Open Access
Issue
EPJ Web Conf.
Volume 356, 2026
5th International Conference on Condensed Matter and Applied Physics (ICC 2025)
Article Number 01009
Number of page(s) 6
Section Condensed Matter
DOI https://doi.org/10.1051/epjconf/202635601009
Published online 05 March 2026
  1. T. Matsui and H. Satz, J/ψ Suppression by Quark-Gluon Plasma Formation, Physics Letters B 178, 416–422 (1986). [Google Scholar]
  2. R. Rapp, D. Blaschke, and P. Crochet, Charmonium and Bottomonium Production in Heavy-Ion Collisions, Progress in Particle and Nuclear Physics 65, 209–266 (2010). [Google Scholar]
  3. A. Andronic et al., Decoding the Phase Structure of QCD via Particle Production at High Energy, Nature 561, 321–330 (2018). [CrossRef] [PubMed] [Google Scholar]
  4. P. Petreczky, Lattice QCD at Non-Zero Temperature, Journal of Physics G: Nuclear and Particle Physics 39, 093002 (2012). [Google Scholar]
  5. N. Brambilla et al., Heavy Quarkonium Physics, Reviews of Modern Physics 77, 1423–1496 (2005). [Google Scholar]
  6. A. Bazavov et al., The QCD Equation of State to O(μ4B)from Lattice QCD, Physical Review D 85, 054503 (2012). [CrossRef] [Google Scholar]
  7. H. X. Chen, W. Chen, X. Liu, and S. L. Zhu, The Hidden-Charm Pentaquark and Tetraquark States, Physics Reports 639, 1–121 (2016). DOI: https://doi.org/10.1016/j.physrep.2016.05.004 [Google Scholar]
  8. O. Kaczmarek et al., Heavy Quark Free Energies, Potentials and the Renormalized Polyakov Loop, Physical Review D 70, 074505 (2004). [Google Scholar]
  9. Y. Burnier, O. Kaczmarek, and A. Rothkopf, Quarkonium at Finite Temperature: Towards Real-Time Dynamics from Lattice QCD, Physical Review Letters 114, 082001 (2015). [Google Scholar]
  10. M. Laine, O. Philipsen, P. Romatschke, and M. Tassler, Real-Time Static Potential in Hot QCD, Journal of High Energy Physics 03, 054 (2007). [Google Scholar]
  11. D. Lafferty and A. Rothkopf, Complex Heavy-Quark Potential at Finite Temperature from an Improved Gauss Law, Physical Review D 101, 056010 (2020). [Google Scholar]
  12. B. Bala and A. Rothkopf, Reconstruction of Complex In-Medium Heavy-Quark Potentials from Lattice QCD, Physical Review D 102, 094503 (2020). [Google Scholar]
  13. A. Beraudo, J.-P. Blaizot, and C. Ratti, Real and Imaginary-Time QQ Correlators in a Thermal Medium, Nuclear Physics A 806, 312–338 (2008). [Google Scholar]
  14. W. Lucha and F. Schöberl, Solving the Schrödinger Equation for Bound States of Quarks, International Journal of Modern Physics C 10, 607–620 (1999). [Google Scholar]
  15. A. K. Rai, J. N. Pandya, and P. C. Vinodkumar, Mass Spectra of Heavy Quarkonia, Journal of Physics G: Nuclear and Particle Physics 28, 2275–2286 (2002). [Google Scholar]
  16. A. K. Rai, N. Devlani, and P. C. Vinodkumar, Spectroscopy of Heavy Quarkonia and Heavy-Light Mesons, Journal of Physics G: Nuclear and Particle Physics 31, 1453–1466 (2005). [Google Scholar]
  17. N. Devlani and A. K. Rai, Spectroscopy and Decay Properties of Heavy Quarkonia, European Physical Journal A 48, 104 (2012). [Google Scholar]
  18. R. Chaturvedi and A. K. Rai, Charmonium Properties in a Thermal Medium, European Physical Journal Plus 133, 220 (2018). [Google Scholar]
  19. J. N. Pandya et al., Study of Heavy Quarkonium States, Chinese Physics C 39, 123101 (2015). [Google Scholar]
  20. R. Chaturvedi, A. K. Rai, and J. N. Pandya, Medium Modification of Quarkonium States, Journal of Physics G: Nuclear and Particle Physics 47, 115003 (2020). [Google Scholar]
  21. R. L. Jaffe, Exotica, Physics Reports 409, 1–45 (2005). DOI: https://doi.org/10.1016/j.physrep.2004.11.005 [Google Scholar]
  22. A. Esposito, A. Pilloni, and A. D. Polosa, Multiquark Resonances, Physics Reports 668, 1–97 (2017). DOI: https://doi.org/10.1016/j.physrep.2016.11.002 [CrossRef] [Google Scholar]
  23. M. Neubert, Heavy-Quark Symmetry, Physics Reports 245, 259–396 (1994). DOI: https://doi.org/10.1016/0370-1573(94)90091-4 [Google Scholar]
  24. T. Barnes, S. Godfrey, and E. S. Swanson, Higher Charmonia, Physical Review D 72, 054026 (2005). DOI: https://doi.org/10.1103/PhysRevD.72.054026 [Google Scholar]
  25. M. B. Voloshin, Charmonium, Progress in Particle and Nuclear Physics 61, 455–511 (2008). DOI: https://doi.org/10.1016/j.ppnp.2008.02.001 [Google Scholar]
  26. M. Shah, B. Patel, and P. C. Vinodkumar, Mass Spectra and Decay Properties of DsMeson in a Relativistic Dirac Formalism, Physical Review D 90, 014009 (2014). DOI: https://doi.org/10.1103/PhysRevD.90.014009 [Google Scholar]
  27. S. Patel, P. C. Vinodkumar, and S. Bhatnagar, Decay Rates of Charmonia within a Quark-Antiquark Confining Potential, Chinese Physics C 40, 053102 (2016). DOI: https://doi.org/10.1088/1674-1137/40/5/053102 [Google Scholar]
  28. R. Garg, P. Gupta, and A. Upadhyay, Bottomonia in Quark-Antiquark Confining Potential, Physica Scripta 99, 095301 (2024). DOI: https://doi.org/10.1088/1402-4896/ad680f [Google Scholar]
  29. R. Garg and A. Upadhyay, Masses and Decay Widths for Radially Excited (n = 3) S-Wave Bottom Mesons, European Physical Journal Plus 137, 828 (2022). DOI: https://doi.org/10.1140/epjp/s13360-022-03043-5 [Google Scholar]
  30. K. K. Vishwakarma, R. Garg, and A. Upadhyay, Open Charm Mesons in Variational Scheme and HQET, Few-Body Systems 66, 40 (2025). DOI: https://doi.org/10.1007/s00601-025-02012-9 [Google Scholar]
  31. T. Bhavsar, M. Shah, and P. C. Vinodkumar, Status of Quarkonia-Like Negative and Positive Parity States in a Relativistic Confinement Scheme, European Physical Journal C 78, 227 (2018). DOI: https://doi.org/10.1140/epjc/s10052-018-5694-3 [Google Scholar]
  32. H. Rathod, P. Jakhad, and A. K. Rai, Exploring strong decay behavior of the Ec baryon, Proceedings of the 68th DAE Symposium on Nuclear Physics, Indian Institute of Technology Roorkee, Uttarakhand, India, December 7-11, 2024. [Google Scholar]
  33. H. Rathod, P. Jakhad, and A. K. Rai, Study of the strong decay of the Ac and Ξc baryons, Proceedings of the Recent Trends in Applied Physics and Material Science Conference, Bikaner Technical University, Bikaner, Rajasthan, India, November 14-15, 2024. [Google Scholar]
  34. H. Rathod and A. K. Rai, Mass spectra of singly charmed pentaquark for flavor 6 multiplet with S = -2 and S =-3, Proceedings of the 69th DAE Symposium on Nuclear Physics, Dr. B. R. Ambedkar National Institute of Technology, Jalandhar, Punjab, India, December 8-12, 2025. [Google Scholar]

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