\begin{document}$ \Xi_{b} $\end{document} and \begin{document}$ \Lambda_{b} $\end{document} baryons such as \begin{document}$ \Lambda_{b}(6072) $\end{document}, \begin{document}$ \Lambda_{b}(6146) $\end{document}, \begin{document}$ \Lambda_{b}(6152) $\end{document}, \begin{document}$ \Xi_{b}(6227) $\end{document}, \begin{document}$ \Xi_{b}(6100) $\end{document}, \begin{document}$ \Xi_{b}(6327) $\end{document}, and \begin{document}$ \Xi_{b}(6333) $\end{document}. Motivated by these achievements, we systematically analyze the \begin{document}$ 1D $\end{document} and \begin{document}$ 2D $\end{document} states of \begin{document}$ \Xi_{b} $\end{document} and \begin{document}$ \Lambda_{b} $\end{document} baryons using the method of quantum chromodynamics sum rules. By constructing three types of interpolating currents, we calculate the masses and pole residues of these heavy baryons with different excitation modes: \begin{document}$ (L_{\rho},L_{\lambda})=(0,2) $\end{document}, \begin{document}$ (2,0) $\end{document}, and \begin{document}$ (1,1) $\end{document}. Subsequently, we decode the inner structures of \begin{document}$ \Lambda_{b}(6146) $\end{document}, \begin{document}$ \Lambda_{b}(6152) $\end{document}, \begin{document}$ \Xi_{b}(6327) $\end{document}, and \begin{document}$ \Xi_{b}(6333) $\end{document} and favor assigning these states as the \begin{document}$ 1D $\end{document} baryons with the quantum numbers \begin{document}$ (L_{\rho},L_{\lambda})=(0,2) $\end{document} and \begin{document}$ {3}/{2}^{+} $\end{document}, \begin{document}$ {5}/{2}^{+} $\end{document}, \begin{document}$ {3}/{2}^{+} $\end{document}, and \begin{document}${5}/{2}^{+} $\end{document}, respectively. In addition, the predictions for the masses and pole residues of the other \begin{document}$ 1D $\end{document} and \begin{document}$2D ~\Xi_{b}$\end{document} and \begin{document}$ \Lambda_{b} $\end{document} baryons in this paper will be useful for studying D-wave bottom baryons in the future."> 1<i>D </i>and 2<i>D</i> Ξ<sub><i>b</i></sub> and Λ<sub><i>b</i></sub> baryons -
  • [1]

    R. Aaijet al. (LHCb Collaboration), Phys. Rev. Lett.109, 172003 (2012)

  • [2]

    T. A. Aaltonenet al. (CDF Collaboration), Phys. Rev. D88, 071101 (2013)

  • [3]

    R. Aaijet al. (LHCb Collaboration), arXiv: 2002.05112v3[hep-ex](2020)

  • [4]

    K. Azizi, Y.Sarac, and H.Sundu, Phys. Rev. D102, 034007 (2020)

  • [5]

    R. Aaijet al.(LHCb Collaboration), Phys. Rev. Lett121, 072002 (2018)

  • [6]

    Bing Chen, Ke-Wei Wei, Xiang Liuet al., Phys. Rev. D98, 031502 (2018)

  • [7]

    Kai Lei Wang, Qi Fang Lü, and Xian Hui Zhong, Phys. Rev. D99, 014011 (2019)

  • [8]

    A. M. Sirunyanet al. (CMS Collaboration), Phys. Rev. Lett126, 252003 (2021)

  • [9]

    R. Aaijet al. (LHCb Collaboration), Phys. Rev. Lett.123, 152001 (2019)

  • [10]

    Bing Chen, Si-Qiang Luo, Xiang Liuet al., Phys. Rev. D100, 094032 (2019)

  • [11]

    H. M. Yanget al., arXiv: 1909.13575(2019)

  • [12]

    K. L. Wang, Q. F. Lü, and X. H. Zhong, Phys. Rev. D100, 114035 (2019), arXiv:1908.04622

  • [13]

    W. Liang, Q. F. Lü, and X. H. Zhong, Phys. Rev. D100, 054013 (2019), arXiv:1908.00223

  • [14]

    S. Capstick and N. Isgur, Phys. Rev. D 34, 2809 (1986); AIPConf. Proc. 132, 267(1985)

  • [15]

    D. Ebert, R. N. Faustov, and V. O. Galkin, Phys. Rev. D84, 014025 (2011)

  • [16]

    W. Roberts and M. Pervin, Int. J. Mod. Phys. A23, 2817 (2008)

  • [17]

    B. Chen, K.-W. Wei, and A. Zhang, Eur. Phys. J. A51, 82 (2015)

  • [18]

    H. J. Muet al. (LHCb Collaboration), Beauty-hadron spectroscopy at LHCb, EPS-HEP Conference 2021(2021), arXiv: 2110.04497

  • [19]

    L. A. Copley, N. Isgur, and G. Karl, Phys. Rev. D20, 768 (1979);23, 817(E)(1981)

  • [20]

    K. Maltman and N. Isgur, Phys. Rev. D22, 1701 (1980)

  • [21]

    D. Ebert, R. N. Faustov, and V. O. Galkin, Phys. Rev. D72, 034026 (2005)

  • [22]

    D. Ebert, R. N. Faustov, and V. O. Galkin, Phys. Lett. B659, 612 (2008)

  • [23]

    H. Garcilazo, J. Vijande, and A. Valcarce, J. Phys. G34, 961 (2007)

  • [24]

    A. Valcarce, H. Garcilazo, and J. Vijande, Eur. Phys. J.A37, 217 (2008)

  • [25]

    T. Yoshida, E. Hiyama, A. Hosakaet al., Phys. Rev. D92, 114029 (2015)

  • [26]

    M. Karliner and J. L. Rosner, Phys. Rev. D92, 074026 (2015)

  • [27]

    K. Thakkar, Z. Shah, A. K. Raiet al., Nucl. Phys. A965, 57 (2017)

  • [28]

    Z. Shah, K. Thakkar, A. K. Raiet al., Chin. Phys. C40, 123102 (2016)

  • [29]

    Z. Shah, K. Thakkar, A. Kumar Raiet al., Eur. Phys. J. A52, 313 (2016)

  • [30]

    F. Hussain, J. G. Korner, and S. Tawfiq, Phys. Rev. D61, 114003 (2000)

  • [31]

    M. A. Ivanov, J. G. Korner, and V. E. Lyubovitskij, Phys.Lett. B448, 143 (1999)

  • [32]

    M. A. Ivanov, J. G. Korner, V. E. Lyubovitskijet al., Phys. Rev. D60, 094002 (1999)

  • [33]

    C. Albertus, E. Hernandez, J. Nieveset al., Phys. Rev. D72, 094022 (2005)

  • [34]

    S. Migura, D. Merten, B. Metschet al., Eur. Phys. J.A28, 41 (2006)

  • [35]

    X. H. Zhong and Q. Zhao, Phys. Rev. D77, 074008 (2008)

  • [36]

    E. Hernandez and J. Nieves, Phys. Rev. D84, 057902 (2011)

  • [37]

    L. H. Liu, L. Y. Xiao, and X. H. Zhong, Phys. Rev. D86, 034024 (2012)

  • [38]

    B. Chen, K. W. Wei, X. Liuet al., Eur. Phys. J. C77, 154 (2017)

  • [39]

    B. Chen and X. Liu, Phys. Rev. D98, 074032 (2018)

  • [40]

    H. Nagahiro, S. Yasui, A. Hosakaet al., Phys. Rev. D95, 014023 (2017)

  • [41]

    Y. X. Yao, K. L. Wang, and X. H. Zhong, Phys. Rev. D98, 076015 (2018)

  • [42]

    M. Q. Huang, Y. B. Dai, and C. S. Huang, Phys. Rev. D 52, 3986(1995); 55, 7317(E)(1997).

  • [43]

    M. C. Banuls, A. Pich, and I. Scimemi, Phys. Rev. D61, 094009 (2000)

  • [44]

    H. Y. Cheng and C. K. Chua, Phys. Rev. D75, 014006 (2007)

  • [45]

    N. Jiang, X. L. Chen, and S. L. Zhu, Phys. Rev. D92, 054017 (2015)

  • [46]

    H. Y. Cheng and C. K. Chua, Phys. Rev. D92, 074014 (2015)

  • [47]

    Y. Kawakami and M. Harada, Phys. Rev. D99, 094016 (2019)

  • [48]

    C. Chen, X. L. Chen, X. Liuet al., Phys. Rev. D75, 094017 (2007)

  • [49]

    D. D. Ye, Z. Zhao, and A. Zhang, Phys. Rev. D96, 114009 (2017)

  • [50]

    D. D. Ye, Z. Zhao, and A. Zhang, Phys. Rev. D96, 114003 (2017)

  • [51]

    B. Chen, X. Liu, and A. Zhang, Phys. Rev. D95, 074022 (2017)

  • [52]

    P. Yang, J. J. Guo, and A. Zhang, Phys. Rev. D99, 034018 (2019)

  • [53]

    J. J. Guo, P. Yang, and A. Zhang, Phys. Rev. D100, 014001 (2019)

  • [54]

    Q. F. Lü and X. H. Zhong, Phys. Rev. D101, 014017 (2020)

  • [55]

    M. Padmanath, R. G. Edwards, N. Mathuret al., arXiv: 1311.4806(2013)

  • [56]

    H. Bahtiyar, K. U. Can, G. Erkolet al., Phys. Lett. B747, 281 (2015)

  • [57]

    P. Perez-Rubio, S. Collins, and G. S. Bali, Phys. Rev. D92, 034504 (2015)

  • [58]

    H. Bahtiyar, K. U. Can, G. Erkolet al., Phys. Lett. B772, 121 (2017)

  • [59]

    S. L. Zhu and Y. B. Dai, Phys. Rev. D59, 114015 (1999)

  • [60]

    S. S. Agaev, K. Azizi, and H. Sundu, Phys. Rev. D96, 094011 (2017)

  • [61]

    H. X. Chen, Q. Mao, W. Chenet al., Phys. Rev. D95, 094008 (2017)

  • [62]

    Z. G. Wang, Phys. Rev. D81, 036002 (2010)

  • [63]

    Z. G. Wang, Eur. Phys. J. A44, 105 (2010)

  • [64]

    T. M. Aliev, K. Azizi, and H. Sundu, Eur. Phys. J. C75, 14 (2015)

  • [65]

    T. M. Aliev, T. Barakat, and M. Savci, Phys. Rev. D93, 056007 (2016)

  • [66]

    T. M. Aliev, K. Azizi, Y. Saracet al., Phys. Rev. D99, 094003 (2019)

  • [67]

    S. L. Zhu, Phys. Rev. D61, 114019 (2000)

  • [68]

    Z. G. Wang, Eur. Phys. J. A47, 81 (2011)

  • [69]

    Q. Mao, H. X. Chen, W. Chenet al., Phys. Rev. D92, 114007 (2015)

  • [70]

    H. X. Chen, Q. Mao, A. Hosakaet al., Phys. Rev. D94, 114016 (2016)

  • [71]

    Z. G. Wang, Nucl. Phys. B926, 467 (2018)

  • [72]

    Q. Mao, H. X. Chen, A. Hosakaet al., Phys. Rev. D96, 074021 (2017)

  • [73]

    T. M. Aliev, K. Azizi, Y. Saracet al., Phys. Rev. D98, 094014 (2018)

  • [74]

    E. L. Cui, H. M. Yang, H. X. Chenet al., Phys.Rev. D99, 094021 (2019)

  • [75]

    K. Azizi, Y. Sarac, and H. Sundu, Phys. Rev. D101, 074026 (2020)

  • [76]

    X. Liu, H. X. Chen, Y. R. Liuet al., Phys. Rev. D77, 014031 (2008)

  • [77]

    Francisco O. Duraes, Phys. Lett. B658, 40 (2007)

  • [78]

    J. R. Zhang and M. Q. Huang, Phys. Rev. D77, 094002 (2008)

  • [79]

    J. R. Zhang and M. Q. Huang, Phys. Rev. D78, 094015 (2008)

  • [80]

    E. E. Jenkins, Phys. Rev. D77, 034012 (2008)

  • [81]

    I. L. Grach, I. M. Narodetskii, M. A. Trusovet al.,in Proceedings of the 18th International Conference on Particles and Nuclei(PANIC08)(2008)[arXiv: 0811.2184]

  • [82]

    Z. Y. Wang, J. J. Qi, X. H. Guoet al., Chin. Phys. C41, 093103 (2017)

  • [83]

    J. G. Korner, M. Kramer, and D. Pirjol, Prog. Part. Nucl.Phys.33, 787 (1994)

  • [84]

    J. M. Richard, Phys. Rep.212, 1 (1992)

  • [85]

    E. Klempt and J. M. Richard, Rev. Mod. Phys.82, 1095 (2010)

  • [86]

    H. X. Chen, W. Chen, X. Liuet al., Rep.Prog. Phys.80, 076201 (2017)

  • [87]

    H. Y. Cheng, Front. Phys.10, 101406 (2015)

  • [88]

    V. Crede and W. Roberts, Rep. Prog. Phys.76, 076301 (2013)

  • [89]

    P. A. Zyla et al. (Particle Data Group), Prog. Theor. Exp. Phys. 2020, 083C01 (2020) and 2021 update

  • [90]

    B. L. Ioffe, Nucl. Phys. B188, 317 (1981);191, 591(E) (1981)

  • [91]

    V. M. Belyaev and B. L. Ioffe, Sov. Phys. JETP56, 493 (1982)

  • [92]

    Z. G. Wang, Commun. Theor. Phys.58, 723 (2012)

  • [93]

    K. Azizi and H. Sundu, Eur. Phys. J. Plus132, 22 (2017)

  • [94]

    Z. G. Wang, Phys. Lett. B685, 59 (2010)

  • [95]

    Z. G. Wang, Eur. Phys. J. C68, 459 (2010)

  • [96]

    Z. G. Wang, Eur. Phys. J. A45, 267 (2010);47, (2011) 81

  • [97]

    H. X. Chen, W. Chen, Q. Maoet al., Phys. Rev. D91, 054034 (2015)

  • [98]

    G. L. Yu and Z. G. Wang, Int. J Mod. Phys. A34(26), 1950151 (2019)

  • [99]

    R. Khosravi and M. Janbazi, Phys. Rev. D87, 016003 (2013);89, 016001 (2014)

  • [100]

    G. L. Yu, Z. G. Wang, and Z. Y. Li, Chin. Phys. C41(8), 083104 (2017)

  • [101]

    G. L. Yu, Z. G. Wang, and Z. Y. Li, INT J MOD PHYS A32(5), 1750203 (2017)

  • [102]

    X. Liu, Z. G. Luo, and Z. F. Sun, Phys. Rev. Lett.104, 122001 (2010)

  • [103]

    J. He and X. Liu, Phys. Rev. D82, 114029 (2010)

  • [104]

    W. Chen, H. Y. Jin, R.T. Kleivet al., Phys. Rev. D88, 045027 (2013)

  • [105]

    J. R. Zhang and M. Q. Huang, Phys. Lett. B674, 28 (2009)

  • [106]

    J. R. Zhang and M. Q. Huang, Chin. Phys. C33, 1385 (2009)

  • [107]

    Z. G. Wang, Eur. Phys. J. C77, 325 (2017)

  • [108]

    Z. G. Wang, Eur. Phys. J. C77, 832 (2017)

  • [109]

    Z. G. Wang, Int. J. Mod. Phys. A35, 2050043 (2020), arXiv:2001.02961v2[hep-ph

  • [110]

    M. A. Shifman, A. I. Vainshtein, and V. I. Zakharov, Nucl. Phys. B 147(1979) 385, 448.

  • [111]

    L. J. Reinders, H. Rubinstein, and S. Yazaki, Phys. Rept.127, 1 (1985)

  • [112]

    Z. G. Wang and T. Huang, Phys. Rev. D89, 054019 (2014)

  • [113]

    Z. G. Wang, Eur. Phys. J. C74, 2874 (2014);74, 2891 (2014);74, 2963 (2014)

  • [114]

    Z. G. Wang and T. Huang, Nucl. Phys. A930, 63 (2014)

  • [115]

    Z. G. Wang, Eur. Phys. J. C76, 70 (2016)

  • [116]

    Z. G. Wang, Eur. Phys. J. C, 75, 359(2015);77, 325(2017)

  • [117]

    Z. G. Wang, Eur. Phys. J. C79, 489 (2019)

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