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Spectrum of the molecular pentaquarks

Published 21 Dec 2023 in hep-ph, hep-ex, and nucl-th | (2312.13591v2)

Abstract: We investigate the mass spectrum of the molecular pentaquarks composed of a baryon and a meson. We establish the underlying relations among the near-threshold interactions of the molecular tetraquark and pentaquark systems. We find the existence of the molecule candidates in the $\Sigma_c\bar{D}{(\ast)}$, $DD\ast$, and $D\bar{D}\ast$ systems indicates a substantial presence of the hadronic molecules in the {\it heavy} baryon plus {\it heavy} meson systems ({\it heavy} refers to the hadrons with the $c$ and/or $s$ quarks). We make an exhaustive prediction of the possible bound/virtual molecular states in the systems: $\Sigma_{c}{(\ast)}\bar{D}{(\ast)}$, $\Sigma_{c}{(\ast)}D{(\ast)}$, $\Xi_{c}{(\prime,\ast)}\bar{D}{(\ast)}$, $\Xi_{c}{(\prime,\ast)}D{(\ast)}$, $\Sigma_{c}{(\ast)}K{\ast}$, $\Sigma_{c}{(\ast)}\bar{K}{\ast}$, $\Xi_{c}{(\prime,\ast)}K{\ast}$, $\Xi_{c}{(\prime,\ast)}\bar{K}{\ast}$, $\Xi_{cc}{(\ast)}\bar{D}{(\ast)}$, $\Xi_{cc}{(\ast)}D{(\ast)}$, $\Xi_{cc}{(\ast)}K{\ast}$, $\Xi_{cc}{(\ast)}\bar{K}{\ast}$, $\Sigma{(\ast)}\bar{D}{(\ast)}$, $\Sigma{(\ast)}D{(\ast)}$, $\Xi{(\ast)}\bar{D}{(\ast)}$, $\Xi{(\ast)}D{(\ast)}$, $\Sigma{(\ast)} K\ast$, $\Sigma{(\ast)} \bar{K}\ast$, $\Xi{(\ast)} K\ast$, $\Xi{(\ast)} \bar{K}\ast$. Hunting for the predicted states in experiments will significantly deepen our understanding of the formation mechanism of the hadronic molecules, and shed light on the manifestation of flavor symmetry in the low-energy residual strong interactions.

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References (81)
  1. R. L. Workman et al. (Particle Data Group), Review of Particle Physics, PTEP 2022, 083C01 (2022).
  2. S. K. Choi et al. (Belle), Observation of a narrow charmonium-like state in exclusive B±→K±⁢π+⁢π−⁢J/ψ→superscript𝐵plus-or-minussuperscript𝐾plus-or-minussuperscript𝜋superscript𝜋𝐽𝜓B^{\pm}\to K^{\pm}\pi^{+}\pi^{-}J/\psiitalic_B start_POSTSUPERSCRIPT ± end_POSTSUPERSCRIPT → italic_K start_POSTSUPERSCRIPT ± end_POSTSUPERSCRIPT italic_π start_POSTSUPERSCRIPT + end_POSTSUPERSCRIPT italic_π start_POSTSUPERSCRIPT - end_POSTSUPERSCRIPT italic_J / italic_ψ decays, Phys. Rev. Lett. 91, 262001 (2003), arXiv:hep-ex/0309032 .
  3. R. F. Lebed, R. E. Mitchell, and E. S. Swanson, Heavy-Quark QCD Exotica, Prog. Part. Nucl. Phys. 93, 143 (2017), arXiv:1610.04528 [hep-ph] .
  4. A. Esposito, A. Pilloni, and A. D. Polosa, Multiquark Resonances, Phys. Rept. 668, 1 (2017), arXiv:1611.07920 [hep-ph] .
  5. G. Yang, J. Ping, and J. Segovia, Tetra- and penta-quark structures in the constituent quark model, Symmetry 12, 1869 (2020a), arXiv:2009.00238 [hep-ph] .
  6. R. Aaij et al. (LHCb), Observation of J/ψ⁢p𝐽𝜓𝑝J/\psi pitalic_J / italic_ψ italic_p Resonances Consistent with Pentaquark States in Λb0→J/ψ⁢K−⁢p→superscriptsubscriptΛ𝑏0𝐽𝜓superscript𝐾𝑝\Lambda_{b}^{0}\to J/\psi K^{-}proman_Λ start_POSTSUBSCRIPT italic_b end_POSTSUBSCRIPT start_POSTSUPERSCRIPT 0 end_POSTSUPERSCRIPT → italic_J / italic_ψ italic_K start_POSTSUPERSCRIPT - end_POSTSUPERSCRIPT italic_p Decays, Phys. Rev. Lett. 115, 072001 (2015), arXiv:1507.03414 [hep-ex] .
  7. C. W. Xiao, J. Nieves, and E. Oset, Heavy quark spin symmetric molecular states from D¯(*)⁢Σc(*)superscript¯𝐷superscriptsubscriptΣ𝑐{\bar{D}}^{(*)}\Sigma_{c}^{(*)}over¯ start_ARG italic_D end_ARG start_POSTSUPERSCRIPT ( * ) end_POSTSUPERSCRIPT roman_Σ start_POSTSUBSCRIPT italic_c end_POSTSUBSCRIPT start_POSTSUPERSCRIPT ( * ) end_POSTSUPERSCRIPT and other coupled channels in the light of the recent LHCb pentaquarks, Phys. Rev. D 100, 014021 (2019a), arXiv:1904.01296 [hep-ph] .
  8. Z.-H. Guo and J. A. Oller, Anatomy of the newly observed hidden-charm pentaquark states: Pc⁢(4312)subscript𝑃𝑐4312P_{c}(4312)italic_P start_POSTSUBSCRIPT italic_c end_POSTSUBSCRIPT ( 4312 ), Pc⁢(4440)subscript𝑃𝑐4440P_{c}(4440)italic_P start_POSTSUBSCRIPT italic_c end_POSTSUBSCRIPT ( 4440 ) and Pc⁢(4457)subscript𝑃𝑐4457P_{c}(4457)italic_P start_POSTSUBSCRIPT italic_c end_POSTSUBSCRIPT ( 4457 ), Phys. Lett. B 793, 144 (2019), arXiv:1904.00851 [hep-ph] .
  9. T. J. Burns and E. S. Swanson, Molecular interpretation of the Pcsubscript𝑃𝑐P_{c}italic_P start_POSTSUBSCRIPT italic_c end_POSTSUBSCRIPT(4440) and Pcsubscript𝑃𝑐P_{c}italic_P start_POSTSUBSCRIPT italic_c end_POSTSUBSCRIPT(4457) states, Phys. Rev. D 100, 114033 (2019), arXiv:1908.03528 [hep-ph] .
  10. B. Wang, L. Meng, and S.-L. Zhu, Hidden-charm and hidden-bottom molecular pentaquarks in chiral effective field theory, JHEP 11, 108, arXiv:1909.13054 [hep-ph] .
  11. C. W. Xiao, J. Nieves, and E. Oset, Prediction of hidden charm strange molecular baryon states with heavy quark spin symmetry, Phys. Lett. B 799, 135051 (2019c), arXiv:1906.09010 [hep-ph] .
  12. B. Wang, L. Meng, and S.-L. Zhu, Spectrum of the strange hidden charm molecular pentaquarks in chiral effective field theory, Phys. Rev. D 101, 034018 (2020b), arXiv:1912.12592 [hep-ph] .
  13. R. Aaij et al. (LHCb), Evidence of a J/ψ⁢Λ𝐽𝜓ΛJ/\psi\Lambdaitalic_J / italic_ψ roman_Λ structure and observation of excited Ξ−superscriptΞ\Xi^{-}roman_Ξ start_POSTSUPERSCRIPT - end_POSTSUPERSCRIPT states in the Ξb−→J/ψ⁢Λ⁢K−→subscriptsuperscriptΞ𝑏𝐽𝜓Λsuperscript𝐾\Xi^{-}_{b}\to J/\psi\Lambda K^{-}roman_Ξ start_POSTSUPERSCRIPT - end_POSTSUPERSCRIPT start_POSTSUBSCRIPT italic_b end_POSTSUBSCRIPT → italic_J / italic_ψ roman_Λ italic_K start_POSTSUPERSCRIPT - end_POSTSUPERSCRIPT decay, Sci. Bull. 66, 1278 (2021), arXiv:2012.10380 [hep-ex] .
  14. R. Aaij et al. (LHCb), Observation of a J/ψ⁢Λ𝐽𝜓ΛJ/\psi\Lambdaitalic_J / italic_ψ roman_Λ Resonance Consistent with a Strange Pentaquark Candidate in B−→J/ψ⁢Λ⁢p¯→superscript𝐵𝐽𝜓Λ¯𝑝B^{-}\to J/\psi\Lambda\bar{p}italic_B start_POSTSUPERSCRIPT - end_POSTSUPERSCRIPT → italic_J / italic_ψ roman_Λ over¯ start_ARG italic_p end_ARG Decays, Phys. Rev. Lett. 131, 031901 (2023a), arXiv:2210.10346 [hep-ex] .
  15. Z.-G. Wang, Analysis of the Pc⁢s⁢(4459)subscript𝑃𝑐𝑠4459P_{cs}(4459)italic_P start_POSTSUBSCRIPT italic_c italic_s end_POSTSUBSCRIPT ( 4459 ) as the hidden-charm pentaquark state with QCD sum rules, Int. J. Mod. Phys. A 36, 2150071 (2021), arXiv:2011.05102 [hep-ph] .
  16. M.-Z. Liu, Y.-W. Pan, and L.-S. Geng, Can discovery of hidden charm strange pentaquark states help determine the spins of Pc⁢(4440)subscript𝑃𝑐4440P_{c}(4440)italic_P start_POSTSUBSCRIPT italic_c end_POSTSUBSCRIPT ( 4440 ) and Pc⁢(4457)subscript𝑃𝑐4457P_{c}(4457)italic_P start_POSTSUBSCRIPT italic_c end_POSTSUBSCRIPT ( 4457 ) ?, Phys. Rev. D 103, 034003 (2021), arXiv:2011.07935 [hep-ph] .
  17. X.-K. Dong, F.-K. Guo, and B.-S. Zou, A survey of heavy-antiheavy hadronic molecules, Progr. Phys. 41, 65 (2021a), arXiv:2101.01021 [hep-ph] .
  18. J.-T. Zhu, L.-Q. Song, and J. He, Pc⁢s⁢(4459)subscript𝑃𝑐𝑠4459P_{cs}(4459)italic_P start_POSTSUBSCRIPT italic_c italic_s end_POSTSUBSCRIPT ( 4459 ) and other possible molecular states from Ξc(*)⁢D¯(*)superscriptsubscriptΞ𝑐superscript¯𝐷\Xi_{c}^{(*)}\bar{D}^{(*)}roman_Ξ start_POSTSUBSCRIPT italic_c end_POSTSUBSCRIPT start_POSTSUPERSCRIPT ( * ) end_POSTSUPERSCRIPT over¯ start_ARG italic_D end_ARG start_POSTSUPERSCRIPT ( * ) end_POSTSUPERSCRIPT and Ξc′⁢D¯(*)subscriptsuperscriptΞ′𝑐superscript¯𝐷\Xi^{\prime}_{c}\bar{D}^{(*)}roman_Ξ start_POSTSUPERSCRIPT ′ end_POSTSUPERSCRIPT start_POSTSUBSCRIPT italic_c end_POSTSUBSCRIPT over¯ start_ARG italic_D end_ARG start_POSTSUPERSCRIPT ( * ) end_POSTSUPERSCRIPT interactions, Phys. Rev. D 103, 074007 (2021), arXiv:2101.12441 [hep-ph] .
  19. C. W. Xiao, J. J. Wu, and B. S. Zou, Molecular nature of Pc⁢s⁢(4459)subscript𝑃𝑐𝑠4459P_{cs}(4459)italic_P start_POSTSUBSCRIPT italic_c italic_s end_POSTSUBSCRIPT ( 4459 ) and its heavy quark spin partners, Phys. Rev. D 103, 054016 (2021), arXiv:2102.02607 [hep-ph] .
  20. X. Hu and J. Ping, Investigation of hidden-charm pentaquarks with strangeness S=−1𝑆1S=-1italic_S = - 1, Eur. Phys. J. C 82, 118 (2022), arXiv:2109.09972 [hep-ph] .
  21. K. Chen, B. Wang, and S.-L. Zhu, Heavy flavor molecular states with strangeness, Phys. Rev. D 105, 096004 (2022b), arXiv:2112.13203 [hep-ph] .
  22. R. Chen and X. Liu, Mass behavior of hidden-charm open-strange pentaquarks inspired by the established Pcsubscript𝑃𝑐P_{c}italic_P start_POSTSUBSCRIPT italic_c end_POSTSUBSCRIPT molecular states, Phys. Rev. D 105, 014029 (2022), arXiv:2201.07603 [hep-ph] .
  23. K. Chen, Z.-Y. Lin, and S.-L. Zhu, Comparison between the PψNsuperscriptsubscript𝑃𝜓𝑁P_{\psi}^{N}italic_P start_POSTSUBSCRIPT italic_ψ end_POSTSUBSCRIPT start_POSTSUPERSCRIPT italic_N end_POSTSUPERSCRIPT and Pψ⁢sΛsuperscriptsubscript𝑃𝜓𝑠ΛP_{\psi s}^{\Lambda}italic_P start_POSTSUBSCRIPT italic_ψ italic_s end_POSTSUBSCRIPT start_POSTSUPERSCRIPT roman_Λ end_POSTSUPERSCRIPT systems, Phys. Rev. D 106, 116017 (2022c), arXiv:2211.05558 [hep-ph] .
  24. R. Chen, Strong decays of the newly Pc⁢s⁢(4459)subscript𝑃𝑐𝑠4459P_{cs}(4459)italic_P start_POSTSUBSCRIPT italic_c italic_s end_POSTSUBSCRIPT ( 4459 ) as a strange hidden-charm Ξc⁢D¯*subscriptΞ𝑐superscript¯𝐷\Xi_{c}{\bar{D}}^{*}roman_Ξ start_POSTSUBSCRIPT italic_c end_POSTSUBSCRIPT over¯ start_ARG italic_D end_ARG start_POSTSUPERSCRIPT * end_POSTSUPERSCRIPT molecule, Eur. Phys. J. C 81, 122 (2021), arXiv:2101.10614 [hep-ph] .
  25. F. Yang, Y. Huang, and H. Q. Zhu, Strong decays of the Pc⁢s⁢(4459)subscript𝑃𝑐𝑠4459P_{cs}(4459)italic_P start_POSTSUBSCRIPT italic_c italic_s end_POSTSUBSCRIPT ( 4459 ) as a Ξc⁢D¯*subscriptΞ𝑐superscript¯𝐷\Xi_{c}\bar{D}^{*}roman_Ξ start_POSTSUBSCRIPT italic_c end_POSTSUBSCRIPT over¯ start_ARG italic_D end_ARG start_POSTSUPERSCRIPT * end_POSTSUPERSCRIPT molecule, Sci. China Phys. Mech. Astron. 64, 121011 (2021), arXiv:2107.13267 [hep-ph] .
  26. K. Azizi, Y. Sarac, and H. Sundu, Investigation of hidden-charm double strange pentaquark candidate Pc⁢s⁢ssubscript𝑃𝑐𝑠𝑠P_{css}italic_P start_POSTSUBSCRIPT italic_c italic_s italic_s end_POSTSUBSCRIPT via its mass and strong decays, Eur. Phys. J. C 82, 543 (2022), arXiv:2112.15543 [hep-ph] .
  27. M.-L. Du, Z.-H. Guo, and J. A. Oller, Insights into the nature of the Pc⁢s⁢(4459)subscript𝑃𝑐𝑠4459P_{cs}(4459)italic_P start_POSTSUBSCRIPT italic_c italic_s end_POSTSUBSCRIPT ( 4459 ), Phys. Rev. D 104, 114034 (2021), arXiv:2109.14237 [hep-ph] .
  28. L. Meng, B. Wang, and S.-L. Zhu, Double thresholds distort the line shapes of the Pψ⁢sΛ⁢(4338)0superscriptsubscript𝑃𝜓𝑠Λsuperscript43380P_{\psi s}^{\Lambda}(4338)^{0}italic_P start_POSTSUBSCRIPT italic_ψ italic_s end_POSTSUBSCRIPT start_POSTSUPERSCRIPT roman_Λ end_POSTSUPERSCRIPT ( 4338 ) start_POSTSUPERSCRIPT 0 end_POSTSUPERSCRIPT resonance, Phys. Rev. D 107, 014005 (2023b), arXiv:2208.03883 [hep-ph] .
  29. T. J. Burns and E. S. Swanson, The LHCb state Pψ⁢sΛ⁢(4338)superscriptsubscript𝑃𝜓𝑠Λ4338P_{\psi s}^{\Lambda}(4338)italic_P start_POSTSUBSCRIPT italic_ψ italic_s end_POSTSUBSCRIPT start_POSTSUPERSCRIPT roman_Λ end_POSTSUPERSCRIPT ( 4338 ) as a triangle singularity, Phys. Lett. B 838, 137715 (2023), arXiv:2208.05106 [hep-ph] .
  30. S. X. Nakamura and J. J. Wu, Pole determination of Pψ⁢sΛ⁢(4338)superscriptsubscript𝑃𝜓𝑠Λ4338P_{\psi s}^{\Lambda}(4338)italic_P start_POSTSUBSCRIPT italic_ψ italic_s end_POSTSUBSCRIPT start_POSTSUPERSCRIPT roman_Λ end_POSTSUPERSCRIPT ( 4338 ) and possible Pψ⁢sΛ⁢(4255)superscriptsubscript𝑃𝜓𝑠Λ4255P_{\psi s}^{\Lambda}(4255)italic_P start_POSTSUBSCRIPT italic_ψ italic_s end_POSTSUBSCRIPT start_POSTSUPERSCRIPT roman_Λ end_POSTSUPERSCRIPT ( 4255 ) in B−→J/ψ⁢Λ⁢p¯→superscript𝐵𝐽𝜓Λ¯𝑝B^{-}\to J/\psi\Lambda\bar{p}italic_B start_POSTSUPERSCRIPT - end_POSTSUPERSCRIPT → italic_J / italic_ψ roman_Λ over¯ start_ARG italic_p end_ARG, Phys. Rev. D 108, L011501 (2023), arXiv:2208.11995 [hep-ph] .
  31. Q. Wu, D.-Y. Chen, and R. Ji, Production of Pc⁢s⁢(4459)subscript𝑃𝑐𝑠4459P_{cs}(4459)italic_P start_POSTSUBSCRIPT italic_c italic_s end_POSTSUBSCRIPT ( 4459 ) from ΞbsubscriptΞ𝑏\Xi_{b}roman_Ξ start_POSTSUBSCRIPT italic_b end_POSTSUBSCRIPT Decay, Chin. Phys. Lett. 38, 071301 (2021), arXiv:2103.05257 [hep-ph] .
  32. C. Cheng, F. Yang, and Y. Huang, Searching for strange hidden-charm pentaquark state Pc⁢s⁢(4459)subscript𝑃𝑐𝑠4459P_{cs}(4459)italic_P start_POSTSUBSCRIPT italic_c italic_s end_POSTSUBSCRIPT ( 4459 ) in γ⁢p→K+⁢Pc⁢s⁢(4459)→𝛾𝑝superscript𝐾subscript𝑃𝑐𝑠4459\gamma p\to K^{+}P_{cs}(4459)italic_γ italic_p → italic_K start_POSTSUPERSCRIPT + end_POSTSUPERSCRIPT italic_P start_POSTSUBSCRIPT italic_c italic_s end_POSTSUBSCRIPT ( 4459 ) reaction, Phys. Rev. D 104, 116007 (2021), arXiv:2110.04746 [hep-ph] .
  33. E. Y. Paryev, On the possibility of testing the two-peak structure of the LHCb hidden-charm strange pentaquark Pc⁢s⁢(4459)0subscript𝑃𝑐𝑠superscript44590P_{cs}(4459)^{0}italic_P start_POSTSUBSCRIPT italic_c italic_s end_POSTSUBSCRIPT ( 4459 ) start_POSTSUPERSCRIPT 0 end_POSTSUPERSCRIPT in near-threshold antikaon-induced charmonium production on protons and nuclei, Nucl. Phys. A 1037, 122687 (2023), arXiv:2304.03978 [hep-ph] .
  34. U. Özdem, Magnetic dipole moments of the hidden-charm pentaquark states: Pc⁢(4440)subscript𝑃𝑐4440P_{c}(4440)italic_P start_POSTSUBSCRIPT italic_c end_POSTSUBSCRIPT ( 4440 ), Pc⁢(4457)subscript𝑃𝑐4457P_{c}(4457)italic_P start_POSTSUBSCRIPT italic_c end_POSTSUBSCRIPT ( 4457 ) and Pc⁢s⁢(4459)subscript𝑃𝑐𝑠4459P_{cs}(4459)italic_P start_POSTSUBSCRIPT italic_c italic_s end_POSTSUBSCRIPT ( 4459 ), Eur. Phys. J. C 81, 277 (2021), arXiv:2102.01996 [hep-ph] .
  35. F. Gao and H.-S. Li, Magnetic moments of hidden-charm strange pentaquark states, Chin. Phys. C 46, 123111 (2022), arXiv:2112.01823 [hep-ph] .
  36. U. Özdem, Investigation of magnetic moment of Pc⁢s⁢(4338)subscript𝑃𝑐𝑠4338P_{cs}(4338)italic_P start_POSTSUBSCRIPT italic_c italic_s end_POSTSUBSCRIPT ( 4338 ) and Pc⁢s⁢(4459)subscript𝑃𝑐𝑠4459P_{cs}(4459)italic_P start_POSTSUBSCRIPT italic_c italic_s end_POSTSUBSCRIPT ( 4459 ) pentaquark states, Phys. Lett. B 836, 137635 (2023), arXiv:2208.07684 [hep-ph] .
  37. R. Aaij et al. (LHCb), A model-independent study of resonant structure in B+→D+⁢D−⁢K+→superscript𝐵superscript𝐷superscript𝐷superscript𝐾B^{+}\to D^{+}D^{-}K^{+}italic_B start_POSTSUPERSCRIPT + end_POSTSUPERSCRIPT → italic_D start_POSTSUPERSCRIPT + end_POSTSUPERSCRIPT italic_D start_POSTSUPERSCRIPT - end_POSTSUPERSCRIPT italic_K start_POSTSUPERSCRIPT + end_POSTSUPERSCRIPT decays, Phys. Rev. Lett. 125, 242001 (2020a), arXiv:2009.00025 [hep-ex] .
  38. R. Aaij et al. (LHCb), Amplitude analysis of the B+→D+⁢D−⁢K+→superscript𝐵superscript𝐷superscript𝐷superscript𝐾B^{+}\to D^{+}D^{-}K^{+}italic_B start_POSTSUPERSCRIPT + end_POSTSUPERSCRIPT → italic_D start_POSTSUPERSCRIPT + end_POSTSUPERSCRIPT italic_D start_POSTSUPERSCRIPT - end_POSTSUPERSCRIPT italic_K start_POSTSUPERSCRIPT + end_POSTSUPERSCRIPT decay, Phys. Rev. D 102, 112003 (2020b), arXiv:2009.00026 [hep-ex] .
  39. R. Aaij et al. (LHCb), Observation of an exotic narrow doubly charmed tetraquark, Nature Phys. 18, 751 (2022a), arXiv:2109.01038 [hep-ex] .
  40. R. Aaij et al. (LHCb), Study of the doubly charmed tetraquark Tc⁢c+superscriptsubscript𝑇𝑐𝑐T_{cc}^{+}italic_T start_POSTSUBSCRIPT italic_c italic_c end_POSTSUBSCRIPT start_POSTSUPERSCRIPT + end_POSTSUPERSCRIPT, Nature Commun. 13, 3351 (2022b), arXiv:2109.01056 [hep-ex] .
  41. R. Aaij et al. (LHCb), First Observation of a Doubly Charged Tetraquark and Its Neutral Partner, Phys. Rev. Lett. 131, 041902 (2023b), arXiv:2212.02716 [hep-ex] .
  42. R. Aaij et al. (LHCb), Amplitude analysis of B0→D¯0⁢Ds+⁢π−→superscript𝐵0superscript¯𝐷0superscriptsubscript𝐷𝑠superscript𝜋B^{0}\to\bar{D}^{0}D_{s}^{+}\pi^{-}italic_B start_POSTSUPERSCRIPT 0 end_POSTSUPERSCRIPT → over¯ start_ARG italic_D end_ARG start_POSTSUPERSCRIPT 0 end_POSTSUPERSCRIPT italic_D start_POSTSUBSCRIPT italic_s end_POSTSUBSCRIPT start_POSTSUPERSCRIPT + end_POSTSUPERSCRIPT italic_π start_POSTSUPERSCRIPT - end_POSTSUPERSCRIPT and B+→D−⁢Ds+⁢π+→superscript𝐵superscript𝐷superscriptsubscript𝐷𝑠superscript𝜋B^{+}\to D^{-}D_{s}^{+}\pi^{+}italic_B start_POSTSUPERSCRIPT + end_POSTSUPERSCRIPT → italic_D start_POSTSUPERSCRIPT - end_POSTSUPERSCRIPT italic_D start_POSTSUBSCRIPT italic_s end_POSTSUBSCRIPT start_POSTSUPERSCRIPT + end_POSTSUPERSCRIPT italic_π start_POSTSUPERSCRIPT + end_POSTSUPERSCRIPT decays, Phys. Rev. D 108, 012017 (2023c), arXiv:2212.02717 [hep-ex] .
  43. L. Meng, B. Wang, and S.-L. Zhu, Σc⁢NsubscriptΣ𝑐𝑁\Sigma_{c}Nroman_Σ start_POSTSUBSCRIPT italic_c end_POSTSUBSCRIPT italic_N interaction in chiral effective field theory, Phys. Rev. C 101, 064002 (2020), arXiv:1912.09661 [nucl-th] .
  44. B. Wang, L. Meng, and S.-L. Zhu, D(∗)⁢Nsuperscript𝐷∗𝑁D^{(\ast)}Nitalic_D start_POSTSUPERSCRIPT ( ∗ ) end_POSTSUPERSCRIPT italic_N interaction and the structure of Σc⁢(2800)subscriptΣ𝑐2800\Sigma_{c}(2800)roman_Σ start_POSTSUBSCRIPT italic_c end_POSTSUBSCRIPT ( 2800 ) and Λc⁢(2940)subscriptΛ𝑐2940\Lambda_{c}(2940)roman_Λ start_POSTSUBSCRIPT italic_c end_POSTSUBSCRIPT ( 2940 ) in chiral effective field theory, Phys. Rev. D 101, 094035 (2020c), arXiv:2003.05688 [hep-ph] .
  45. K. Chen, B. Wang, and S.-L. Zhu, Exploration of the doubly charmed molecular pentaquarks, Phys. Rev. D 103, 116017 (2021b), arXiv:2102.05868 [hep-ph] .
  46. J. He and D.-Y. Chen, Molecular states from Σc(*)⁢D¯(*)−Λc⁢D¯(*)subscriptsuperscriptΣ𝑐superscript¯𝐷subscriptΛ𝑐superscript¯𝐷\Sigma^{(*)}_{c}\bar{D}^{(*)}-\Lambda_{c}\bar{D}^{(*)}roman_Σ start_POSTSUPERSCRIPT ( * ) end_POSTSUPERSCRIPT start_POSTSUBSCRIPT italic_c end_POSTSUBSCRIPT over¯ start_ARG italic_D end_ARG start_POSTSUPERSCRIPT ( * ) end_POSTSUPERSCRIPT - roman_Λ start_POSTSUBSCRIPT italic_c end_POSTSUBSCRIPT over¯ start_ARG italic_D end_ARG start_POSTSUPERSCRIPT ( * ) end_POSTSUPERSCRIPT interaction, Eur. Phys. J. C 79, 887 (2019), arXiv:1909.05681 [hep-ph] .
  47. Y. Shimizu and M. Harada, Hidden Charm Pentaquark Pc⁢(4380)subscript𝑃𝑐4380P_{c}(4380)italic_P start_POSTSUBSCRIPT italic_c end_POSTSUBSCRIPT ( 4380 ) and Doubly Charmed Baryon Ξc⁢c*⁢(4380)superscriptsubscriptΞ𝑐𝑐4380\Xi_{cc}^{*}(4380)roman_Ξ start_POSTSUBSCRIPT italic_c italic_c end_POSTSUBSCRIPT start_POSTSUPERSCRIPT * end_POSTSUPERSCRIPT ( 4380 ) as Hadronic Molecule States, Phys. Rev. D 96, 094012 (2017), arXiv:1708.04743 [hep-ph] .
  48. Z.-G. Wang, Analysis of the doubly heavy baryon states and pentaquark states with QCD sum rules, Eur. Phys. J. C 78, 826 (2018a), arXiv:1808.09820 [hep-ph] .
  49. W. Park, S. Cho, and S. H. Lee, Where is the stable pentaquark?, Phys. Rev. D 99, 094023 (2019), arXiv:1811.10911 [hep-ph] .
  50. G. Yang, J. Ping, and J. Segovia, Doubly Charmed Pentaquarks, Phys. Rev. D 101, 074030 (2020b), arXiv:2003.05253 [hep-ph] .
  51. X.-K. Dong, F.-K. Guo, and B.-S. Zou, A survey of heavy–heavy hadronic molecules, Commun. Theor. Phys. 73, 125201 (2021b), arXiv:2108.02673 [hep-ph] .
  52. C.-W. Shen, Y.-h. Lin, and U.-G. Meißner, Pc⁢cNsuperscriptsubscript𝑃𝑐𝑐𝑁P_{cc}^{N}italic_P start_POSTSUBSCRIPT italic_c italic_c end_POSTSUBSCRIPT start_POSTSUPERSCRIPT italic_N end_POSTSUPERSCRIPT states in a unitarized coupled-channel approach, Eur. Phys. J. C 83, 70 (2023), arXiv:2208.10865 [hep-ph] .
  53. F.-L. Wang and X. Liu, Surveying the mass spectra and the electromagnetic properties of the Ξc(′,*)⁢D(*)\Xi_{c}^{(\prime,*)}D^{(*)}roman_Ξ start_POSTSUBSCRIPT italic_c end_POSTSUBSCRIPT start_POSTSUPERSCRIPT ( ′ , * ) end_POSTSUPERSCRIPT italic_D start_POSTSUPERSCRIPT ( * ) end_POSTSUPERSCRIPT molecular pentaquarks,   (2023b), arXiv:2311.13968 [hep-ph] .
  54. B. Wang and S.-L. Zhu, How to understand the X⁢(2900)𝑋2900X(2900)italic_X ( 2900 )?, Eur. Phys. J. C 82, 419 (2022), arXiv:2107.09275 [hep-ph] .
  55. R. Chen and Q. Huang, Possible open charm molecular pentaquarks from Λc⁢K(∗)/Σc⁢K(∗)subscriptΛ𝑐superscript𝐾∗subscriptΣ𝑐superscript𝐾∗\Lambda_{c}K^{(\ast)}/\Sigma_{c}K^{(\ast)}roman_Λ start_POSTSUBSCRIPT italic_c end_POSTSUBSCRIPT italic_K start_POSTSUPERSCRIPT ( ∗ ) end_POSTSUPERSCRIPT / roman_Σ start_POSTSUBSCRIPT italic_c end_POSTSUBSCRIPT italic_K start_POSTSUPERSCRIPT ( ∗ ) end_POSTSUPERSCRIPT interactions, Phys. Rev. D 108, 054011 (2023), arXiv:2307.04168 [hep-ph] .
  56. R. Chen, A. Hosaka, and X. Liu, Searching for possible ΩcsubscriptΩ𝑐\Omega_{c}roman_Ω start_POSTSUBSCRIPT italic_c end_POSTSUBSCRIPT-like molecular states from meson-baryon interaction, Phys. Rev. D 97, 036016 (2018), arXiv:1711.07650 [hep-ph] .
  57. M. J. Savage and M. B. Wise, Spectrum of baryons with two heavy quarks, Phys. Lett. B 248, 177 (1990).
  58. S. Fleming and T. Mehen, Doubly heavy baryons, heavy quark-diquark symmetry and NRQCD, Phys. Rev. D 73, 034502 (2006), arXiv:hep-ph/0509313 .
  59. L. Meng and S.-L. Zhu, Light pseudoscalar meson and doubly charmed baryon scattering lengths with heavy diquark-antiquark symmetry, Phys. Rev. D 100, 014006 (2019), arXiv:1811.07320 [hep-ph] .
  60. R. Chen, A. Hosaka, and X. Liu, Prediction of triple-charm molecular pentaquarks, Phys. Rev. D 96, 114030 (2017b), arXiv:1711.09579 [hep-ph] .
  61. T. Asanuma, Y. Yamaguchi, and M. Harada, Analysis of D⁢D*𝐷superscript𝐷DD^{*}italic_D italic_D start_POSTSUPERSCRIPT * end_POSTSUPERSCRIPT and D¯(*)⁢Ξc⁢c(*)superscript¯𝐷superscriptsubscriptΞ𝑐𝑐\bar{D}^{(*)}\Xi_{cc}^{(*)}over¯ start_ARG italic_D end_ARG start_POSTSUPERSCRIPT ( * ) end_POSTSUPERSCRIPT roman_Ξ start_POSTSUBSCRIPT italic_c italic_c end_POSTSUBSCRIPT start_POSTSUPERSCRIPT ( * ) end_POSTSUPERSCRIPT molecule by one boson exchange model based on Heavy quark symmetry,   (2023), arXiv:2311.04695 [hep-ph] .
  62. Z.-G. Wang, Analysis of the triply-charmed pentaquark states with QCD sum rules, Eur. Phys. J. C 78, 300 (2018b), arXiv:1801.08419 [hep-ph] .
  63. C. Gignoux, B. Silvestre-Brac, and J. M. Richard, Possibility of Stable Multi-Quark Baryons, Phys. Lett. B 193, 323 (1987).
  64. H. J. Lipkin, New Possibilities for Exotic Hadrons: Anticharmed Strange Baryons, Phys. Lett. B 195, 484 (1987).
  65. J. Hofmann and M. F. M. Lutz, Coupled-channel study of crypto-exotic baryons with charm, Nucl. Phys. A 763, 90 (2005), arXiv:hep-ph/0507071 .
  66. N. Yalikun and B.-S. Zou, Anticharmed strange pentaquarks from the one-boson-exchange model, Phys. Rev. D 105, 094026 (2022), arXiv:2112.06426 [hep-ph] .
  67. M.-J. Yan, F.-Z. Peng, and M. Pavon Valderrama, Molecular charmed baryons and pentaquarks from light-meson exchange saturation,  (2023b), arXiv:2304.14855 [hep-ph] .
  68. R. Aaij et al. (LHCb), Observation of five new narrow Ωc0superscriptsubscriptΩ𝑐0\Omega_{c}^{0}roman_Ω start_POSTSUBSCRIPT italic_c end_POSTSUBSCRIPT start_POSTSUPERSCRIPT 0 end_POSTSUPERSCRIPT states decaying to Ξc+⁢K−superscriptsubscriptΞ𝑐superscript𝐾\Xi_{c}^{+}K^{-}roman_Ξ start_POSTSUBSCRIPT italic_c end_POSTSUBSCRIPT start_POSTSUPERSCRIPT + end_POSTSUPERSCRIPT italic_K start_POSTSUPERSCRIPT - end_POSTSUPERSCRIPT, Phys. Rev. Lett. 118, 182001 (2017), arXiv:1703.04639 [hep-ex] .
  69. G. Montaña, A. Feijoo, and A. Ramos, A meson-baryon molecular interpretation for some ΩcsubscriptΩ𝑐\Omega_{c}roman_Ω start_POSTSUBSCRIPT italic_c end_POSTSUBSCRIPT excited states, Eur. Phys. J. A 54, 64 (2018), arXiv:1709.08737 [hep-ph] .
  70. J. Nieves, R. Pavao, and L. Tolos, ΩcsubscriptΩ𝑐\Omega_{c}roman_Ω start_POSTSUBSCRIPT italic_c end_POSTSUBSCRIPT excited states within a SU(6)lsf×\mathrm{SU(6)}_{\mathrm{lsf}}\timesroman_SU ( 6 ) start_POSTSUBSCRIPT roman_lsf end_POSTSUBSCRIPT × HQSS model, Eur. Phys. J. C 78, 114 (2018), arXiv:1712.00327 [hep-ph] .
  71. Q. Xin, X.-S. Yang, and Z.-G. Wang, The singly charmed pentaquark molecular states via the QCD sum rules, Int. J. Mod. Phys. A 38, 2350123 (2023), arXiv:2307.08926 [hep-ph] .
  72. H. Gao, T. S. H. Lee, and V. Marinov, ϕitalic-ϕ\phiitalic_ϕ−--N𝑁Nitalic_N bound state, Phys. Rev. C 63, 022201 (2001), arXiv:nucl-th/0010042 .
  73. F. Huang, Z. Y. Zhang, and Y. W. Yu, N⁢ϕ𝑁italic-ϕN\phiitalic_N italic_ϕ state in chiral quark model, Phys. Rev. C 73, 025207 (2006), arXiv:nucl-th/0512079 .
  74. X. Liu, H. Huang, and J. Ping, Hidden strange pentaquark states in constituent quark models, Phys. Rev. C 98, 055203 (2018b), arXiv:1807.03195 [hep-ph] .
  75. U. Skerbis and S. Prelovsek, Nucleon-J/ψ𝐽𝜓J/\psiitalic_J / italic_ψ and nucleon-ηcsubscript𝜂𝑐\eta_{c}italic_η start_POSTSUBSCRIPT italic_c end_POSTSUBSCRIPT scattering in Pcsubscript𝑃𝑐P_{c}italic_P start_POSTSUBSCRIPT italic_c end_POSTSUBSCRIPT pentaquark channels from LQCD, Phys. Rev. D 99, 094505 (2019), arXiv:1811.02285 [hep-lat] .
  76. E. Oset and A. Ramos, Dynamically generated resonances from the vector octet-baryon octet interaction, Eur. Phys. J. A 44, 445 (2010), arXiv:0905.0973 [hep-ph] .
  77. H. Huang, X. Zhu, and J. Ping, Pcsubscript𝑃𝑐P_{c}italic_P start_POSTSUBSCRIPT italic_c end_POSTSUBSCRIPT-like pentaquarks in hidden strange sector, Phys. Rev. D 97, 094019 (2018), arXiv:1803.05267 [hep-ph] .
  78. P. Yang and W. Chen, QCD sum rule study for hidden-strange pentaquarks*, Chin. Phys. C 47, 013105 (2023), arXiv:2203.15616 [hep-ph] .
  79. R. F. Lebed, Do the Pc+superscriptsubscript𝑃𝑐P_{c}^{+}italic_P start_POSTSUBSCRIPT italic_c end_POSTSUBSCRIPT start_POSTSUPERSCRIPT + end_POSTSUPERSCRIPT pentaquarks have strange siblings?, Phys. Rev. D 92, 114030 (2015), arXiv:1510.06648 [hep-ph] .
  80. J.-J. Xie and F.-K. Guo, Triangular singularity and a possible ϕ⁢pitalic-ϕ𝑝\phi pitalic_ϕ italic_p resonance in the Λc+→π0⁢ϕ⁢p→subscriptsuperscriptΛ𝑐superscript𝜋0italic-ϕ𝑝\Lambda^{+}_{c}\to\pi^{0}\phi proman_Λ start_POSTSUPERSCRIPT + end_POSTSUPERSCRIPT start_POSTSUBSCRIPT italic_c end_POSTSUBSCRIPT → italic_π start_POSTSUPERSCRIPT 0 end_POSTSUPERSCRIPT italic_ϕ italic_p decay, Phys. Lett. B 774, 108 (2017), arXiv:1709.01416 [hep-ph] .
  81. B. Pal et al. (Belle), Search for Λc+→ϕ⁢p⁢π0→superscriptsubscriptΛ𝑐italic-ϕ𝑝superscript𝜋0\Lambda_{c}^{+}\to\phi p\pi^{0}roman_Λ start_POSTSUBSCRIPT italic_c end_POSTSUBSCRIPT start_POSTSUPERSCRIPT + end_POSTSUPERSCRIPT → italic_ϕ italic_p italic_π start_POSTSUPERSCRIPT 0 end_POSTSUPERSCRIPT and branching fraction measurement of Λc+→K−⁢π+⁢p⁢π0→superscriptsubscriptΛ𝑐superscript𝐾superscript𝜋𝑝superscript𝜋0\Lambda_{c}^{+}\to K^{-}\pi^{+}p\pi^{0}roman_Λ start_POSTSUBSCRIPT italic_c end_POSTSUBSCRIPT start_POSTSUPERSCRIPT + end_POSTSUPERSCRIPT → italic_K start_POSTSUPERSCRIPT - end_POSTSUPERSCRIPT italic_π start_POSTSUPERSCRIPT + end_POSTSUPERSCRIPT italic_p italic_π start_POSTSUPERSCRIPT 0 end_POSTSUPERSCRIPT, Phys. Rev. D 96, 051102 (2017), arXiv:1707.00089 [hep-ex] .
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