\begin{document}$ c \bar c $\end{document}) and bottomonia (\begin{document}$ b \bar b $\end{document}) mesons in the light-front quark model (LFQM). The light-front wave functions have been successful in explaining various physical properties of meson states in the past, especially for the 1S and 2S states. However, the radially excited state 3S and orbitally excited state 1P have rarely been investigated. In this study, we considered these two excited states and investigated the electromagnetic form factors (EMFFs), charge radii, decay constants, parton distribution functions (PDFs), and the distribution amplitudes (DAs) for the quarkonia system. For the sake of completeness, we also studied the ground and the first excited states of quarkonia mesons. We also illustrated the 3D wave functions for the radially excited states to study their nodal structures."> Spectroscopy of excited quarkonium states in the light-front quark model -
  • [1]

    W. J. Marciano and H. Pagels, Phys. Rept.36, 137 (1978)

  • [2]

    G. Altarelli, Phys. Rept.81, 1 (1982)

  • [3]

    D. Boer and P. J. Mulders, Phys. Rev. D57, 5780 (1998)

  • [4]

    D. Boer, Phys. Rev. D60, 014012 (1999)

  • [5]

    J. P. Ralston and D. E. Soper, Nucl. Phys. B152, 109 (1979)

  • [6]

    R. Angeles-Martinez, A. Bacchetta, I. I. Balitskyet al., Acta Phys. Polon. B46, 2501 (2015)

  • [7]

    A. Kotzinian, Nucl. Phys. B441, 234 (1995)

  • [8]

    M. Radici, J. Phys. Conf. Ser.527, 012025 (2014)

  • [9]

    D. W. Sivers, Phys. Rev. D41, 83 (1990)

  • [10]

    S. Puhan and H. Dahiya, Phys. Rev. D109, 034005 (2024)

  • [11]

    F. Conti, A. Bacchetta and M. Radici, J. Phys. Conf. Ser.168, 012020 (2009)

  • [12]

    A. D. Martin, R. G. Roberts, W. J. Stirlinget al., Eur. Phys. J. C4, 463 (1998)

  • [13]

    M. Glück, E. Reya and A. Vogt, Eur. Phys. J. C5, 461 (1998)

  • [14]

    M. Glück, E. Reya and A. Vogt, Z. Phys. C67, 433 (1995)

  • [15]

    P. J. Mulders and R. D. Tangerman, Nucl. Phys. B461, 197 (1996)

  • [16]

    M. Garcon, Eur. Phys. J. A18, 389 (2003)

  • [17]

    A. V. Belitsky and A. V. Radyushkin, Phys. Rept.418, 1 (2005)

  • [18]

    M. Diehl, Eur. Phys. J. A52, 149 (2016)

  • [19]

    D. Chakrabarti and A. Mukherjee, Phys. Rev. D72, 034013 (2005)

  • [20]

    S. J. Brodsky, D. Chakrabarti, A. Harindranathet al., Phys. Rev. D75, 014003 (2007)

  • [21]

    A. Rajan, A. Courtoy, M. Engelhardtet al., Phys. Rev. D94, 034041 (2016)

  • [22]

    P. Hagler, A. Mukherjee and A. Schafer, Phys. Lett. B582, 55 (2004)

  • [23]

    X. Ji, Ann. Rev. Nucl. Part. Sci.54, 413 (2004)

  • [24]

    F. E. Serna, R. C. da Silveira, J. J. Cobos-Martínezet al., Eur. Phys. J. C80, 955 (2020)

  • [25]

    A. Harindranath, arXiv: hep-ph/9612244

  • [26]

    P. A. M. Dirac, Rev. Mod. Phys.21, 392 (1949)

  • [27]

    W. Jaus, Phys. Rev. D41, 3394 (1990)

  • [28]

    W. Jaus, Phys. Rev. D44, 2851 (1991)

  • [29]

    S. Puhan and H. Dahiya, PoSHQL2023, 089 (2024)

  • [30]

    R. Acharyya, S. Puhan and H. Dahiya, Phys. Rev. D110, 034020 (2024)

  • [31]

    F. Coester and W. N. Polyzou, Phys. Rev. C71, 028202 (2005)

  • [32]

    S. Puhan, S. Sharma, N. Kauret al., JHEP02, 075 (2024)

  • [33]

    H. Y. Cheng, C. Y. Cheung, C. W. Hwanget al., Phys. Rev. D57, 5598 (1998)

  • [34]

    C. W. Hwang, Eur. Phys. J. C23, 585 (2002)

  • [35]

    D. Arndt and C. R. Ji, Phys. Rev. D60, 094020 (1999)

  • [36]

    H. M. Choi and C. R. Ji, Phys. Rev. D59, 074015 (1999)

  • [37]

    V. M. Belyaev and M. B. Johnson, Phys. Lett. B423, 379 (1998)

  • [38]

    J. P. B. C. de Melo and T. Frederico, Phys. Rev. C55, 2043 (1997)

  • [39]

    P. A. Zylaet al. [Particle Data Group], PTEP2020, 083C01 (2020)

  • [40]

    D. S. Hwang and D. W. Kim, Phys. Lett. B601, 137 (2004)

  • [41]

    E. Eichten, K. Gottfried, T. Kinoshitaet al, Phys. Rev. D21, 203 (1980)

  • [42]

    R. Akhoury and A. Comtet, Annals Phys.172, 245 (1986)

  • [43]

    A. J. Arifi, P. T. P. Hutauruk and K. Tsushima, Phys. Rev. D107, 114010 (2023)

  • [44]

    J. P. B. C. de Melo, T. Frederico, E. Paceet al., Phys. Lett. B581, 75 (2004)

  • [45]

    N. R. F. Braga, M. A. Martin Contreras and S. Diles, EPL115, 31002 (2016)

  • [46]

    R. S. Plant and M. C. Birse, Nucl. Phys. A628, 607 (1998)

  • [47]

    M. Chen, Chin. Phys. C45, 123104 (2021)

  • [48]

    S. Kaur, N. Kumar, J. Lanet al., Phys. Rev. D102, 014021 (2020)

  • [49]

    H. J. Melosh, Phys. Rev. D9, 1095 (1974)

  • [50]

    A. J. Arifi, H. M. Choi, C. R. jiet al., Phys. Rev. D106, 014009 (2022)

  • [51]

    N. Dhiman, H. Dahiya, C. R. Jiet al., Phys. Rev. D100, 014026 (2019)

  • [52]

    C. W. Hwang, Eur. Phys. J. C62, 499 (2009)

  • [53]

    H. M. Choi, Phys. Rev. D103, 073004 (2021)

  • [54]

    H. M. Choi and C. R. Ji, Phys. Rev. D89, 033011 (2014)

  • [55]

    M. Li, Y. Li, P. Mariset al., Phys. Rev. D98, 034024 (2018)

  • [56]

    C. McNeile, C. T. H. Davies, E. Follanaet al., Phys. Rev. D86, 074503 (2012)

  • [57]

    C. T. H. Davies, C. McNeile, E. Follanaet al., Phys. Rev. D82, 114504 (2010)

  • [58]

    G. C. Donald, C. T. H. Davies, R. J. Dowdallet al., Phys. Rev. D86, 094501 (2012)

  • [59]

    B. Colquhoun, R. J. Dowdall, C. T. H. Davieset al., Phys. Rev. D91, 074514 (2015)

  • [60]

    D. Bečirević, P. Boucaud, J. P. Leroyet al., Phys. Rev. D60, 074501 (1999)

  • [61]

    P. Gelhausen, A. Khodjamirian, A. A. Pivovarovet al., Eur. Phys. J. C74, 2979 (2014)

  • [62]

    D. Bečirević, G. Duplančić, B. Klajnet al., Nucl. Phys. B883, 306 (2014)

  • [63]

    G. Cvetic, C. S. Kim, G. L. Wanget al., Phys. Lett. B596, 84 (2004)

  • [64]

    D. Binosi, L. Chang, M. Dinget al., Phys. Lett. B790, 257 (2019)

  • [65]

    H. M. Choi and C. R. Ji, Phys. Rev. D80, 054016 (2009)

  • [66]

    H. M. Choi, C. R. Ji, Z. Liet al., Phys. Rev. C92, 055203 (2015)

  • [67]

    Y. Li, P. Maris and J. P. Vary, Phys. Rev. D96, 016022 (2017)

  • [68]

    M. Li, Y. Li, G. Chenet al., Eur. Phys. J. C82, 1045 (2022)

  • [69]

    R. L. Workmanet al. [Particle Data Group], PTEP2022, 083C01 (2022)

  • [70]

    R. Hoque, B. J. Hazarika and D. K. Choudhury, Eur. Phys. J. C80, 1213 (2020)

  • [71]

    T. Zhou, T. Wang, H. F. Fuet al., Eur. Phys. J. C81, 339 (2021)

  • [72]

    Z. G. Wang, Eur. Phys. J. C73, 2533 (2013)

  • [73]

    G. P. Lepage and S. J. Brodsky, Phys. Rev. D22, 2157 (1980)

  • [74]

    H. M. Choi and C. R. Ji, Phys. Rev. D75, 034019 (2007)

  • [75]

    E. Ruiz Arriola and W. Broniowski, Phys. Rev. D66, 094016 (2002)

  • [76]

    D. Mueller, Phys. Rev. D51, 3855 (1995)

  • [77]

    V. V. Braguta, A. K. Likhoded and A. V. Luchinsky, Phys. Lett. B646, 80 (2007)

  • [78]

    G. T. Bodwin, D. Kang and J. Lee, Phys. Rev. D74, 014014 (2006)

  • [79]

    V. V. Braguta, Phys. Rev. D75, 094016 (2007)

  • [80]

    V. V. Braguta, Phys. Rev. D77, 034026 (2008)

  • [81]

    M. Ding, F. Gao, L. Changet al., Phys. Lett. B753, 330 (2016)

  • [82]

    W. Buchmuller and S. H. H. Tye, Phys. Rev. D24, 132 (1981)

  • [83]

    N. Li, C. C. Liu and Y. J. Wu, Eur. Phys. J. A56, 242 (2020)

  • [84]

    Y. Li, P. Maris, X. Zhaoet al., Phys. Lett. B758, 118 (2016)

  • [85]

    P. Maris, AIP Conf. Proc.892, 65 (2007)

  • [86]

    J. Lan, C. Mondal, M. Liet al., Phys. Rev. D102, 014020 (2020)

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