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LHC Forward Physics

The goal of this report is to give a comprehensive overview of the rich field of forward physics, with a special attention to the topics that can be studied at the LHC. The report starts presenting a selection of the Monte Carlo simulation tools currently available, chapter 2, then enters the rich p...

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Detalles Bibliográficos
Autores principales: Akiba, K., Akbiyik, M., Albrow, M., Arneodo, M., Avati, V., Baechler, J., Villalobos Baillie, O., Bartalini, P., Bartels, J., Baur, S., Baus, C., Beaumont, W., Behrens, U., Berge, D., Berretti, M., Bossini, E., Boussarie, R., Brodsky, S., Broz, M., Bruschi, M., Bussey, P., Byczynski, W., Cabanillas Noris, J.C., Calvo Villar, E., Campbell, A., Caporale, F., Carvalho, W., Chachamis, G., Chapon, E., Cheshkov, C., Chwastowski, J., Ciesielski, R., Chinellato, D., Cisek, A., Coco, V., Collins, P., Contreras, J.G., Cox, B., de Jesus Damiao, D., Davis, P., Deile, M., D'Enterria, D., Druzhkin, D., Ducloué, B., Dumps, R., Dzhelyadin, R., Dziurdzia, P., Eliachevitch, M., Fassnacht, P., Ferro, F., Fichet, S., Figueiredo, D., Field, B., Finogeev, D., Fiore, R., Forshaw, J., Gago Medina, A., Gallinaro, M., Granik, A., von Gersdorff, G., Giani, S., Golec-Biernat, K., Goncalves, V.P., Göttlicher, P., Goulianos, K., Grosslord, J.-Y., Harland-Lang, L.A., Van Haevermaet, H., Hentschinski, M., Engel, R., Herrera Corral, G., Hollar, J., Huertas, L., Johnson, D., Katkov, I., Kepka, O., Khakzad, M., Kheyn, L., Khachatryan, V., Khoze, V.A., Klein, S., van Klundert, M., Krauss, F., Kurepin, A., Kurepin, N., Kutak, K., Kuznetsova, E., Latino, G., Lebiedowicz, P., Lenzi, B., Lewandowska, E., Liu, S., Luszczak, A., Luszczak, M., Madrigal, J.D., Mangano, M., Marcone, Z., Marquet, C., Martin, A.D., Martin, T., Martinez Hernandez, M.I., Martins, C., Mayer, C., Mc Nulty, R., Van Mechelen, P., Macula, R., Melo da Costa, E., Mertzimekis, T., Mesropian, C., Mieskolainen, M., Minafra, N., Monzon, I.L., Mundim, L., Murdaca, B., Murray, M., Niewiadowski, H., Nystrand, J., de Oliveira, E.G., Orava, R., Ostapchenko, S., Osterberg, K., Panagiotou, A., Papa, A., Pasechnik, R., Peitzmann, T., Perez Moreno, L.A., Pierog, T., Pinfold, J., Poghosyan, M., Pol, M.E., Prado, W., Popov, V., Rangel, M., Reshetin, A., Revol, J.-P., Rijssenbeek, M., Rodriguez, M., Roland, B., Ruspa, M., Ryskin, M., Sabio Vera, A., Safronov, G., Sako, T., Schindler, H., Salek, D., Safarik, K., Saimpert, M., Santoro, A., Schicker, R., Seger, J., Sen, S., Shabanov, A., Schafer, W., Gil Da Silveira, G., Skands, P., Soluk, R., van Spilbeeck, A., Staszewski, R., Stevenson, S., Stirling, W.J., Strikman, M., Szczurek, A., Szymanowski, L., Tapia Takaki, J.D., Tasevsky, M., Taesoo, K., Thomas, C., Torres, S.R., Tricomi, A., Trzebinski, M., Tsybychev, D., Turini, N., Ulrich, R., Usenko, E., Varela, J., Lo Vetere, M., Villatoro Tello, A., Vilela Pereira, A., Volyanskyy, D., Wallon, S., Wilkinson, G., Wohrmann, H., Zapp, K.C., Zoccarato, Y.
Lenguaje:eng
Publicado: 2016
Materias:
Acceso en línea:https://dx.doi.org/10.1088/0954-3899/43/11/110201
http://cds.cern.ch/record/2233405
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author Akiba, K.
Akbiyik, M.
Albrow, M.
Arneodo, M.
Avati, V.
Baechler, J.
Villalobos Baillie, O.
Bartalini, P.
Bartels, J.
Baur, S.
Baus, C.
Beaumont, W.
Behrens, U.
Berge, D.
Berretti, M.
Bossini, E.
Boussarie, R.
Brodsky, S.
Broz, M.
Bruschi, M.
Bussey, P.
Byczynski, W.
Cabanillas Noris, J.C.
Calvo Villar, E.
Campbell, A.
Caporale, F.
Carvalho, W.
Chachamis, G.
Chapon, E.
Cheshkov, C.
Chwastowski, J.
Ciesielski, R.
Chinellato, D.
Cisek, A.
Coco, V.
Collins, P.
Contreras, J.G.
Cox, B.
de Jesus Damiao, D.
Davis, P.
Deile, M.
D'Enterria, D.
Druzhkin, D.
Ducloué, B.
Dumps, R.
Dzhelyadin, R.
Dziurdzia, P.
Eliachevitch, M.
Fassnacht, P.
Ferro, F.
Fichet, S.
Figueiredo, D.
Field, B.
Finogeev, D.
Fiore, R.
Forshaw, J.
Gago Medina, A.
Gallinaro, M.
Granik, A.
von Gersdorff, G.
Giani, S.
Golec-Biernat, K.
Goncalves, V.P.
Göttlicher, P.
Goulianos, K.
Grosslord, J.-Y.
Harland-Lang, L.A.
Van Haevermaet, H.
Hentschinski, M.
Engel, R.
Herrera Corral, G.
Hollar, J.
Huertas, L.
Johnson, D.
Katkov, I.
Kepka, O.
Khakzad, M.
Kheyn, L.
Khachatryan, V.
Khoze, V.A.
Klein, S.
van Klundert, M.
Krauss, F.
Kurepin, A.
Kurepin, N.
Kutak, K.
Kuznetsova, E.
Latino, G.
Lebiedowicz, P.
Lenzi, B.
Lewandowska, E.
Liu, S.
Luszczak, A.
Luszczak, M.
Madrigal, J.D.
Mangano, M.
Marcone, Z.
Marquet, C.
Martin, A.D.
Martin, T.
Martinez Hernandez, M.I.
Martins, C.
Mayer, C.
Mc Nulty, R.
Van Mechelen, P.
Macula, R.
Melo da Costa, E.
Mertzimekis, T.
Mesropian, C.
Mieskolainen, M.
Minafra, N.
Monzon, I.L.
Mundim, L.
Murdaca, B.
Murray, M.
Niewiadowski, H.
Nystrand, J.
de Oliveira, E.G.
Orava, R.
Ostapchenko, S.
Osterberg, K.
Panagiotou, A.
Papa, A.
Pasechnik, R.
Peitzmann, T.
Perez Moreno, L.A.
Pierog, T.
Pinfold, J.
Poghosyan, M.
Pol, M.E.
Prado, W.
Popov, V.
Rangel, M.
Reshetin, A.
Revol, J.-P.
Rijssenbeek, M.
Rodriguez, M.
Roland, B.
Ruspa, M.
Ryskin, M.
Sabio Vera, A.
Safronov, G.
Sako, T.
Schindler, H.
Salek, D.
Safarik, K.
Saimpert, M.
Santoro, A.
Schicker, R.
Seger, J.
Sen, S.
Shabanov, A.
Schafer, W.
Gil Da Silveira, G.
Skands, P.
Soluk, R.
van Spilbeeck, A.
Staszewski, R.
Stevenson, S.
Stirling, W.J.
Strikman, M.
Szczurek, A.
Szymanowski, L.
Tapia Takaki, J.D.
Tasevsky, M.
Taesoo, K.
Thomas, C.
Torres, S.R.
Tricomi, A.
Trzebinski, M.
Tsybychev, D.
Turini, N.
Ulrich, R.
Usenko, E.
Varela, J.
Lo Vetere, M.
Villatoro Tello, A.
Vilela Pereira, A.
Volyanskyy, D.
Wallon, S.
Wilkinson, G.
Wohrmann, H.
Zapp, K.C.
Zoccarato, Y.
author_facet Akiba, K.
Akbiyik, M.
Albrow, M.
Arneodo, M.
Avati, V.
Baechler, J.
Villalobos Baillie, O.
Bartalini, P.
Bartels, J.
Baur, S.
Baus, C.
Beaumont, W.
Behrens, U.
Berge, D.
Berretti, M.
Bossini, E.
Boussarie, R.
Brodsky, S.
Broz, M.
Bruschi, M.
Bussey, P.
Byczynski, W.
Cabanillas Noris, J.C.
Calvo Villar, E.
Campbell, A.
Caporale, F.
Carvalho, W.
Chachamis, G.
Chapon, E.
Cheshkov, C.
Chwastowski, J.
Ciesielski, R.
Chinellato, D.
Cisek, A.
Coco, V.
Collins, P.
Contreras, J.G.
Cox, B.
de Jesus Damiao, D.
Davis, P.
Deile, M.
D'Enterria, D.
Druzhkin, D.
Ducloué, B.
Dumps, R.
Dzhelyadin, R.
Dziurdzia, P.
Eliachevitch, M.
Fassnacht, P.
Ferro, F.
Fichet, S.
Figueiredo, D.
Field, B.
Finogeev, D.
Fiore, R.
Forshaw, J.
Gago Medina, A.
Gallinaro, M.
Granik, A.
von Gersdorff, G.
Giani, S.
Golec-Biernat, K.
Goncalves, V.P.
Göttlicher, P.
Goulianos, K.
Grosslord, J.-Y.
Harland-Lang, L.A.
Van Haevermaet, H.
Hentschinski, M.
Engel, R.
Herrera Corral, G.
Hollar, J.
Huertas, L.
Johnson, D.
Katkov, I.
Kepka, O.
Khakzad, M.
Kheyn, L.
Khachatryan, V.
Khoze, V.A.
Klein, S.
van Klundert, M.
Krauss, F.
Kurepin, A.
Kurepin, N.
Kutak, K.
Kuznetsova, E.
Latino, G.
Lebiedowicz, P.
Lenzi, B.
Lewandowska, E.
Liu, S.
Luszczak, A.
Luszczak, M.
Madrigal, J.D.
Mangano, M.
Marcone, Z.
Marquet, C.
Martin, A.D.
Martin, T.
Martinez Hernandez, M.I.
Martins, C.
Mayer, C.
Mc Nulty, R.
Van Mechelen, P.
Macula, R.
Melo da Costa, E.
Mertzimekis, T.
Mesropian, C.
Mieskolainen, M.
Minafra, N.
Monzon, I.L.
Mundim, L.
Murdaca, B.
Murray, M.
Niewiadowski, H.
Nystrand, J.
de Oliveira, E.G.
Orava, R.
Ostapchenko, S.
Osterberg, K.
Panagiotou, A.
Papa, A.
Pasechnik, R.
Peitzmann, T.
Perez Moreno, L.A.
Pierog, T.
Pinfold, J.
Poghosyan, M.
Pol, M.E.
Prado, W.
Popov, V.
Rangel, M.
Reshetin, A.
Revol, J.-P.
Rijssenbeek, M.
Rodriguez, M.
Roland, B.
Ruspa, M.
Ryskin, M.
Sabio Vera, A.
Safronov, G.
Sako, T.
Schindler, H.
Salek, D.
Safarik, K.
Saimpert, M.
Santoro, A.
Schicker, R.
Seger, J.
Sen, S.
Shabanov, A.
Schafer, W.
Gil Da Silveira, G.
Skands, P.
Soluk, R.
van Spilbeeck, A.
Staszewski, R.
Stevenson, S.
Stirling, W.J.
Strikman, M.
Szczurek, A.
Szymanowski, L.
Tapia Takaki, J.D.
Tasevsky, M.
Taesoo, K.
Thomas, C.
Torres, S.R.
Tricomi, A.
Trzebinski, M.
Tsybychev, D.
Turini, N.
Ulrich, R.
Usenko, E.
Varela, J.
Lo Vetere, M.
Villatoro Tello, A.
Vilela Pereira, A.
Volyanskyy, D.
Wallon, S.
Wilkinson, G.
Wohrmann, H.
Zapp, K.C.
Zoccarato, Y.
author_sort Akiba, K.
collection CERN
description The goal of this report is to give a comprehensive overview of the rich field of forward physics, with a special attention to the topics that can be studied at the LHC. The report starts presenting a selection of the Monte Carlo simulation tools currently available, chapter 2, then enters the rich phenomenology of QCD at low, chapter 3, and high, chapter 4, momentum transfer, while the unique scattering conditions of central exclusive production are analyzed in chapter 5. The last two experimental topics, Cosmic Ray and Heavy Ion physics are presented in the chapter 6 and 7 respectively. Chapter 8 is dedicated to the BFKL dynamics, multiparton interactions, and saturation. The report ends with an overview of the forward detectors at LHC. Each chapter is correlated with a comprehensive bibliography, attempting to provide to the interested reader with a wide opportunity for further studies.
id cern-2233405
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2016
record_format invenio
spelling cern-22334052023-06-17T02:43:54Zdoi:10.1088/0954-3899/43/11/110201http://cds.cern.ch/record/2233405engAkiba, K.Akbiyik, M.Albrow, M.Arneodo, M.Avati, V.Baechler, J.Villalobos Baillie, O.Bartalini, P.Bartels, J.Baur, S.Baus, C.Beaumont, W.Behrens, U.Berge, D.Berretti, M.Bossini, E.Boussarie, R.Brodsky, S.Broz, M.Bruschi, M.Bussey, P.Byczynski, W.Cabanillas Noris, J.C.Calvo Villar, E.Campbell, A.Caporale, F.Carvalho, W.Chachamis, G.Chapon, E.Cheshkov, C.Chwastowski, J.Ciesielski, R.Chinellato, D.Cisek, A.Coco, V.Collins, P.Contreras, J.G.Cox, B.de Jesus Damiao, D.Davis, P.Deile, M.D'Enterria, D.Druzhkin, D.Ducloué, B.Dumps, R.Dzhelyadin, R.Dziurdzia, P.Eliachevitch, M.Fassnacht, P.Ferro, F.Fichet, S.Figueiredo, D.Field, B.Finogeev, D.Fiore, R.Forshaw, J.Gago Medina, A.Gallinaro, M.Granik, A.von Gersdorff, G.Giani, S.Golec-Biernat, K.Goncalves, V.P.Göttlicher, P.Goulianos, K.Grosslord, J.-Y.Harland-Lang, L.A.Van Haevermaet, H.Hentschinski, M.Engel, R.Herrera Corral, G.Hollar, J.Huertas, L.Johnson, D.Katkov, I.Kepka, O.Khakzad, M.Kheyn, L.Khachatryan, V.Khoze, V.A.Klein, S.van Klundert, M.Krauss, F.Kurepin, A.Kurepin, N.Kutak, K.Kuznetsova, E.Latino, G.Lebiedowicz, P.Lenzi, B.Lewandowska, E.Liu, S.Luszczak, A.Luszczak, M.Madrigal, J.D.Mangano, M.Marcone, Z.Marquet, C.Martin, A.D.Martin, T.Martinez Hernandez, M.I.Martins, C.Mayer, C.Mc Nulty, R.Van Mechelen, P.Macula, R.Melo da Costa, E.Mertzimekis, T.Mesropian, C.Mieskolainen, M.Minafra, N.Monzon, I.L.Mundim, L.Murdaca, B.Murray, M.Niewiadowski, H.Nystrand, J.de Oliveira, E.G.Orava, R.Ostapchenko, S.Osterberg, K.Panagiotou, A.Papa, A.Pasechnik, R.Peitzmann, T.Perez Moreno, L.A.Pierog, T.Pinfold, J.Poghosyan, M.Pol, M.E.Prado, W.Popov, V.Rangel, M.Reshetin, A.Revol, J.-P.Rijssenbeek, M.Rodriguez, M.Roland, B.Ruspa, M.Ryskin, M.Sabio Vera, A.Safronov, G.Sako, T.Schindler, H.Salek, D.Safarik, K.Saimpert, M.Santoro, A.Schicker, R.Seger, J.Sen, S.Shabanov, A.Schafer, W.Gil Da Silveira, G.Skands, P.Soluk, R.van Spilbeeck, A.Staszewski, R.Stevenson, S.Stirling, W.J.Strikman, M.Szczurek, A.Szymanowski, L.Tapia Takaki, J.D.Tasevsky, M.Taesoo, K.Thomas, C.Torres, S.R.Tricomi, A.Trzebinski, M.Tsybychev, D.Turini, N.Ulrich, R.Usenko, E.Varela, J.Lo Vetere, M.Villatoro Tello, A.Vilela Pereira, A.Volyanskyy, D.Wallon, S.Wilkinson, G.Wohrmann, H.Zapp, K.C.Zoccarato, Y.LHC Forward PhysicsParticle Physics - PhenomenologyThe goal of this report is to give a comprehensive overview of the rich field of forward physics, with a special attention to the topics that can be studied at the LHC. The report starts presenting a selection of the Monte Carlo simulation tools currently available, chapter 2, then enters the rich phenomenology of QCD at low, chapter 3, and high, chapter 4, momentum transfer, while the unique scattering conditions of central exclusive production are analyzed in chapter 5. The last two experimental topics, Cosmic Ray and Heavy Ion physics are presented in the chapter 6 and 7 respectively. Chapter 8 is dedicated to the BFKL dynamics, multiparton interactions, and saturation. The report ends with an overview of the forward detectors at LHC. Each chapter is correlated with a comprehensive bibliography, attempting to provide to the interested reader with a wide opportunity for further studies.The goal of this report is to give a comprehensive overview of the rich field of forward physics, with a special attention to the topics that can be studied at the LHC. The report starts presenting a selection of the Monte Carlo simulation tools currently available, chapter 2, then enters the rich phenomenology of QCD at low, chapter 3, and high, chapter 4, momentum transfer, while the unique scattering conditions of central exclusive production are analyzed in chapter 5. The last two experimental topics, Cosmic Ray and Heavy Ion physics are presented in the chapter 6 and 7 respectively. Chapter 8 is dedicated to the BFKL dynamics, multiparton interactions, and saturation. The report ends with an overview of the forward detectors at LHC. Each chapter is correlated with a comprehensive bibliography, attempting to provide to the interested reader with a wide opportunity for further studies.arXiv:1611.05079CERN-PH-LPCC-2015-001SLAC-PUB-16364DESY-15-167FERMILAB-PUB-16-572-PPDCERN-PH-LPCC-2015-001SLAC-PUB-16364DESY 15-167oai:cds.cern.ch:22334052016-11-15
spellingShingle Particle Physics - Phenomenology
Akiba, K.
Akbiyik, M.
Albrow, M.
Arneodo, M.
Avati, V.
Baechler, J.
Villalobos Baillie, O.
Bartalini, P.
Bartels, J.
Baur, S.
Baus, C.
Beaumont, W.
Behrens, U.
Berge, D.
Berretti, M.
Bossini, E.
Boussarie, R.
Brodsky, S.
Broz, M.
Bruschi, M.
Bussey, P.
Byczynski, W.
Cabanillas Noris, J.C.
Calvo Villar, E.
Campbell, A.
Caporale, F.
Carvalho, W.
Chachamis, G.
Chapon, E.
Cheshkov, C.
Chwastowski, J.
Ciesielski, R.
Chinellato, D.
Cisek, A.
Coco, V.
Collins, P.
Contreras, J.G.
Cox, B.
de Jesus Damiao, D.
Davis, P.
Deile, M.
D'Enterria, D.
Druzhkin, D.
Ducloué, B.
Dumps, R.
Dzhelyadin, R.
Dziurdzia, P.
Eliachevitch, M.
Fassnacht, P.
Ferro, F.
Fichet, S.
Figueiredo, D.
Field, B.
Finogeev, D.
Fiore, R.
Forshaw, J.
Gago Medina, A.
Gallinaro, M.
Granik, A.
von Gersdorff, G.
Giani, S.
Golec-Biernat, K.
Goncalves, V.P.
Göttlicher, P.
Goulianos, K.
Grosslord, J.-Y.
Harland-Lang, L.A.
Van Haevermaet, H.
Hentschinski, M.
Engel, R.
Herrera Corral, G.
Hollar, J.
Huertas, L.
Johnson, D.
Katkov, I.
Kepka, O.
Khakzad, M.
Kheyn, L.
Khachatryan, V.
Khoze, V.A.
Klein, S.
van Klundert, M.
Krauss, F.
Kurepin, A.
Kurepin, N.
Kutak, K.
Kuznetsova, E.
Latino, G.
Lebiedowicz, P.
Lenzi, B.
Lewandowska, E.
Liu, S.
Luszczak, A.
Luszczak, M.
Madrigal, J.D.
Mangano, M.
Marcone, Z.
Marquet, C.
Martin, A.D.
Martin, T.
Martinez Hernandez, M.I.
Martins, C.
Mayer, C.
Mc Nulty, R.
Van Mechelen, P.
Macula, R.
Melo da Costa, E.
Mertzimekis, T.
Mesropian, C.
Mieskolainen, M.
Minafra, N.
Monzon, I.L.
Mundim, L.
Murdaca, B.
Murray, M.
Niewiadowski, H.
Nystrand, J.
de Oliveira, E.G.
Orava, R.
Ostapchenko, S.
Osterberg, K.
Panagiotou, A.
Papa, A.
Pasechnik, R.
Peitzmann, T.
Perez Moreno, L.A.
Pierog, T.
Pinfold, J.
Poghosyan, M.
Pol, M.E.
Prado, W.
Popov, V.
Rangel, M.
Reshetin, A.
Revol, J.-P.
Rijssenbeek, M.
Rodriguez, M.
Roland, B.
Ruspa, M.
Ryskin, M.
Sabio Vera, A.
Safronov, G.
Sako, T.
Schindler, H.
Salek, D.
Safarik, K.
Saimpert, M.
Santoro, A.
Schicker, R.
Seger, J.
Sen, S.
Shabanov, A.
Schafer, W.
Gil Da Silveira, G.
Skands, P.
Soluk, R.
van Spilbeeck, A.
Staszewski, R.
Stevenson, S.
Stirling, W.J.
Strikman, M.
Szczurek, A.
Szymanowski, L.
Tapia Takaki, J.D.
Tasevsky, M.
Taesoo, K.
Thomas, C.
Torres, S.R.
Tricomi, A.
Trzebinski, M.
Tsybychev, D.
Turini, N.
Ulrich, R.
Usenko, E.
Varela, J.
Lo Vetere, M.
Villatoro Tello, A.
Vilela Pereira, A.
Volyanskyy, D.
Wallon, S.
Wilkinson, G.
Wohrmann, H.
Zapp, K.C.
Zoccarato, Y.
LHC Forward Physics
title LHC Forward Physics
title_full LHC Forward Physics
title_fullStr LHC Forward Physics
title_full_unstemmed LHC Forward Physics
title_short LHC Forward Physics
title_sort lhc forward physics
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1088/0954-3899/43/11/110201
http://cds.cern.ch/record/2233405
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