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Report from Working Group 5: Future physics opportunities for high-density QCD at the LHC with heavy-ion and proton beams

The future opportunities for high-density QCD with ion and proton beams at the LHC are presented. Four major scientific goals are identified: the characterisation of the macroscopic long wavelength Quark-Gluon Plasma (QGP) properties with unprecedented precision, the investigation of the microscopic...

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Autores principales: Citron, Z., Dainese, A., Grosse-Oetringhaus, J.F., Jowett, J.M., Lee, Y.-J., Wiedemann, U.A., Winn, M., Andronic, A., Bellini, F., Bruna, E., Chapon, E., Dembinski, H., d'Enterria, D., Grabowska-Bold, I., Innocenti, G.M., Loizides, C., Mohapatra, S., Salgado, C.A., Verweij, M., Weber, M., Aichelin, J., Angerami, A., Apolinario, L., Arleo, F., Armesto, N., Arnaldi, R., Arslandok, M., Azzi, P., Bailhache, R., Bass, S.A., Bedda, C., Behera, N.K., Bellwied, R., Beraudo, A., Bi, R., Bierlich, C., Blum, K., Borissov, A., Braun-Munzinger, P., Bruce, R., Bruno, G.E., Bufalino, S., Castillo Castellanos, J., Chatterjee, R., Chen, Y., Chen, Z., Cheshkov, C., Chujo, T., Conesa del Valle, Z., Contreras Nuno, J.G., Cunqueiro Mendez, L., Dahms, T., Dang, N.P., De la Torre, H., Dobrin, A.F., Doenigus, B., Van Doremalen, L., Du, X., Dubla, A., Dumancic, M., Dyndal, M., Fabbietti, L., Ferreiro, E.G., Fionda, F., Fleuret, F., Floerchinger, S., Giacalone, G., Giammanco, A., Gossiaux, P.B., Graziani, G., Greco, V., Grelli, A., Grosa, F., Guilbaud, M., Gunji, T., Guzey, V., Hadjidakis, C., Hassani, S., He, M., Helenius, I., Huo, P., Jacobs, P.M., Janus, P., Jebramcik, M.A., Jia, J., Kalweit, A.P., Kim, H., Klasen, M., Klein, S.R., Klusek-Gawenda, M., Kremer, J., Krintiras, G.K., Krizek, F., Kryshen, E., Kurkela, A., Kusina, A., Lansberg, J.-P., Lea, R., van Leeuwen, M., Li, W., Margutti, J., Marin, A., Marquet, C., Martin Blanco, J., Massacrier, L., Mastroserio, A., Maurice, E., Mayer, C., Mcginn, C., Milhano, G., Milov, A., Minissale, V., Mironov, C., Mischke, A., Mohammadi, N., Mulders, M., Murray, M., Narain, M., Di Nezza, P., Nisati, A., Noronha-Hostler, J., Ohlson, A., Okorokov, V., Olness, F., Paakkinen, P., Pappalardo, L., Park, J., Paukkunen, H., Peng, C.C., Pereira Da Costa, H., Perepelitsa, D.V., Peresunko, D., Peters, M., Pettersson, N.E., Piano, S., Pierog, T., Pires, J., Płoskoń, M., Plumari, S., Prino, F., Puccio, M., Rapp, R., Redlich, K., Reygers, K., Ristea, C.L., Robbe, P., Rossi, A., Rustamov, A., Rybar, M., Schaumann, M., Schenke, B., Schienbein, I., Schoeffel, L., Selyuzhenkov, I., Sickles, A.M., Sievert, M., Silva, P., Song, T., Spousta, M., Stachel, J., Steinberg, P., Stocco, D., Strickland, M., Strikman, M., Sun, J., Tapia Takaki, D., Tatar, K., Terrevoli, C., Timmins, A., Trogolo, S., Trzeciak, B., Trzupek, A., Ulrich, R., Uras, A., Venugopalan, R., Vitev, I., Vujanovic, G., Wang, J., Wang, T.W., Xiao, R., Xu, Y., Zampolli, C., Zanoli, H., Zhou, M., Zhou, Y.
Lenguaje:eng
Publicado: 2018
Materias:
Acceso en línea:https://dx.doi.org/10.23731/CYRM-2019-007.1159
http://cds.cern.ch/record/2650176
_version_ 1780960784830955520
author Citron, Z.
Dainese, A.
Grosse-Oetringhaus, J.F.
Jowett, J.M.
Lee, Y.-J.
Wiedemann, U.A.
Winn, M.
Andronic, A.
Bellini, F.
Bruna, E.
Chapon, E.
Dembinski, H.
d'Enterria, D.
Grabowska-Bold, I.
Innocenti, G.M.
Loizides, C.
Mohapatra, S.
Salgado, C.A.
Verweij, M.
Weber, M.
Aichelin, J.
Angerami, A.
Apolinario, L.
Arleo, F.
Armesto, N.
Arnaldi, R.
Arslandok, M.
Azzi, P.
Bailhache, R.
Bass, S.A.
Bedda, C.
Behera, N.K.
Bellwied, R.
Beraudo, A.
Bi, R.
Bierlich, C.
Blum, K.
Borissov, A.
Braun-Munzinger, P.
Bruce, R.
Bruno, G.E.
Bufalino, S.
Castillo Castellanos, J.
Chatterjee, R.
Chen, Y.
Chen, Z.
Cheshkov, C.
Chujo, T.
Conesa del Valle, Z.
Contreras Nuno, J.G.
Cunqueiro Mendez, L.
Dahms, T.
Dang, N.P.
De la Torre, H.
Dobrin, A.F.
Doenigus, B.
Van Doremalen, L.
Du, X.
Dubla, A.
Dumancic, M.
Dyndal, M.
Fabbietti, L.
Ferreiro, E.G.
Fionda, F.
Fleuret, F.
Floerchinger, S.
Giacalone, G.
Giammanco, A.
Gossiaux, P.B.
Graziani, G.
Greco, V.
Grelli, A.
Grosa, F.
Guilbaud, M.
Gunji, T.
Guzey, V.
Hadjidakis, C.
Hassani, S.
He, M.
Helenius, I.
Huo, P.
Jacobs, P.M.
Janus, P.
Jebramcik, M.A.
Jia, J.
Kalweit, A.P.
Kim, H.
Klasen, M.
Klein, S.R.
Klusek-Gawenda, M.
Kremer, J.
Krintiras, G.K.
Krizek, F.
Kryshen, E.
Kurkela, A.
Kusina, A.
Lansberg, J.-P.
Lea, R.
van Leeuwen, M.
Li, W.
Margutti, J.
Marin, A.
Marquet, C.
Martin Blanco, J.
Massacrier, L.
Mastroserio, A.
Maurice, E.
Mayer, C.
Mcginn, C.
Milhano, G.
Milov, A.
Minissale, V.
Mironov, C.
Mischke, A.
Mohammadi, N.
Mulders, M.
Murray, M.
Narain, M.
Di Nezza, P.
Nisati, A.
Noronha-Hostler, J.
Ohlson, A.
Okorokov, V.
Olness, F.
Paakkinen, P.
Pappalardo, L.
Park, J.
Paukkunen, H.
Peng, C.C.
Pereira Da Costa, H.
Perepelitsa, D.V.
Peresunko, D.
Peters, M.
Pettersson, N.E.
Piano, S.
Pierog, T.
Pires, J.
Płoskoń, M.
Plumari, S.
Prino, F.
Puccio, M.
Rapp, R.
Redlich, K.
Reygers, K.
Ristea, C.L.
Robbe, P.
Rossi, A.
Rustamov, A.
Rybar, M.
Schaumann, M.
Schenke, B.
Schienbein, I.
Schoeffel, L.
Selyuzhenkov, I.
Sickles, A.M.
Sievert, M.
Silva, P.
Song, T.
Spousta, M.
Stachel, J.
Steinberg, P.
Stocco, D.
Strickland, M.
Strikman, M.
Sun, J.
Tapia Takaki, D.
Tatar, K.
Terrevoli, C.
Timmins, A.
Trogolo, S.
Trzeciak, B.
Trzupek, A.
Ulrich, R.
Uras, A.
Venugopalan, R.
Vitev, I.
Vujanovic, G.
Wang, J.
Wang, T.W.
Xiao, R.
Xu, Y.
Zampolli, C.
Zanoli, H.
Zhou, M.
Zhou, Y.
author_facet Citron, Z.
Dainese, A.
Grosse-Oetringhaus, J.F.
Jowett, J.M.
Lee, Y.-J.
Wiedemann, U.A.
Winn, M.
Andronic, A.
Bellini, F.
Bruna, E.
Chapon, E.
Dembinski, H.
d'Enterria, D.
Grabowska-Bold, I.
Innocenti, G.M.
Loizides, C.
Mohapatra, S.
Salgado, C.A.
Verweij, M.
Weber, M.
Aichelin, J.
Angerami, A.
Apolinario, L.
Arleo, F.
Armesto, N.
Arnaldi, R.
Arslandok, M.
Azzi, P.
Bailhache, R.
Bass, S.A.
Bedda, C.
Behera, N.K.
Bellwied, R.
Beraudo, A.
Bi, R.
Bierlich, C.
Blum, K.
Borissov, A.
Braun-Munzinger, P.
Bruce, R.
Bruno, G.E.
Bufalino, S.
Castillo Castellanos, J.
Chatterjee, R.
Chen, Y.
Chen, Z.
Cheshkov, C.
Chujo, T.
Conesa del Valle, Z.
Contreras Nuno, J.G.
Cunqueiro Mendez, L.
Dahms, T.
Dang, N.P.
De la Torre, H.
Dobrin, A.F.
Doenigus, B.
Van Doremalen, L.
Du, X.
Dubla, A.
Dumancic, M.
Dyndal, M.
Fabbietti, L.
Ferreiro, E.G.
Fionda, F.
Fleuret, F.
Floerchinger, S.
Giacalone, G.
Giammanco, A.
Gossiaux, P.B.
Graziani, G.
Greco, V.
Grelli, A.
Grosa, F.
Guilbaud, M.
Gunji, T.
Guzey, V.
Hadjidakis, C.
Hassani, S.
He, M.
Helenius, I.
Huo, P.
Jacobs, P.M.
Janus, P.
Jebramcik, M.A.
Jia, J.
Kalweit, A.P.
Kim, H.
Klasen, M.
Klein, S.R.
Klusek-Gawenda, M.
Kremer, J.
Krintiras, G.K.
Krizek, F.
Kryshen, E.
Kurkela, A.
Kusina, A.
Lansberg, J.-P.
Lea, R.
van Leeuwen, M.
Li, W.
Margutti, J.
Marin, A.
Marquet, C.
Martin Blanco, J.
Massacrier, L.
Mastroserio, A.
Maurice, E.
Mayer, C.
Mcginn, C.
Milhano, G.
Milov, A.
Minissale, V.
Mironov, C.
Mischke, A.
Mohammadi, N.
Mulders, M.
Murray, M.
Narain, M.
Di Nezza, P.
Nisati, A.
Noronha-Hostler, J.
Ohlson, A.
Okorokov, V.
Olness, F.
Paakkinen, P.
Pappalardo, L.
Park, J.
Paukkunen, H.
Peng, C.C.
Pereira Da Costa, H.
Perepelitsa, D.V.
Peresunko, D.
Peters, M.
Pettersson, N.E.
Piano, S.
Pierog, T.
Pires, J.
Płoskoń, M.
Plumari, S.
Prino, F.
Puccio, M.
Rapp, R.
Redlich, K.
Reygers, K.
Ristea, C.L.
Robbe, P.
Rossi, A.
Rustamov, A.
Rybar, M.
Schaumann, M.
Schenke, B.
Schienbein, I.
Schoeffel, L.
Selyuzhenkov, I.
Sickles, A.M.
Sievert, M.
Silva, P.
Song, T.
Spousta, M.
Stachel, J.
Steinberg, P.
Stocco, D.
Strickland, M.
Strikman, M.
Sun, J.
Tapia Takaki, D.
Tatar, K.
Terrevoli, C.
Timmins, A.
Trogolo, S.
Trzeciak, B.
Trzupek, A.
Ulrich, R.
Uras, A.
Venugopalan, R.
Vitev, I.
Vujanovic, G.
Wang, J.
Wang, T.W.
Xiao, R.
Xu, Y.
Zampolli, C.
Zanoli, H.
Zhou, M.
Zhou, Y.
author_sort Citron, Z.
collection CERN
description The future opportunities for high-density QCD with ion and proton beams at the LHC are presented. Four major scientific goals are identified: the characterisation of the macroscopic long wavelength Quark-Gluon Plasma (QGP) properties with unprecedented precision, the investigation of the microscopic parton dynamics underlying QGP properties, the development of a unified picture of particle production and QCD dynamics from small (pp) to large (nucleus–nucleus) systems, the exploration of parton densities in nuclei in a broad (x, Q2) kinematic range and the search for the possible onset of parton saturation. In order to address these scientific goals, high-luminosity Pb–Pb and p–Pb programmes are considered as priorities for Runs 3 and 4, complemented by high-multiplicity studies in pp collisions and a short run with Oxygen ions. High-luminosity runs with intermediate-mass nuclei, for example Ar or Kr, are considered as an appealing case for extending the heavy-ion programme at the LHC beyond Run 4. The potential of the High-Energy LHC to probe QCD matter with newly-available observables and phenomena is investigated.
id cern-2650176
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2018
record_format invenio
spelling cern-26501762023-06-29T04:21:41Zdoi:10.23731/CYRM-2019-007.1159http://cds.cern.ch/record/2650176engCitron, Z.Dainese, A.Grosse-Oetringhaus, J.F.Jowett, J.M.Lee, Y.-J.Wiedemann, U.A.Winn, M.Andronic, A.Bellini, F.Bruna, E.Chapon, E.Dembinski, H.d'Enterria, D.Grabowska-Bold, I.Innocenti, G.M.Loizides, C.Mohapatra, S.Salgado, C.A.Verweij, M.Weber, M.Aichelin, J.Angerami, A.Apolinario, L.Arleo, F.Armesto, N.Arnaldi, R.Arslandok, M.Azzi, P.Bailhache, R.Bass, S.A.Bedda, C.Behera, N.K.Bellwied, R.Beraudo, A.Bi, R.Bierlich, C.Blum, K.Borissov, A.Braun-Munzinger, P.Bruce, R.Bruno, G.E.Bufalino, S.Castillo Castellanos, J.Chatterjee, R.Chen, Y.Chen, Z.Cheshkov, C.Chujo, T.Conesa del Valle, Z.Contreras Nuno, J.G.Cunqueiro Mendez, L.Dahms, T.Dang, N.P.De la Torre, H.Dobrin, A.F.Doenigus, B.Van Doremalen, L.Du, X.Dubla, A.Dumancic, M.Dyndal, M.Fabbietti, L.Ferreiro, E.G.Fionda, F.Fleuret, F.Floerchinger, S.Giacalone, G.Giammanco, A.Gossiaux, P.B.Graziani, G.Greco, V.Grelli, A.Grosa, F.Guilbaud, M.Gunji, T.Guzey, V.Hadjidakis, C.Hassani, S.He, M.Helenius, I.Huo, P.Jacobs, P.M.Janus, P.Jebramcik, M.A.Jia, J.Kalweit, A.P.Kim, H.Klasen, M.Klein, S.R.Klusek-Gawenda, M.Kremer, J.Krintiras, G.K.Krizek, F.Kryshen, E.Kurkela, A.Kusina, A.Lansberg, J.-P.Lea, R.van Leeuwen, M.Li, W.Margutti, J.Marin, A.Marquet, C.Martin Blanco, J.Massacrier, L.Mastroserio, A.Maurice, E.Mayer, C.Mcginn, C.Milhano, G.Milov, A.Minissale, V.Mironov, C.Mischke, A.Mohammadi, N.Mulders, M.Murray, M.Narain, M.Di Nezza, P.Nisati, A.Noronha-Hostler, J.Ohlson, A.Okorokov, V.Olness, F.Paakkinen, P.Pappalardo, L.Park, J.Paukkunen, H.Peng, C.C.Pereira Da Costa, H.Perepelitsa, D.V.Peresunko, D.Peters, M.Pettersson, N.E.Piano, S.Pierog, T.Pires, J.Płoskoń, M.Plumari, S.Prino, F.Puccio, M.Rapp, R.Redlich, K.Reygers, K.Ristea, C.L.Robbe, P.Rossi, A.Rustamov, A.Rybar, M.Schaumann, M.Schenke, B.Schienbein, I.Schoeffel, L.Selyuzhenkov, I.Sickles, A.M.Sievert, M.Silva, P.Song, T.Spousta, M.Stachel, J.Steinberg, P.Stocco, D.Strickland, M.Strikman, M.Sun, J.Tapia Takaki, D.Tatar, K.Terrevoli, C.Timmins, A.Trogolo, S.Trzeciak, B.Trzupek, A.Ulrich, R.Uras, A.Venugopalan, R.Vitev, I.Vujanovic, G.Wang, J.Wang, T.W.Xiao, R.Xu, Y.Zampolli, C.Zanoli, H.Zhou, M.Zhou, Y.Report from Working Group 5: Future physics opportunities for high-density QCD at the LHC with heavy-ion and proton beamsParticle Physics - Phenomenologynucl-thNuclear Physics - Theorynucl-exNuclear Physics - Experimenthep-exParticle Physics - Experimenthep-phThe future opportunities for high-density QCD with ion and proton beams at the LHC are presented. Four major scientific goals are identified: the characterisation of the macroscopic long wavelength Quark-Gluon Plasma (QGP) properties with unprecedented precision, the investigation of the microscopic parton dynamics underlying QGP properties, the development of a unified picture of particle production and QCD dynamics from small (pp) to large (nucleus–nucleus) systems, the exploration of parton densities in nuclei in a broad (x, Q2) kinematic range and the search for the possible onset of parton saturation. In order to address these scientific goals, high-luminosity Pb–Pb and p–Pb programmes are considered as priorities for Runs 3 and 4, complemented by high-multiplicity studies in pp collisions and a short run with Oxygen ions. High-luminosity runs with intermediate-mass nuclei, for example Ar or Kr, are considered as an appealing case for extending the heavy-ion programme at the LHC beyond Run 4. The potential of the High-Energy LHC to probe QCD matter with newly-available observables and phenomena is investigated.The future opportunities for high-density QCD studies with ion and proton beams at the LHC are presented. Four major scientific goals are identified: the characterisation of the macroscopic long wavelength Quark-Gluon Plasma (QGP) properties with unprecedented precision, the investigation of the microscopic parton dynamics underlying QGP properties, the development of a unified picture of particle production and QCD dynamics from small (pp) to large (nucleus--nucleus) systems, the exploration of parton densities in nuclei in a broad ($x$, $Q^2$) kinematic range and the search for the possible onset of parton saturation. In order to address these scientific goals, high-luminosity Pb-Pb and p-Pb programmes are considered as priorities for Runs 3 and 4, complemented by high-multiplicity studies in pp collisions and a short run with oxygen ions. High-luminosity runs with intermediate-mass nuclei, for example Ar or Kr, are considered as an appealing case for extending the heavy-ion programme at the LHC beyond Run 4. The potential of the High-Energy LHC to probe QCD matter with newly-available observables, at twice larger center-of-mass energies than the LHC, is investigated.arXiv:1812.06772CERN-LPCC-2018-07oai:cds.cern.ch:26501762018
spellingShingle Particle Physics - Phenomenology
nucl-th
Nuclear Physics - Theory
nucl-ex
Nuclear Physics - Experiment
hep-ex
Particle Physics - Experiment
hep-ph
Citron, Z.
Dainese, A.
Grosse-Oetringhaus, J.F.
Jowett, J.M.
Lee, Y.-J.
Wiedemann, U.A.
Winn, M.
Andronic, A.
Bellini, F.
Bruna, E.
Chapon, E.
Dembinski, H.
d'Enterria, D.
Grabowska-Bold, I.
Innocenti, G.M.
Loizides, C.
Mohapatra, S.
Salgado, C.A.
Verweij, M.
Weber, M.
Aichelin, J.
Angerami, A.
Apolinario, L.
Arleo, F.
Armesto, N.
Arnaldi, R.
Arslandok, M.
Azzi, P.
Bailhache, R.
Bass, S.A.
Bedda, C.
Behera, N.K.
Bellwied, R.
Beraudo, A.
Bi, R.
Bierlich, C.
Blum, K.
Borissov, A.
Braun-Munzinger, P.
Bruce, R.
Bruno, G.E.
Bufalino, S.
Castillo Castellanos, J.
Chatterjee, R.
Chen, Y.
Chen, Z.
Cheshkov, C.
Chujo, T.
Conesa del Valle, Z.
Contreras Nuno, J.G.
Cunqueiro Mendez, L.
Dahms, T.
Dang, N.P.
De la Torre, H.
Dobrin, A.F.
Doenigus, B.
Van Doremalen, L.
Du, X.
Dubla, A.
Dumancic, M.
Dyndal, M.
Fabbietti, L.
Ferreiro, E.G.
Fionda, F.
Fleuret, F.
Floerchinger, S.
Giacalone, G.
Giammanco, A.
Gossiaux, P.B.
Graziani, G.
Greco, V.
Grelli, A.
Grosa, F.
Guilbaud, M.
Gunji, T.
Guzey, V.
Hadjidakis, C.
Hassani, S.
He, M.
Helenius, I.
Huo, P.
Jacobs, P.M.
Janus, P.
Jebramcik, M.A.
Jia, J.
Kalweit, A.P.
Kim, H.
Klasen, M.
Klein, S.R.
Klusek-Gawenda, M.
Kremer, J.
Krintiras, G.K.
Krizek, F.
Kryshen, E.
Kurkela, A.
Kusina, A.
Lansberg, J.-P.
Lea, R.
van Leeuwen, M.
Li, W.
Margutti, J.
Marin, A.
Marquet, C.
Martin Blanco, J.
Massacrier, L.
Mastroserio, A.
Maurice, E.
Mayer, C.
Mcginn, C.
Milhano, G.
Milov, A.
Minissale, V.
Mironov, C.
Mischke, A.
Mohammadi, N.
Mulders, M.
Murray, M.
Narain, M.
Di Nezza, P.
Nisati, A.
Noronha-Hostler, J.
Ohlson, A.
Okorokov, V.
Olness, F.
Paakkinen, P.
Pappalardo, L.
Park, J.
Paukkunen, H.
Peng, C.C.
Pereira Da Costa, H.
Perepelitsa, D.V.
Peresunko, D.
Peters, M.
Pettersson, N.E.
Piano, S.
Pierog, T.
Pires, J.
Płoskoń, M.
Plumari, S.
Prino, F.
Puccio, M.
Rapp, R.
Redlich, K.
Reygers, K.
Ristea, C.L.
Robbe, P.
Rossi, A.
Rustamov, A.
Rybar, M.
Schaumann, M.
Schenke, B.
Schienbein, I.
Schoeffel, L.
Selyuzhenkov, I.
Sickles, A.M.
Sievert, M.
Silva, P.
Song, T.
Spousta, M.
Stachel, J.
Steinberg, P.
Stocco, D.
Strickland, M.
Strikman, M.
Sun, J.
Tapia Takaki, D.
Tatar, K.
Terrevoli, C.
Timmins, A.
Trogolo, S.
Trzeciak, B.
Trzupek, A.
Ulrich, R.
Uras, A.
Venugopalan, R.
Vitev, I.
Vujanovic, G.
Wang, J.
Wang, T.W.
Xiao, R.
Xu, Y.
Zampolli, C.
Zanoli, H.
Zhou, M.
Zhou, Y.
Report from Working Group 5: Future physics opportunities for high-density QCD at the LHC with heavy-ion and proton beams
title Report from Working Group 5: Future physics opportunities for high-density QCD at the LHC with heavy-ion and proton beams
title_full Report from Working Group 5: Future physics opportunities for high-density QCD at the LHC with heavy-ion and proton beams
title_fullStr Report from Working Group 5: Future physics opportunities for high-density QCD at the LHC with heavy-ion and proton beams
title_full_unstemmed Report from Working Group 5: Future physics opportunities for high-density QCD at the LHC with heavy-ion and proton beams
title_short Report from Working Group 5: Future physics opportunities for high-density QCD at the LHC with heavy-ion and proton beams
title_sort report from working group 5: future physics opportunities for high-density qcd at the lhc with heavy-ion and proton beams
topic Particle Physics - Phenomenology
nucl-th
Nuclear Physics - Theory
nucl-ex
Nuclear Physics - Experiment
hep-ex
Particle Physics - Experiment
hep-ph
url https://dx.doi.org/10.23731/CYRM-2019-007.1159
http://cds.cern.ch/record/2650176
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