodin, E., Zapp, K., Zhang, B., Zhang, B. -W., Zhang, H., Zhou, D.
Publikováno v:
J.Phys.G35:054001,2008
This writeup is a compilation of the predictions for the forthcoming Heavy Ion Program at the Large Hadron Collider, as presented at the CERN Theory Institute 'Heavy Ion Collisions at the LHC - Last Call for Predictions', held from May 14th to June 1
Externí odkaz:
http://arxiv.org/abs/0711.0974
Publikováno v:
Phys.Rev.Lett.98:071103,2007
The Moon provides a huge effective detector volume for ultrahigh energy cosmic neutrinos, which generate coherent radio pulses in the lunar surface layer due to the Askaryan effect. In light of presently considered lunar missions, we propose radio me
Externí odkaz:
http://arxiv.org/abs/astro-ph/0604199
Autor:
Alekhin, S., Altarelli, G., Amapane, N., Andersen, J., Andreev, V., Arneodo, M., Avati, V., Baines, J., Ball, R. D., Banfi, A., Baranov, S. P., Bartels, J., Behnke, O., Bellan, R., Blumlein, J., Bottcher, H., Bolognesi, S., Boonekamp, M., Bourilkov, D., Bracinik, J., Bruni, A., Bruni, G., Buckley, A., Bunyatyan, A., Buttar, C. M., Butterworth, J. M., Butterworth, S., Cacciari, M., Carli, T., Cerminara, G., Chekanov, S., Ciafaloni, M., Colferai, D., Collins, J., Cooper-Sarkar, A., Corcella, G., Corradi, M., Cox, B. E., Croft, R., Czyczula, Z., Dainese, A., Dasgupta, M., Davatz, G., Del Debbio, L., Delenda, Y., De Roeck, A., Diehl, M., Diglio, S., Dissertori, G., Dittmar, M., Ellis, J., Eskola, K. J., Eynck, T. O., Feltesse, J., Ferro, F., Field, R. D., Forshaw, J., Forte, S., Geiser, A., Gieseke, S., Glazov, A., Gleisberg, T., Golonka, P., Gotsman, E., Grindhammer, G., Grothe, M., Group, C., Groys, M., Guffanti, A., Gustafson, G., Gwenlan, C., Hoche, S., Hogg, C., Huston, J., Iacobucci, G., Ingelman, G., Jadach, S., Jung, H., Kalliopuska, J., Kapishin, M., Kersevan, B., Khoze, V., Klasen, M., Klein, M., Kniehl, B. A., Kolhinen, V. J., Kowalski, H., Kramer, G., Krauss, F., Kretzer, S., Kutak, K., Lamsa, J. W., Lonnblad, L., Lastovicka, T., Lastovicka-Medin, G., Laenen, E., Lagouri, Th., Latorre, J. I., Lavesson, N., Lendermann, V., Levin, E., Levy, A., Lipatov, A. V., Lublinsky, M., Lytkin, L., Maki, T., Magnea, L., Maltoni, F., Mangano, M., Maor, U., Mariotti, C., Marola, N., Martin, A. D., Meyer, A., Moch, S., Monk, J., Moraes, A., Morsch, A., Motyka, L., Naftali, E., Newman, P., Nikitenko, A., Oljemark, F., Orava, R., Ottela, M., Osterberg, K., Peters, K., Petrucci, F., Piccione, A., Pilkington, A., Piotrzkowski, K., Piskounova, O. I., Proskuryakov, A., Prygarin, A., Pumplin, J., Rabbertz, K., Ranieri, R., Ravindran, V., Reisert, B., Richter-Was, E., Rinaldi, L., Robbe, P., Rodrigues, E., Rojo, J., Ruiz, H., Ruspa, M., Ryskin, M. G., Vera, A. Sabio, Salam, G. P., Schalicke, A., Schatzel, S., Schorner-Sadenius, T., Schienbein, I., Schilling, F-P., Schumann, S., Seymour, M. H., Siegert, F., Sjostrand, T., Skrzypek, M., Smith, J., Smizanska, M., Spiesberger, H., Schrempp, F., Stasto, A., Stenzel, H., Stirling, W. J., Szczypka, P., Tapprogge, S., Targett-Adams, C., Tasevsky, M., Teubner, T., Thorne, R. S., Tonazzo, A., Tricoli, A., Tuning, N., Turnau, J., Uwer, U., Van Mechelen, P., Venugopalan, R., Verducci, M., Vermaseren, J. A. M., Vogt, A., Vogt, R., Ward, B. F. L., Was, Z., Watt, G., Waugh, B. M., Weiser, C., Whalley, M. R., Wing, M., Winter, J., Yost, S. A., Zanderighi, G., Zotov, N. P.
The HERA electron--proton collider has collected 100 pb$^{-1}$ of data since its start-up in 1992, and recently moved into a high-luminosity operation mode, with upgraded detectors, aiming to increase the total integrated luminosity per experiment to
Externí odkaz:
http://arxiv.org/abs/hep-ph/0601012
Autor:
Alekhin, S., Altarelli, G., Amapane, N., Andersen, J., Andreev, V., Arneodo, M., Avati, V., Baines, J., Ball, R. D., Banfi, A., Baranov, S. P., Bartels, J., Behnke, O., Bellan, R., Blumlein, J., Bottcher, H., Bolognesi, S., Boonekamp, M., Bourilkov, D., Bracinik, J., Bruni, A., Bruni, G., Buckley, A., Bunyatyan, A., Buttar, C. M., Butterworth, J. M., Butterworth, S., Cacciari, M., Carli, T., Cerminara, G., Chekanov, S., Ciafaloni, M., Colferai, D., Collins, J., Cooper-Sarkar, A., Corcella, G., Corradi, M., Cox, B. E., Croft, R., Czyczula, Z., Dainese, A., Dasgupta, M., Davatz, G., Del Debbio, L., Delenda, Y., De Roeck, A., Diehl, M., Diglio, S., Dissertori, G., Dittmar, M., Ellis, J., Eskola, K. J., Eynck, T. O., Feltesse, J., Ferro, F., Field, R. D., Forshaw, J., Forte, S., Geiser, A., Gieseke, S., Glazov, A., Gleisberg, T., Golonka, P., Gotsman, E., Grindhammer, G., Grothe, M., Group, C., Groys, M., Guffanti, A., Gustafson, G., Gwenlan, C., Hoche, S., Hogg, C., Huston, J., Iacobucci, G., Ingelman, G., Jadach, S., Jung, H., Kalliopuska, J., Kapishin, M., Kersevan, B., Khoze, V., Klasen, M., Klein, M., Kniehl, B. A., Kolhinen, V. J., Kowalski, H., Kramer, G., Krauss, F., Kretzer, S., Kutak, K., Lamsa, J. W., Lonnblad, L., Lastovicka, T., Lastovicka-Medin, G., Laenen, E., Lagouri, Th., Latorre, J. I., Lavesson, N., Lendermann, V., Levin, E., Levy, A., Lipatov, A. V., Lublinsky, M., Lytkin, L., Maki, T., Magnea, L., Maltoni, F., Mangano, M., Maor, U., Mariotti, C., Marola, N., Martin, A. D., Meyer, A., Moch, S., Monk, J., Moraes, A., Morsch, A., Motyka, L., Naftali, E., Newman, P., Nikitenko, A., Oljemark, F., Orava, R., Ottela, M., Osterberg, K., Peters, K., Petrucci, F., Piccione, A., Pilkington, A., Piotrzkowski, K., Piskounova, O. I., Proskuryakov, A., Prygarin, A., Pumplin, J., Rabbertz, K., Ranieri, R., Ravindran, V., Reisert, B., Richter-Was, E., Rinaldi, L., Robbe, P., Rodrigues, E., Rojo, J., Ruiz, H., Ruspa, M., Ryskin, M. G., Vera, A. Sabio, Salam, G. P., Schalicke, A., Schatzel, S., Schorner-Sadenius, T., Schienbein, I., Schilling, F-P., Schumann, S., Seymour, M. H., Siegert, F., Sjostrand, T., Skrzypek, M., Smith, J., Smizanska, M., Spiesberger, H., Schrempp, F., Stasto, A., Stenzel, H., Stirling, W. J., Szczypka, P., Tapprogge, S., Targett-Adams, C., Tasevsky, M., Teubner, T., Thorne, R. S., Tonazzo, A., Tricoli, A., Tuning, N., Turnau, J., Uwer, U., Van Mechelen, P., Venugopalan, R., Verducci, M., Vermaseren, J. A. M., Vogt, A., Vogt, R., Ward, B. F. L., Was, Z., Watt, G., Waugh, B. M., Weiser, C., Whalley, M. R., Wing, M., Winter, J., Yost, S. A., Zanderighi, G., Zotov, N. P.
The HERA electron--proton collider has collected 100 pb$^{-1}$ of data since its start-up in 1992, and recently moved into a high-luminosity operation mode, with upgraded detectors, aiming to increase the total integrated luminosity per experiment to
Externí odkaz:
http://arxiv.org/abs/hep-ph/0601013
Autor:
Dittmar, M., Forte, S., Glazov, A., Moch, S., Alekhin, S., Altarelli, G., Andersen, J., Ball, R. D., Blumlein, J., Bottcher, H., Carli, T., Ciafaloni, M., Colferai, D., Cooper-Sarkar, A., Corcella, G., Del Debbio, L., Dissertori, G., Feltesse, J., Guffanti, A., Gwenlan, C., Huston, J., Ingelman, G., Klein, M., Latorre, J. I., Lastovicka, T., Lastovicka-Medin, G., Magnea, L., Piccione, A., Pumplin, J., Ravindran, V., Reisert, B., Rojo, J., Vera, A. Sabio, Salam, G. P., Siegert, F., Stasto, A., Stenzel, H., Targett-Adams, C., Thorne, R. S., Tricoli, A., Vermaseren, J. A. M., Vogt, A.
We provide an assessment of the impact of parton distributions on the determination of LHC processes, and of the accuracy with which parton distributions (PDFs) can be extracted from data, in particular from current and forthcoming HERA experiments.
Externí odkaz:
http://arxiv.org/abs/hep-ph/0511119
Publikováno v:
Phys.Rev.D71:074020,2005
We analyze the QCD dynamics of diffractive deep inelastic scattering. The presence of a rapidity gap between the target and diffractive system requires that the target remnant emerges in a color singlet state, which we show is made possible by the so
Externí odkaz:
http://arxiv.org/abs/hep-ph/0409119
Publikováno v:
Eur.Phys.J.C33:s542-s544,2004
The topical subject of Higgs production in diffractive hard scattering events at the Tevatron and LHC is discussed. This has been proposed as a Higgs discovery channel with appealing experimental features. Predictions are obtained from the Soft Colou
Externí odkaz:
http://arxiv.org/abs/hep-ph/0311094
Publikováno v:
Phys.Rev. D67 (2003) 011301
Models for soft color interactions have been successful in describing and predicting diffractive hard scattering processes in ep collisions at DESY HERA and ppbar at the Fermilab Tevatron. Here we present new comparisons of the model to recent diffra
Externí odkaz:
http://arxiv.org/abs/hep-ph/0210408
We discuss the relative rates of different charmonium states and introduce an improved model for mapping the continuous ccbar mass spectrum on the physical charmonium resonances.
Comment: To appear in the proceedings of VIII International Worksh
Comment: To appear in the proceedings of VIII International Worksh
Externí odkaz:
http://arxiv.org/abs/hep-ph/0206256