\begin{document}$ S = -2 $\end{document} and corresponding momentum correlation functions in leading order covariant chiral effective field theory. The relevant low energy constants are determined by fitting to the latest HAL QCD simulations, taking into account all the coupled channels. Extrapolating the so-obtained strong interactions to the physical point and considering both quantum statistical effects and the Coulomb interaction, we calculate the \begin{document}$ \Lambda\Lambda $\end{document} and \begin{document}$ \Xi^-p $\end{document} correlation functions with a spherical Gaussian source and compare them with recent experimental data. We find a good agreement between our predictions and the experimental measurements by using the source radius determined in proton-proton correlations, which demonstrates the consistency between theory, experiment, and lattice QCD simulations. Moreover, we predict the \begin{document}$ \Sigma^+\Sigma^+ $\end{document}, \begin{document}$ \Sigma^+\Lambda $\end{document}, and \begin{document}$ \Sigma^+\Sigma^- $\end{document} interactions and corresponding momentum correlation functions. We further investigate the influence of the source shape and size of the hadron pair on the correlation functions studied and show that the current data are not very sensitive to the source shape. Future experimental measurements of the predicted momentum correlation functions will provide a non-trivial test of not only SU(3) flavor symmetry and its breaking but also the baryon-baryon interactions derived in covariant chiral effective field theory."> Strangeness <i>S</i> = −2 baryon-baryon interactions and femtoscopic correlation functions in covariant chiral effective field theory -
  • [1]

    R. L. Jaffe, Phys. Rev. Lett.38, 195-198 (1977)

  • [2]

    S. R. Beane, E. Chang, W. Detmoldet al., Phys. Rev. Lett.106, 162001 (2011)

  • [3]

    T. Inoue, N. Ishii, S. Aokiet al., Phys. Rev. Lett.106, 162002 (2011)

  • [4]

    P. E. Shanahan, A. W. Thomas, and R. D. Young, Phys. Rev. Lett.107, 092004 (2011)

  • [5]

    J. R. Green, A. D. Hanlon, P. M. Junnarkaret al., Phys. Rev. Lett.127, 242003 (2021)

  • [6]

    H. Takahashiet al., Phys. Rev. Lett.87, 212502 (2001)

  • [7]

    E. Hiyama, K. Sasaki, T. Miyamotoet al., Phys. Rev. Lett.124, 092501 (2020)

  • [8]

    S. H. Hayakawaet al., Phys. Rev. Lett.126, 062501 (2021)

  • [9]

    D. Lonardoni, F. Pederiva, and S. Gandolfi, Phys. Rev. C89, 014314 (2014)

  • [10]

    K. A. Maslov, E. E. Kolomeitsev, and D. N. Voskresensky, Phys. Lett. B748, 369-375 (2015)

  • [11]

    M. Oertel, C. Providência, F. Gulminelliet al., J. Phys. G: Nucl. Part. Phys.42(7), 075202 (2015)

  • [12]

    Y. Lim, C. H. Hyun, K. Kwaket al., Int. J. Mod. Phys. E24, 1550100 (2015)

  • [13]

    R. Engelmann, H. Filthuth, V. Heppet al., Phys. Lett.21(5), 587-589 (1966)

  • [14]

    G. Alexander, U. Karshon, A. Shapiraet al., Phys. Rev.173, 1452-1460 (1968)

  • [15]

    B. Sechi-Zorn, B. Kehoe, J. Twittyet al., Phys. Rev.175, 1735-1740 (1968)

  • [16]

    V. Hepp and H. Schleich, Z. Phys.214, 71 (1968)

  • [17]

    F. Eisele, H. Filthuth, W. Föhlischet al., Phys. Lett. B37(2), 204-206 (1971)

  • [18]

    J. Rowley,et al., Phys. Rev. Lett.127, 272303 (2021)

  • [19]

    J. K. Ahnet al., Phys. Lett. B633(2), 214-218 (2006)

  • [20]

    V. G. J. Stoks and T. A. Rijken, Phys. Rev. C59, 3009-3020 (1999)

  • [21]

    H. Polinder, J. Haidenbauer, and U.-G. Meißner, Nucl. Phys. A779, 244-266 (2006)

  • [22]

    Y. Fujiwara, Y. Suzuki, and C. Nakamoto, Prog. Part. Nucl. Phys.58(2), 439-520 (2007)

  • [23]

    J. Haidenbauer and U.-G. Meißner, Phys. Lett. B684(4), 275-280 (2010)

  • [24]

    J. Haidenbauer, S. Petschauer, N. Kaiseret al., Nucl. Phys. A915, 24-58 (2013)

  • [25]

    J. Haidenbauer, U.-G. Meißner, and S. Petschauer, Nucl. Phys. A954, 273-293 (2016)

  • [26]

    K. W. Li, X. L. Ren, L. S. Genget al., Chin. Phys. C42, 014105 (2018)

  • [27]

    K. W. Li, T. Hyodo, and L. S. Geng, Phys. Rev. C98, 065203 (2018)

  • [28]

    Z. W. Liu, J. Song, K. W. Liet al., Phys. Rev. C103, 025201 (2021)

  • [29]

    G. Goldhaber, S. Goldhaber, W. Leeet al., Phys. Rev.120, 300-312 (1960)

  • [30]

    S. Y. Fung, W. Gorn, G. P. Kiernanet al., Phys. Rev. Lett.41, 1592-1594 (1978)

  • [31]

    W. A. Zajc, J. A. Bistirlich, R. R. Bossinghamet al., Phys. Rev. C29, 2173-2187 (1984)

  • [32]

    A. Bambergeret al., Phys. Lett. B203(3), 320-326 (1988)

  • [33]

    M. I. Podgoretsky, Fiz. Elem. Chast. Atom. Yadra20, 628-668 (1989)

  • [34]

    T. Abbottet al., Phys. Rev. Lett.69, 1030-1033 (1992)

  • [35]

    J. Barretteet al., Phys. Lett. B333(1), 33-38 (1994)

  • [36]

    U. A. Wiedemann and U. Heinz, Phys. Rep.319(4), 145-230 (1999)

  • [37]

    V. Khachatryanet al., Phys. Rev. Lett.105, 032001 (2010)

  • [38]

    S. E. Koonin, Phys. Lett. B70(1), 43-47 (1977)

  • [39]

    M. Gyulassy, S. K. Kauffmann, and L. W. Wilson, Phys. Rev. C20, 2267-2292 (1979)

  • [40]

    R. Lednicky and V. L. Lyuboshits, Yad. Fiz.35, 1316-1330 (1981)

  • [41]

    S. Pratt, T. Csörgö, and J. Zimányi, Phys. Rev. C42, 2646-2652 (1990)

  • [42]

    W. Bauer, C. Gelbke, and S. Pratt, Annu. Rev. Nucl. Part. Sci.42(1), 77-98 (1992)

  • [43]

    S. Acharya,et al., Phys. Rev. C96, 064613 (2017)

  • [44]

    S. Acharyaet al., Phys. Lett. B774, 64-77 (2017)

  • [45]

    S. Acharyaet al., Phys. Lett. B790, 22-34 (2019)

  • [46]

    S. Acharyaet al., Phys. Lett. B833, 137335 (2022)

  • [47]

    S. Acharyaet al., Phys. Lett. B813, 136030 (2021)

  • [48]

    S. Acharyaet al., Phys. Rev. Lett.124, 092301 (2020)

  • [49]

    S. Acharyaet al., Phys. Rev. C103, 055201 (2021)

  • [50]

    S. Acharyaet al., Phys. Rev. Lett.127, 172301 (2021)

  • [51]

    L. Adamczyket al., Phys. Rev. Lett.114, 022301 (2015)

  • [52]

    L. Adamczyket al., Nature527, 345-348 (2015)

  • [53]

    J. Adamczewski-Muschet al., Phys. Rev. C94, 025201 (2016)

  • [54]

    S. Acharyaet al., Phys. Rev. C99, 024001 (2019)

  • [55]

    S. Acharyaet al., Phys. Lett. B797, 134822 (2019)

  • [56]

    J. Adamet al., Phys. Lett. B790, 490-497 (2019)

  • [57]

    S. Acharyaet al., Phys. Rev. Lett.123, 112002 (2019)

  • [58]

    S. Acharyaet al., Phys. Lett. B811, 135849 (2020)

  • [59]

    S. Acharyaet al., Phys. Lett. B805, 135419 (2020)

  • [60]

    S. Acharyaet al., Phys. Lett. B802, 135223 (2020)

  • [61]

    S. Acharyaet al., Nature588, 232-238 (2020)

  • [62]

    L. Fabbietti, V. M. Sarti, and O. V. Doce, Annu. Rev. Nucl. Part. Sci.71, 377-402 (2021)

  • [63]

    S. Acharyaet al., Phys. Lett. B833, 137272 (2022)

  • [64]

    S. Acharyaet al., Phys. Lett. B829, 137060 (2022)

  • [65]

    M. Isshiki, EPJ Web Conf.259, 11015 (2022)

  • [66]

    A. Ohnishi, Y. Hirata, Y. Naraet al., Nucl. Phys. A670(1), 297-300 (2000)

  • [67]

    K. Morita, T. Furumoto, and A. Ohnishi, Phys. Rev. C91, 024916 (2015)

  • [68]

    K. Morita, A. Ohnishi, F. Etminanet al., Phys. Rev. C94, 031901 (2016)

  • [69]

    A. Ohnishi, K. Morita, and K. Miyahara, Nucl. Phys. A954, 294-307 (2016)

  • [70]

    S. Cho, T. Hyodo, D. Jidoet al., Prog. Part. Nucl. Phys.95, 279-322 (2017)

  • [71]

    D. L. Mihaylov, V. Mantovani Sarti, O. W. Arnoldet al., Eur. Phys. J. C78, 394 (2018)

  • [72]

    K. Morita, S. Gongyo, T. Hatsudaet al., Phys. Rev. C101, 015201 (2020)

  • [73]

    Y. Kamiya, T. Hyodo, K. Moritaet al., Phys. Rev. Lett.124, 132501 (2020)

  • [74]

    Y. Kamiya, K. Sasaki, T. Fukuiet al., Phys. Rev. C105, 014915 (2022)

  • [75]

    A. Ohnishi, Y. Kamiya, K. Sasakiet al., Few-Body Syst.62, 42 (2021)

  • [76]

    K. Ogata, T. Fukui, Y. Kamiyaet al., Phys. Rev. C103, 065205 (2021)

  • [77]

    J. Haidenbauer, Nucl. Phys. A981, 1-16 (2019)

  • [78]

    J. Haidenbauer, G. Krein, and T. C. Peixoto, Eur. Phys. J. A56, 184 (2020)

  • [79]

    J. Haidenbauer and U. G. Meißner, Phys. Lett. B829, 137074 (2022)

  • [80]

    L. K. Graczykowski and M. A. Janik, Phys. Rev. C104, 054909 (2021)

  • [81]

    I. M. Silvério, S. S. Padula, and G. a. I. Krein,Study of \begin{document}${{D^0}}$\end{document} meson interactions via femtoscopic correlations, (2021) arXiv:2110.15455

  • [82]

    S. Mrówczyński and P. Słoń, Phys. Rev. C104, 024909 (2021)

  • [83]

    S. R. Beane, P. F. Bedaque, T. C. Luuet al., Nucl. Phys. A794(1), 62-72 (2007)

  • [84]

    H. Nemura, S. Aoki, T. Doiet al., EPJ Web Conf.175, 05030 (2018)

  • [85]

    N. Ishii, S. Aoki, T. Doiet al., EPJ Web Conf.175, 05013 (2018)

  • [86]

    T. Doi, T. Iritani, S. Aokiet al., EPJ Web Conf.175, 05009 (2018)

  • [87]

    K. Sasaki, S. Aoki, T. Doiet al., Nucl. Phys. A998, 121737 (2020)

  • [88]

    M. Illa, S. R. Beane, E. Changet al., Phys. Rev. D103, 054508 (2021)

  • [89]

    X. L. Ren, K. W. Li, L. S. Genget al., Chin. Phys. C42, 014103 (2018)

  • [90]

    Y. Xiao, L. S. Geng, and X. L. Ren, Phys. Rev. C99, 024004 (2019)

  • [91]

    Y. Xiao, C. X. Wang, J. X. Luet al., Phys. Rev. C102, 054001 (2020)

  • [92]

    Q. Q. Bai, C. X. Wang, Y. Xiaoet al., Phys. Lett. B809, 135745 (2020)

  • [93]

    Q. Q. Bai, C. X. Wang, Y. Xiaoet al., Phys. Lett. B833, 137347 (2022)

  • [94]

    C. X. Wang, J. X. Lu, Y. Xiaoet al., Phys. Rev. C105, 014003 (2022)

  • [95]

    J. X. Lu, C. X. Wang, Y. Xiaoet al., Phys. Rev. Lett.128, 142002 (2022)

  • [96]

    X. L. Ren, C. X. Wang, K. W. Liet al., Chin. Phys. Lett.38, 062101 (2021)

  • [97]

    C. X. Wang, L. S. Geng, and B. W. Long, Chin. Phys. C45, 054101 (2021)

  • [98]

    K. W. Li, X. L. Ren, L. S. Genget al., Phys. Rev. D94, 014029 (2016)

  • [99]

    J. Song, K. W. Li, and L. S. Geng, Phys. Rev. C97, 065201 (2018)

  • [100]

    J. Song, Z.-W. Liu, K.-W. Liet al., Phys. Rev. C105, 035203 (2022)

  • [101]

    J. Song, Y. Xiao, Z. W. Liuet al., Phys. Rev. C102, 065208 (2020)

  • [102]

    J. Song, Y. Xiao, Z. W. Liuet al., Commun. Theor. Phys.75, 015202 (2022)

  • [103]

    J. Haidenbauer, U.-G. Meißner, and S. Petschauer, Eur. Phys. J. A51, 17 (2015)

  • [104]

    V. G. Kadyshevsky, Nucl. Phys. B6(2), 125-148 (1968)

  • [105]

    K. Sasaki, S. Aoki, T. Doiet al., EPJ Web Conf.175, 05010 (2018)

  • [106]

    S. Aoki, N. Ishii, T. Doiet al., Proc. Jpn. Acad. Ser. B87(8), 509-517 (2011)

  • [107]

    S. Aoki, B. Charron, T. Doiet al., Phys. Rev. D87, 034512 (2013)

  • [108]

    C. M. Vincent and S. C. Phatak, Phys. Rev. C10, 391-394 (1974)

  • [109]

    B. Holzenkamp, K. Holinde, and J. Speth, Nucl. Phys. A500, 485-528 (1989)

  • [110]

    A. Bazavovet al., Phys. Rev. D90, 094503 (2014)

  • [111]

    S. Borsányi, Z. Fodor, C. Hoelblinget al., Phys. Lett. B730, 99-104 (2014)

  • [112]

    A. Oliver Werner,Study of the hyperon-nucleon interaction via femtoscopy in elementary systems with hades and alice, Dissertation, Technische Universität München, München (2017)

  • [113]

    A. Collaboration,Future high-energy pp programme with ALICE, ALICE-PUBLIC-2020-005 (Jul 2020). URLhttps://cds.cern.ch/record/2724925

  • [114]

    G. Miller, Chin. J. Phys.51, 466 (2013)

  • [115]

    J. K. Ahn, R. Honda, Y. Ichikawaet al., (2011)http://j-parc.jp/researcher/Hadron/en/pac_1107/pdf/KEK_J-PARC-PAC2011-03.pdf

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