(1) Pan-Pan Shi, Fei Huang, Wen-Ling Wang. d* (2380) and its partners in a diquark model. Eur. Phys. J. C 79, 314 (2019).
(2) Pan-Pan Shi, Fei Huang, Wen-Ling Wang. Hidden charm tetraquark states in a diquark model. Phys. Rev. D 103, 094038 (2021).
(3) Pan-Pan Shi, Fei Huang, Wen-Ling Wang. Hidden charm pentaquark states in a diquark model. Eur. Phys. J. A 57, 237 (2021).
(4) Pan-Pan Shi, Zhen-Hua Zhang, Feng-Kun Guo, Zhi Yang. D+D- hadronic atom and its production in pp and pp- collisions. Phys. Rev. D 105, 034024 (2021).
(5) Pan-Pan Shi, Feng-Kun Guo, Zhi Yang. Semi-inclusive electroproduction of hidden-charm and double-charm hadronic molecules. Phys. Rev. D 106, 114026 (2022).
(6) Zhao-Sai Jia, Mao-Jun Yan, Zhen-Hua Zhang, Pan-Pan Shi, Gang Li, Feng-Kun Guo. Hadronic decays of the heavy-quark-spin molecular partner of Tcc+. Phys. Rev. D 107, 074029 (2023).
(7) Pan-Pan Shi, Jorgivan M. Dias, Feng-Kun Guo. Radiative decays of the spin-2 partner of X(3872). Phys. Lett. B 843, 137987 (2023).
(8) Pan-Pan Shi, Vadim Baru, Feng-Kun Guo, Christoph Hanhart, Alexey Nefediev. Production of the X(4014) as the Spin-2 Partner of X(3872) in e+e- Collisions. Chin. Phys. Lett. 41, 031301 (2024).
(9) Zhao-Sai Jia, Gang Li, Pan-Pan Shi, Zhen-Hua Zhang, Production of hidden-heavy and double-heavy molecules at the Z factory of CEPC. Phy. Rev. D 110, 014031 (2024).
(10) Pan-Pan Shi, F. Gil-Dominguez, R. Molina. Meng-Lin Du. Pole analysis for the D*Kbar-DK*bar coupled-channel system. arXiv: 2408.01197.
(11) Pan-Pan Shi, Miguel Albaladejo, Meng-Lin Du, Feng-Kun Guo, Juan Nieves. P-wave Charmonium contribution to hidden-charm states from lattice QCD. arXiv: 2410.19563.
(12) Pan-Pan Shi, Feng-Kun Guo, Liuming Liu, Jia-Jun Wu, Hanyang Xing. Low energy DD scattering in lattice QCD. in preparation (2025).
(13) Pan-Pan Shi, Miguel Albaladejo, Juan Nieves. Femtoscopic study of Zc(3900) and Zcs(3985). in preparation (2025).
I collaborate with Juan Nieves to explore the exotic states in the effective field theory framework.
I collaborated with Raquel Molina to explore the possible molecules in the D*Kbar-DK*bar coupled-channel system by solving the integral Lippmann-Schwinger equation, considering the three-body dynamics.