Search Results - "Winney, D."

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  1. 1

    ω→3π and ωπ0 transition form factor revisited by Albaladejo, M., Danilkin, I., Gonzàlez-Solís, S., Winney, D., Fernández-Ramírez, C., Blin, A. N. Hiller, Mathieu, V., Mikhasenko, M., Pilloni, A., Szczepaniak, A.

    “…In light of recent experimental results, we revisit the dispersive analysis of the ω → 3 π decay amplitude and of the ω π 0 transition form factor. Within the…”
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  2. 2

    and [Formula omitted] transition form factor revisited by Albaladejo, M, Danilkin, I, Gonzàlez-Solís, S, Winney, D, Fernández-Ramírez, C, Blin, A. N. Hiller, Mathieu, V

    “…In light of recent experimental results, we revisit the dispersive analysis of the [Formula omitted] decay amplitude and of the [Formula omitted] transition…”
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  3. 3

    ω→3π$ and $ωπ^0$ transition form factor revisited by Albaladejo, M., Danilkin, I., Gonzàlez-Solís, S., Winney, D., Fernández-Ramírez, C., Blin, A. N. Hiller, Mathieu, V., Mikhasenko, M., Pilloni, A., Szczepaniak, A.

    “…In light of recent experimental results, we revisit the dispersive analysis of the $ω→3π$ decay amplitude and of the $ωπ^0$ transition form factor. Within the…”
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  4. 4

    omega \rightarrow 3\pi $$ and $$\omega \pi ^{0}$$ transition form factor revisited by Albaladejo, M., Danilkin, I., Gonzàlez-Solís, S., Winney, D., Fernández-Ramírez, C., Blin, A. N. Hiller, Mathieu, V., Mikhasenko, M., Pilloni, A., Szczepaniak, A.

    “…Abstract In light of recent experimental results, we revisit the dispersive analysis of the $$\omega \rightarrow 3\pi $$ ω → 3 π decay amplitude and of the…”
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  5. 5

    omega \rightarrow 3\pi $$ ω → 3 π and $$\omega \pi ^{0}$$ ω π 0 transition form factor revisited by JPAC Collaboration, M. Albaladejo, I. Danilkin, S. Gonzàlez-Solís, D. Winney, C. Fernández-Ramírez, A. N. Hiller Blin, V. Mathieu, M. Mikhasenko, A. Pilloni, A. Szczepaniak

    “…Abstract In light of recent experimental results, we revisit the dispersive analysis of the $$\omega \rightarrow 3\pi $$ ω → 3 π decay amplitude and of the…”
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  6. 6

    Strong interaction physics at the luminosity frontier with 22 GeV electrons at Jefferson Lab by Adhikari, D., Afanasev, A., Armstrong, D. S., Avakian, H., Bacchetta, A., Balantekin, A. B., Benmokhtar, F., Bertone, V., Binosi, D., Brash, E. J., Brindza, P. D., Brodsky, S. J., Cardman, L. S., Chen, J.-P., Christopher, A., Christy, E., Cisbani, E., Constantinou, M., Costantini, G., Dusa, S. Covrig, Day, D., De Fazio, F., De Vita, R., de Téramond, G. F., Diefenthaler, M., Djalali, C., Elouadrhiri, L., Evans, G., Fanelli, C., Fernández-Ramírez, C., Gan, L., Gao, F., Gasparian, A., Giacosa, F., Guo, F.-K., Hague, T. J., Hayward, T., Illari, I., Italiano, A., Jarvis, N. S., Jenkins, D. J., Ji, C.-R., Jones, M., Jones, R. T., Keppel, C., Khachatryan, V., Kohl, M., Kuhn, S. E., Liao, J., Mack, D. J., Mamo, K. A., Mariani, C., Markowitz, P., Marukyan, H., Mathieu, V., Maxwell, J., McCaughan, M., Mezrag, C., Miller, G. A., Mineeva, T., Chàvez, J. M. Morgado, Nguyen, D., Niccolai, S., Niculescu, G., Ortega, P. G., Pandey, P., Pasquini, B., Passemar, E., Patel, T., Paul, S. J., Peng, J.-C., Perry, R. J., Piasetzky, E., Pilloni, A., Polosa, A. D., Pospelov, M., Qin, S.-X., Reimer, P. E., Richard, J.-M., Ritman, J., Rivero-Acosta, A., Rogers, T. C., Santiesteban, S. N., Sato, N., Schnell, G., Shepherd, M. R., Shrestha, S., Sparveris, N., Strakovsky, I. I., Strikman, M., Suresh, M., Szczepaniak, A. P., Sznajder, P., Tong, X.-B., Vallarino, S., Wagner, J., Williams, R., Ye, Z., Zhao, Z. W., Zheng, X.

    “…Here, the purpose of this document is to outline the developing scientific case for pursuing an energy upgrade to 22 GeV of the Continuous Electron Beam…”
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  7. 7

    Precision studies of QCD in the low energy domain of the EIC by Burkert, V. D., Elouadrhiri, L., Afanasev, A., Arrington, J., Contalbrigo, M., Deshpande, A., Glazier, D. I., Oh, Y., Satogata, T., Vossen, A., Abdolmaleki, H., Alexandrou, C., Avagyan, H., Bacchetta, A., Baker, M., Benmokhtar, F., Bernauer, J. C., Bissolotti, C., Briscoe, W., Byers, D., Cao, Xu, Cloet, I. C., Courtoy, A., Dahiyah, H., Dehmelt, K., Dilks, C., Dusa, S. C., El-Bennich, B., Frederico, T., Gamage, B. R., Gamberg, L., Ghoshal, R. R., Gotra, Y., Guo, F. K., Guo, X., Hattawy, M., Hatta, Y., Hayward, T., Hen, O., Huber, G. M., Hyde, C., Jacak, B., Jentsch, A., Kalantarians, N., Kumano, S., Kumericki, K., Li, Jin, Li, Shujie, Li, W., Li, X., Liu, K. F., Mathieu, V., McEneaney, M., de Melo, J. P.B.C., Milner, R., Mkrtchyan, H., Mokeev, V., Morozov, V., Murray, M., Mtingwa, S., Papandreou, Z., Pecar, C., Pilloni, A., Pire, B., Polys, N., Prokudin, A., Przybycien, M., Qiu, J. -W., Radici, M., Reed, R., Ringer, F., Schäfer, A., Schnell, G., Schweitzer, P., Seidl, R., Semenov-Tian-Shansky, K. M., Serna, F., Shaban, F., Shabestari, M. H., Signori, A., Strakovsky, I., Sufian, R. S., Szczepaniak, A., Teodorescu, L., Terry, J., Teryaev, O., Tessarotto, F., Timmer, C., Tawfik, Abdel Nasser, Watts, D., Wilson, D., Winney, D., Xiao, B., Ye, Z., Ye, Zh, Yuan, F., Zachariou, N., Zhang, J. L., Zhang, Y., Zhou, J.

    Published in Progress in particle and nuclear physics (04-03-2023)
    “…This White Paper aims at highlighting the important benefits in the science reach of the EIC. High luminosity operation is generally desirable, as it enables…”
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  8. 8

    Nonperturbative aspects of the electromagnetic pion form factor at high energies by Center, Joint Physics Analysis, :, Quirion, K, Fernández-Ramírez, C, Mathieu, V, Montaña, G, Perry, R. J, Pilloni, A, Rodas, A, Shastry, V, Smith, W. A, Szczepaniak, A. P, Winney, D

    Published 15-05-2024
    “…The structure of hadronic form factors at high energies and their deviations from perturbative quantum chromodynamics provide insight on nonperturbative…”
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  9. 9

    XYZ spectroscopy at electron-hadron facilities II: Semi-inclusive processes with pion exchange by JPAC Collaboration, Winney, D, Pilloni, A, Mathieu, V, Blin, A. N. Hiller, Albaladejo, M, Smith, W. A, Szczepaniak, A

    Published 07-11-2022
    “…Phys. Rev. D 106 (2022) 09, 094009 Semi-inclusive processes are very promising to investigate $XYZ$ hadrons at the next generation of electron-hadron…”
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  10. 10

    XYZ spectroscopy at electron-hadron facilities III: Semi-inclusive processes with vector exchanges by Joint Physics Analysis Center Collaboration, Winney, D, Pilloni, A, Perry, R. J, Bibrzycki, L, Fernandez-Ramirez, C, Hammoud, N, Mathieu, V, Montana, G, Rodas, A, Shastry, V, Smith, W. A, Szczepaniak, A. P

    Published 24-06-2024
    “…Phys. Rev. D 109 (2024), 114035 Inclusive production processes will be important for the first observations of $XYZ$ states at new generation electron-hadron…”
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  11. 11

    Ambiguities in Partial Wave Analysis of Two Spinless Meson Photoproduction by JPAC Collaboration, Smith, W. A, Glazier, D. I, Mathieu, V, Albaladejo, M, Albrecht, M, Baldwin, Z, Fernández-Ramírez, C, Hammoud, N, Mikhasenko, M, Montaña, G, Perry, R. J, Pilloni, A, Shastry, V, Szczepaniak, A. P, Winney, D

    Published 30-06-2023
    “…We describe the formalism to analyze the mathematical ambiguities arising in partial-wave analysis of two spinless mesons produced with a linearly polarized…”
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  12. 12

    Dynamics in near-threshold $J/\psi$ photoproduction by JPAC Collaboration, Winney, D, Fernandez-Ramirez, C, Pilloni, A, Blin, A. N. Hiller, Albaladejo, M, Bibrzycki, L, Hammoud, N, Liao, J, Mathieu, V, Montana, G, Perry, R. J, Shastry, V, Smith, W. A, Szczepaniak, A. P

    Published 02-05-2023
    “…Phys. Rev. D 108 (2023) 5, 054018 The study of $J/\psi$ photoproduction at low energies has consequences for the understanding of multiple aspects of…”
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  13. 13

    Khuri-Treiman analysis of $J/\psi\to\pi^{+}\pi^{-}\pi^{0} by JPAC Collaboration, Albaladejo, M, Gonzàlez-Solís, S, Bibrzycki, Ł, Fernández-Ramírez, C, Hammoud, N, Mathieu, V, Mikhasenko, M, Montaña, G, Perry, R. J, Pilloni, A, Rodas, A, Smith, W. A, Szczepaniak, A, Winney, D

    Published 19-04-2023
    “…We study the decay $J/\psi\to\pi^{+}\pi^{-}\pi^{0}$ within the framework of the Khuri-Treiman equations. We find that the BESIII experimental di-pion mass…”
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  14. 14

    XYZ spectroscopy at electron-hadron facilities: Exclusive processes by JPAC Collaboration, Albaladejo, M, Blin, A. N. Hiller, Pilloni, A, Winney, D, Fernández-Ramírez, C, Mathieu, V, Szczepaniak, A

    Published 12-10-2020
    “…Phys. Rev. D 102, 114010 (2020) The next generation of electron-hadron facilities has the potential for significantly improving our understanding of exotic…”
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  15. 15

    omega \to 3\pi$ and $\omega\pi^{0}$ transition form factor revisited by Albaladejo, M, Danilkin, I, Gonzalez-Solis, S, Winney, D, Fernandez-Ramirez, C, Blin, A. N. Hiller, Mathieu, V, Mikhasenko, M, Pilloni, A, Szczepaniak, A

    Published 01-06-2020
    “…In light of recent experimental results, we revisit the dispersive analysis of the $\omega \to 3\pi$ decay amplitude and of the $\omega\pi^0$ transition form…”
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  16. 16

    Khuri-Treiman equations for $3\pi$ decays of particles with spin by JPAC Collaboration, Albaladejo, M, Winney, D, ~Danilkin, I. V, Fernandez-Ramirez, C, Mathieu, V, Mikhasenko, M, Pilloni, A, Silva-Castro, J. A, Szczepaniak, A. P

    Published 07-10-2019
    “…Phys. Rev. D 101, 054018 (2020) Khuri-Treiman equations have proven to be a useful theoretical tool in the analysis of 3-body decays, specially into the $3\pi$…”
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  17. 17

    Strong Interaction Physics at the Luminosity Frontier with 22 GeV Electrons at Jefferson Lab by Adhikari, D, Afanasev, A, Akondi, C. S, Almeida-Zamora, B, Armstrong, W, Asaturyan, A, Gayoso, C. Ayerbe, Baltzell, N, Barion, L, Bellini, V, Benhar, O, Benkel, B, Bertone, V, Bibrzycki, L, Bosted, P, Bozzi, G, Brindza, P. D, Camsonne, A, Cardman, L. S, Carman, D. S, Carpinelli, M, Caylor, J, Chatagnon, P, Cohen, E. O, Cole, P. L, Constantinou, M, Day, D, Egiyan, H, Ehinger, L, Fassi, L. El, Engelhardt, M, Fernando, I. P, Filippi, A, Fogler, C, Frederico, T, Freese, A, Giacosa, F, Gilfoyle, G. -P, Godfrey, S, Golubenko, A. A, Grocholski, O, Grube, B, Guo, L, Hague, T. J, Hauenstein, F, Hobart, A, Huber, G. M, Hutauruk, P. T. P, Ilieva, Y, Italiano, A, Ji, C-R, Jones, M, Junaid, M, Karki, A, Karyan, G, Kay, S. J. D, Kerbizi, A, Kim, A, Kinney, E. R, Lenisa, P, Mack, D. J, Mascagna, V, Meziani, Z. -E, Mirazita, M, Mkrtchyan, A, Mohanmurthy, P, Nakamura, S. X, Niculescu, G, Ortega, P. G, Osipenko, M, Pandey, P, Papandreou, Z, Papavassiliou, J, Paschke, K. D, Pentchev, L, Perrino, R, Piasetzky, E, Prokudin, A, Reinhold, J, Richard, J. -M, Santopinto, E, Sargsian, M, Schnell, G, Schumacher, R. A, Segovia, J, Shirokov, E. V, Souder, P, Swanson, E. S, Szymanowski, L, Tadepalli, A. -S, Thiel, A, Ungaro, M, Weinstein, L. B, Wood, M. H, Xiao, T, Zachariou, N, Zhang, Z, Zhao, Z. W, de Paula, W, de Téramond, G. F

    Published 13-06-2023
    “…This document presents the initial scientific case for upgrading the Continuous Electron Beam Accelerator Facility (CEBAF) at Jefferson Lab (JLab) to 22 GeV…”
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  18. 18

    Dalitz-plot decomposition for three-body decays by JPAC Collaboration, Mikhasenko, M, Albaladejo, M, Bibrzycki, L, Fernandez-Ramirez, C, Mathieu, V, Mitchell, S, Pappagallo, M, Pilloni, A, Winney, D, Skwarnicki, T, Szczepaniak, A. P

    Published 18-02-2020
    “…Phys. Rev. D 101, 034033 (2020) We present a general formalism to write the decay amplitude for multibody reactions with explicit separation of the rotational…”
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  19. 19

    QCD2019 Workshop Summary by Brodsky, S. J, Burkert, V. D, Carman, D. S, Chen, J. P, Cui, Z. -F, Döring, M, Dosch, H. G, Draayer, J. P, Elouadrhiri, L, Glazier, D. I, Blin, A. N. Hiller, Horn, T, Joo, K, Kim, H. C, Kubarovsky, V, Kuhn, S. E, Lu, Y, Melnitchouk, W, Mezrag, C, Mokeev, V. I, Qiu, J. W, Radici, M, Richards, D, Roberts, C. D, Rodríguez-Quintero, J, Segovia, J, Szczepaniak, A. P, de Téramond, G. F, Winney, D

    Published 11-06-2020
    “…The topical workshop {\it Strong QCD from Hadron Structure Experiments} took place at Jefferson Lab from Nov. 6-9, 2019. Impressive progress in relating hadron…”
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  20. 20

    Science Requirements and Detector Concepts for the Electron-Ion Collider: EIC Yellow Report by Avagyan, H, Gayoso, C. Ayerbe, Barion, L, Berdnikov, V. V, Bhattacharya, S, Bressan, A, Bukhari, M. H. S, Chang, W, Chiosso, M, Cloet, I. C, Cole, P. L, Contalbrigo, M, D'Alesio, U, Deconinck, W, DeGraw, W, Dehmelt, K, De Vita, R, Diefenthaler, M, Dumitru, A, Dupré, R, Evdokimov, O, Fanelli, C, Fatemi, R, Fernandez-Ramirez, C, FingerJr, M, Gal, C, Ducati, M. B. Gay, da Silveira, G. Gil, Gnanvo, K, Goncalves, V. P, Gonella, L, Guryn, W, Hatta, Y, Hattawy, M, Heyes, G, Higinbotham, D. W, Hobbs, T. J, Iakovidis, G, Joosten, S, Kalicy, G, Kang, Z. B, Kay, S. J. D, Kim, J, Klest, H. T, Korchak, O, Kostina, A, Kotko, P, Kovchegov, Y. V, Krelina, M, Kuleshov, S, Kumano, S, Kumar, K. S, Kumar, R, Kusina, A, Li, H, Liu, H, Lukow, N. S, Majka, R, Makris, Y, Mantry, S, Mathieu, V, Mehtar-Tani, Y, Mezrag, C, Mirazita, M, Mkrtchyan, A, Mondal, M. M, Newman, P. R, Neyret, D, Nguyen, D, Pentchev, L, Perrino, R, Petti, R, Preins, S, Radici, M, Ringer, F, Roberts, C. D, Sarsour, M, Schmookler, B, Schnell, G, Scimemi, I, Scopetta, S, Semenov-Tian-Shanskiy, K, Shao, D. Y, Sherrill, N, Sichtermann, E, Spiesberger, H, Stepanov, P, Szymanowski, L, Terry, J, Tezgin, K, Trotta, R. L, Tsai, O. D, Vandenbroucke, M, Venugopalan, R, Volpe, G, Wenaus, T, Wickramaarachchi, N, Winney, D, Xu, Q. H, Zhang, Z

    Published 27-10-2021
    “…Nucl. Phys. A 1026 (2022) 122447 This report describes the physics case, the resulting detector requirements, and the evolving detector concepts for the…”
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