Accès ouvert déclaré
2014
preprint
Experimental access to Transition Distribution Amplitudes with the PANDA experiment at FAIR
PANDA Collaboration, B. P. Singh, W. Erni, I. Keshelashvili, B. Krusche, M. Steinacher, B. Liu, H. Liu, Z. Liu, X. Shen, C. Wang, J. Zhao, M. Albrecht, Martin Fink, F. H. Heinsius, T. Held, T. Holtmann, H. Koch, B. Kopf, M. Kümmel, G. Kuhl, M. Kuhlmann, M. Leyhe, M. Mikirtychyants, P. Musiol, A. Mustafa, M. Pelizäus, J. Pychy, M. Richter, C. Schnier, T. Schröder, C. Sowa, M. Steinke, T. Triffterer, U. Wiedner, R. Beck, Ch. Hammann, David Kaiser, B. Ketzer, M. Kube, P. Mahlberg, M. Rossbach, C. Schmidt, R. Schmitz, U. Thoma, D. Walther, Ch. Wendel, A. Wilson, A. Bianconi, M. Bragadireanu, M. Caprini, D. Pantea, D. Pietreanu, M. E. Vasile, B. Patel, Daniel M. Kaplan, P. Brandys, T. Czyżewski, Wojciech Czyżycki, Mariusz Domagała, Marek Hawryluk, Grzegorz Filo, M. Krawczyk, Dominik Kwiatkowski, E. Lisowski, Filip Lisowski, T. Fiutowski, M. Idzik, B. Mindur, D. Przyborowski, K. Świentek, B. Czech, S. Kliczewski, K. Korcyl, A. Kozela, P. Kulessa, Piotr Lebiedowicz, K. Malgorzata, K. Pysz, Wolfgang Schäfer, R. Siudak, Antoni Szczurek, J. Biernat, S. Jowzaee, B. Kamys, St. Kistryn, G. Korcyl, W. Krzemień, A. Magiera, P. Moskal, M. Pałka, A. Psyzniak, Z. Rudy, P. Salabura, J. Smyrski, P. Strzempek, A. Wrońska, I. Augustin, I. Lehmann, D. Nicmorus, G. Schepers, L. Schmitt, M. Al-Turany, U. Cahit, L. Capozza, A. Dbeyssi, H. Deppe, R. Dzhygadlo, A. Ehret, H. Flemming, A. Gerhardt, K. Götzen, R. Karabowicz, R. Kliemt, J. Kunkel, U. Kurilla, D. Lehmann, J. Lühning, F. E. Maas, C. Morales Morales, M. C. Mora Espí, F. Nerling, H. Orth, Κ. Peters, D. Rodríguez Piñeiro, N. Saito, Toshiharu Saito, A. Sánchez Lorente, C. J. Schmidt, C. Schwarz, J. Schwiening, M. Traxler, R. U. Valente, B. Voss, P. Wieczorek, A. Wilms, M. Zühlsdorf, V. M. Abazov, G.D. Alexeev, A. Arefiev, V. I. Astakhov, M. Yu. Barabanov, B. Batyunya, Yu. I. Davydov, V.Kh. Dodokhov, A. Efremov, A. Fedunov, A. A. Festchenko, A. Galoyan, S. Grigoryan, A. Karmokov, E. K. Koshurnikov, V.I. Lobanov, Yu. Yu. Lobanov, A.F. Makarov, L. Malinina, V. L. Malyshev, Г.А. Мустафаев, A. Olshevskiy, M. A. Pasyuk, E. Perevalova, A. A. Piskun, T. A. Pocheptsov, G. Pontecorvo, V. K. Rodionov, Yu. N. Rogov, R. A. Salmin, A. Samartsev, M. G. Sapozhnikov, G.S. Shabratova, N.B. Skachkov, A. N. Skachkova, E. A. Strokovsky, M.K. Suleimanov, Р. Ш. Тешев, V. V. Tokmenin, V. Uzhinsky, A.S. Vodopyanov, S. Zaporozhets, N.I. Zhuravlev, A. G. Zorin, D. Branford, D. I. Glazier, D. P. Watts, P. J. Woods, A. Britting, W. Eyrich, A. Lehmann, F. Uhlig, S. Dobbs, K. K. Seth, A. Tomaradze, Ting Xiao, D. Bettoni, V. Carassiti, A. Cotta Ramusino, P. Dalpiaz, A. Drago, E. Fioravanti, I. Garzia, M. Savriè, G. Stancari, Valentina Akishina, I. Kisel, I. Kulakov, M. Zyzak, R. Arora, T. Bel, A. Gromliuk, G. Kalicy, M. Krebs, M. Patsyuk, Marko Zuehlsdorf, N. Bianchi, P. Gianotti, C. Guaraldo, V. Lucherini, E. Pace, A. Bersani, G. Bracco, M. Macrı́, R. Parodi, S. Bianco, D. Bremer, Kai-Thomas Brinkmann, S. Diehl, V. Dormenev, P. Drexler, M. Düren, T. Eissner, E. Etzelmüller, K. Föhl, M. Galuska, Thomas Geßler, Aram Hayrapetyan, Jiani Hu, B. Kröck, W. Kühn, Till Kuske, J. S. Lange, Y. T. Liang, O. Merle, V. Metag, D. Mülhheim, D. Münchow, M. Nanova, R. Novotny, A. Pitka, T. Quagli, J. Rieke, Christoph Rosenbaum, R. Schnell, B. Spruck, H. Stenzel, U. Thöring, M. Ullrich, T. Wasem, M. Werner, H.-G. Zaunick, D. G. Ireland, G. Rosner, B. Seitz, P. N. Deepak, A. Kulkarni, A. Apostolou, M. Babai, M. Kavatsyuk, P. Lemmens, M. Lindemulder, H. Löhner, J. G. Messchendorp, P. Schakel, H. Smit, J. C. van der Weele, M. Tiemens, R. Veenstra, S. Vejdani, K. Kalita, D. P. Mohanta, Ajit Kumar, A. Roy, R. Sahoo, H. Sohlbach, M. Büscher, L. Cao, A. Cebulla, D. Deermann, R. Dosdall, S. Esch, I. Georgadze, A. Gillitzer, A. Goerres, F. Goldenbaum, D. Grunwald, Andreas Herten, Qin Hu, G. Kemmerling, H. Kleines, V. Kozlov, A. Lehrach, S. Leiber, Ronald Maier, R. Nellen, H. Ohm, S. Orfanitski, D. Prasuhn, E. Prencipe, J. Ritman, S. Schadmand, J. Schümann, T. Sefzick, V. Serdyuk, G. Sterzenbach, T. Stockmanns, P. Wintz, P. Wüstner, H. Xu, S. Li, Z. Li, Z. Sun, V. Rigato, K. Fissum, Kurt Schaldemose Hansen, L. Isaksson, M. Lundin, B. Schröder, P. Achenbach, S. Bleser, M. Cardinali, O. Corell, M. Deiseroth, A. Denig, M. O. Distler, F. Feldbauer, M. Fritsch, P. Jasinski, M. Hoek, D. Kangh, Anastasia Karavdina, W. Lauth, H. Leithoff, H. Merkel, Martin C. Michel, C. Motzko, U. Müller, O. Noll, S. Plueger, J. Pochodzalla, S. F. Sánchez, B. S. Schlimme, C. Sfienti, M. Steinen, M. Thiel, T. Weber, M. Zambrana, A. Fedorov, M. V. Korzihik, O. Missevitch, P. Balanutsa, V. Balanutsa, V. Chernetsky, A. Demekhin, A. Dolgolenko, P. Fedorets, А. С. Герасимов, V. Goryachev, V. Varentsov, A. Boukharov, O. Malyshev, I. Marishev, А.А. Семенов, I. Konorov, S. Paul, S. Grieser, A. K. Hergemöller, A. Khoukaz, E. Köhler, A. Täschner, J. P. Wessels, S. Dash, M. B. Jadhav, S. Kumar, P. Sarin, R. Varma, V.B. Chandratre, V.M. Datar, D. Dutta, V. Jha, H. Kumawat, A. K. Mohanty, B. J. Roy, Yu-Liang Yan, K. Chinorat, K. Khanchai, S. Pornrad, A. Barnyakov, A. E. Blinov, V. E. Blinov, V. S. Bobrovnikov, S.A. Kononov, E. A. Kravchenko, I. A. Kuyanov, A. P. Onuchin, A. Sokolov, Yu. A. Tikhonov, E. T. Atomssa, T. Hennino, M. Imre, R. Kunne, C. Le Galliard, B. Ma, D. Marchand, S. Ong, B. Ramstein, P. Rosier, E. Tomasi‐Gustafsson, J. Van de Wiele, G. Boca, S. Costanza, P. Genova, L. Lavezzi, P. Montagna, A. Rotondi, V. Abramov, NI Belikov, S. Bukreeva, A. Davidenko, A. A. Derevschikov, Y. Goncharenko, V. Grishin, Vassili Kachanov, V. A. Kormilitsin, Y. Melnik, A. Levin, N. Minaev, В. В. Мочалов, D. Morozov, L. V. Nogach, S. Poslavskiy, A. Ryazantsev, S. Ryzhikov, P. Semenov, I. Shein, A. Uzunian, A. N. Vasiliev, A. Yakutin, B. Yabsley, T. Bäck, B. Cederwall, K. Makónyi, P.-E. Tegnér, Klas Marcks von Würtemberg, S. Belostotski, G. Gavrilov, A. Izotov, A. Kashchuk, O. V. Levitskaya, S. I. Manaenkov, O. Miklukho, Y. Naryshkin, K. Suvorov, D. Veretennikov, A. Zhadanov, S. S. Godre, R. Duchat, A. Amoroso, M.P. Bussa, L. Busso, F. De Mori, M. Destefanis, L. Fava, L. Ferrero, M. Greco, M. Maggiora, G. Maniscalco, S. Marcello, S. Sosio, S. Spataro, L. Zotti, D. Calvo, S. Coli, P. De Remigis, A. Filippi, G. Giraudo, S. Lusso, G. Mazza, M. Mingnore, A. Rivetti, R. Wheadon, F. Balestra, F. Iazzi, R. Introzzi, A. Lavagno, Hannan Younis, R. Birsa, F. Bradamante, A. Bressan, A. Martin, H. Clement, B. Gålnander, L. Caldeira Balkeståhl, H. Calén, K. Fransson, T. Johansson, A. Kupść, P. Marciniewski, J. Pettersson, K. Schönning, M. Wolke, J. Złomańczuk, J. Dı́az, P. C. Vinodkumar, A. Parmar, A. Chłopik, D. Melnychuk, B. Słowiński, A. Trzciński, M. Wojciechowski, S. Wronka, B. Zwieglinski, P. Bühler, J. Márton, K. Suzuki, E. Widmann, J. Zmeskal, B. Fröhlich, D. Khaneft, D. X. Lin, I. Zimmermann, K. Semenov-Tian-Shansky
2Citations signalées, ce qui n’est pas une note de qualité
0Institutions déclarées
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Le résumé fourni par la source
Baryon-to-meson Transition Distribution Amplitudes (TDAs) encoding valuable new information on hadron structure appear as building blocks in the collinear factorized description for several types of hard exclusive reactions. In this paper, we address the possibility of accessing nucleon-to-pion ($πN$) TDAs from $\bar{p}p \to e^+e^- π^0$ reaction with the future PANDA detector at the FAIR facility. At high center of mass energy and high invariant mass squared of the lepton pair $q^2$, the amplitude of the signal channel $\bar{p}p \to e^+e^- π^0$ admits a QCD factorized description in terms of $πN$ TDAs and nucleon Distribution Amplitudes (DAs) in the forward and backward kinematic regimes. Assuming the validity of this factorized description, we perform feasibility studies for measuring $\bar{p}p \to e^+e^- π^0$ with the PANDA detector. Detailed simulations on signal reconstruction efficiency as well as on rejection of the most severe background channel, i.e. $\bar{p}p \to π^+π^- π^0$ were performed for the center of mass energy squared $s = 5$ GeV$^2$ and $s = 10$ GeV$^2$, in the kinematic regions $3.0 < q^2 < 4.3$ GeV$^2$ and $5 < q^2 < 9$ GeV$^2$, respectively, with a neutral pion scattered in the forward or backward cone $| \cosθ_{π^0}| > 0.5 $ in the proton-antiproton center of mass frame. Results of the simulation show that the particle identification capabilities of the PANDA detector will allow to achieve a background rejection factor of $5\cdot 10^7$ ($1\cdot 10^7$) at low (high) $q^2$ for $s=5$ GeV$^2$, and of $1\cdot 10^8$ ($6\cdot 10^6$) at low (high) $q^2$ for $s=10$ GeV$^2$, while keeping the signal reconstruction efficiency at around $40\%$. At both energies, a clean lepton signal can be reconstructed with the expected statistics corresponding to $2$ fb$^{-1}$ of integrated luminosity. (.../...)
Ce résumé expose les affirmations des auteurs. BNTIC ne l’interprète pas comme une validation indépendante des résultats.
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Les sujets associés
Particle physics theoretical and experimental studiesQuantum Chromodynamics and Particle InteractionsHigh-Energy Particle Collisions Research