\begin{document}$ \rho_0 $\end{document} as \begin{document}$ m_{s,0}^{\ast}/m = 0.87_{-0.04}^{+0.04} $\end{document} and \begin{document}$ m_{v,0}^{\ast}/m = 0.78_{-0.05}^{+0.06} $\end{document}, respectively, at 90% confidence level. The constraints obtained on \begin{document}$ m_{s,0}^{\ast} $\end{document} and \begin{document}$ m_{v,0}^{\ast} $\end{document} lead to a positive isospin splitting of nucleon effective mass in asymmetric nuclear matter of isospin asymmetry \begin{document}$ \delta $\end{document} at \begin{document}$ \rho_0 $\end{document} as \begin{document}$ m_{n-p}^* / m = (0.20^{+0.15}_{-0.14})\delta $\end{document}. In addition, the symmetry energy at the subsaturation density \begin{document}$ \rho^{\ast} = 0.05\; \mathrm{fm}^{-3} $\end{document} is determined to be \begin{document}$ E_{\mathrm{sym}}(\rho^{\ast}) = 16.7\pm1.3 $\end{document} MeV at 90% confidence level."> Bayesian inference on isospin splitting of nucleon effective mass from giant resonances in <sup>208</sup>Pb -
  • [1]

    J. Jeukenne, A. Lejeune, and C. Mahaux, Phys. Rep.25, 83 (1976

  • [2]

    C. Mahaux, P. Bortignon, R. Brogliaet al., Phys. Rep.120, 1 (1985

  • [3]

    M. Jaminon and C. Mahaux, Phys. Rev. C40, 354 (1989

  • [4]

    B.-A. Li and L.-W. Chen, Mod. Phys. Lett. A30, 1530010 (2015

  • [5]

    B. A. Li, B. J. Cai, L. W. Chenet al., Prog. Part. Nucl. Phys.99, 29 (2018), arXiv:1801.01213

  • [6]

    L. W. Chen, C. M. Ko, and B. A. Li, Phys. Rev. C76, 054316 (2007

  • [7]

    B. A. Li, L. W. Chen, and C. M. Ko, Phys. Rep.464, 113 (2008

  • [8]

    B.-A. Li, C. B. Das, S. Das Guptaet al., Phys. Rev. C69, 011603 (2004

  • [9]

    B.-A. Li and L.-W. Chen, Phys. Rev. C72, 064611 (2005

  • [10]

    L.-W. Chen, C. M. Ko, and B.-A. Li, Phys. Rev. Lett.94, 032701 (2005

  • [11]

    J. Rizzo, M. Colonna, and M. D. Toro, Phys. Rev. C72, 064609 (2005

  • [12]

    V. Giordano, M. Colonna, M. Di Toroet al., Phys. Rev. C81, 044611 (2010

  • [13]

    Z.-Q. Feng, Phys. Lett. B707, 83 (2012

  • [14]

    Y. Zhang, M. Tsang, Z. Li, and H. Liu, Phys. Lett. B732, 186 (2014

  • [15]

    W.-J. Xie and F.-S. Zhang, Phys. Lett. B735, 250 (2014

  • [16]

    B. Behera, T. R. Routray, and S. K. Tripathy, J. Phys. G38, 115104 (2011

  • [17]

    J. Xu, L.-W. Chen, and B.-A. Li, Phys. Rev. C91, 014611 (2015

  • [18]

    J. Xu, Phys. Rev. C91, 037601 (2015

  • [19]

    M. Baldo, G. F. Burgio, H.-J. Schulzeet al., Phys. Rev. C89, 048801 (2014

  • [20]

    X.-H. Li, W.-J. Guo, B.-A. Liet al., Phys. Lett. B743, 408 (2015

  • [21]

    C. Xu, B.-A. Li, and L.-W. Chen, Phys. Rev. C82, 054607 (2010

  • [22]

    Z. Zhang and L. W. Chen, Phys. Rev. C93, 034335 (2016

  • [23]

    H.-Y. Kong, J. Xu, L.-W. Chenet al., Phys. Rev. C95, 034324 (2017

  • [24]

    W. Zuo, I. Bombaci, and U. Lombardo, Phys. Rev. C60, 024605 (1999

  • [25]

    W. Zuo, L. G. Cao, B. A. Liet al., Phys. Rev. C72, 014005 (2005

  • [26]

    Z.-Y. Ma, J. Rong, B.-Q. Chenet al., Phys. Lett. B604, 170 (2004

  • [27]

    E. N. E. van Dalen, C. Fuchs, and A. Faessler, Phys. Rev. Lett.95, 022302 (2005

  • [28]

    Z. Zhang, Y. Lim, J. W. Holt, and C. M. Ko, Phys. Lett. B777, 73 (2018

  • [29]

    J. W. Holt, N. Kaiser, G. A. Milleret al., Phys. Rev. C88, 024614 (2013

  • [30]

    J. W. Holt, N. Kaiser, and G. A. Miller, Phys. Rev. C93, 064603 (2016

  • [31]

    B. A. Li and X. Han, Phys. Lett. B727, 276 (2013

  • [32]

    D. D. S. Coupland, M. Youngs, Z. Chajeckiet al., Phys. Rev. C94, 011601 (2016

  • [33]

    P. Morfouace, C. Y. Tsang, Y. Zhanget al., Phys. Lett. B799, 135045 (2019

  • [34]

    H.-Y. Kong, Y. Xia, J. Xuet al., Phys. Rev. C91, 047601 (2015

  • [35]

    T. Malik, C. Mondal, B. K. Agrawalet al., Phys. Rev. C98, 064316 (2018), arXiv:1811.09077

  • [36]

    J. Dobaczewski, W. Nazarewicz, and P. G. Reinhard, J. Phys. G41, 074001 (2014

  • [37]

    P. G. Reinhard and W. Nazarewicz, Phys. Rev. C81, 051303(R) (2010

  • [38]

    J. Piekarewicz, W. C. Chen, and F. J. Fattoyev, J. Phys. G42, 034018 (2015

  • [39]

    J. D. McDonnell, N. Schunck, D. Higdonet al., Phys. Rev. Lett.114, 122501 (2015

  • [40]

    J. E. Bernhard, P. W. Marcy, C. E. Coleman-Smithet al., Phys. Rev. C91, 054910 (2015

  • [41]

    S. Pratt, E. Sangaline, P. Sorensenet al., Phys. Rev. Lett.114, 202301 (2015

  • [42]

    W.-J. Xie and B.-A. Li, Astrophys. J.883, 174 (2019

  • [43]

    W.-J. Xie and B.-A. Li, Astrophys. J.899, 4 (2020

  • [44]

    C. Drischler, R. J. Furnstahl, J. A. Melendezet al., Phys. Rev. Lett.125, 202702 (2020

  • [45]

    J. Xu, J. Zhou, Z. Zhanget al., Phys. Lett. B810, 135820 (2020

  • [46]

    V. Kejzlar, L. Neufcourt, W. Nazarewiczet al., J. Phys. G47, 094001 (2020

  • [47]

    G. F. Bertsch and D. Bingham, Phys. Rev. Lett.119, 252501 (2017), arXiv:1703.08844

  • [48]

    A. Pastore, J. Phys. G46, 052001 (2019), arXiv:1810.05585

  • [49]

    A. Tamii, I. Poltoratska, P. Von Neumann-Coselet al., Phys. Rev. Lett.107, 062502 (2011

  • [50]

    X. Roca-Maza, X. Viñas, M. Centelleset al., Phys. Rev. C92, 064304 (2015

  • [51]

    S. S. Dietrich and B. L. Berman, At. Data Nucl. Data Tables38, 199 (1988

  • [52]

    X. Roca-Maza, M. Brenna, B. K. Agrawalet al., Phys. Rev. C87, 034301 (2013

  • [53]

    M. Wang, G. Audi, F. G. Kondevet al., Chin. Phys. C41, 030003 (2017

  • [54]

    I. Angeli and K. Marinova, At. Data Nucl. Data Tables99, 69 (2013

  • [55]

    D. Patel, U. Garg, M. Fujiwaraet al., Phys. Lett. B726, 178 (2013

  • [56]

    D. Vautherin and D. M. Brink, Phys. Rev. C5, 626 (1972

  • [57]

    L. W. Chen, C. M. Ko, B. A. Liet al., Phys. Rev. C82, 024321 (2010

  • [58]

    L.-W. Chen and J.-Z. Gu, J. Phys. G39, 035104 (2012

  • [59]

    M. Kortelainen, T. Lesinski, J. Moréet al., Phys. Rev. C82, 024313 (2010

  • [60]

    E. Chabanat, P. Bonche, P. Haenselet al., Nucl. Phys. A627, 710 (1997

  • [61]

    Z. Zhang and L. W. Chen, Phys. Rev. C92, 031301(R) (2015

  • [62]

    G. Colò, L. Cao, N. Van Giai, and L. Capelli, Comput. Phys. Commun.184, 142 (2013

  • [63]

    O. Bohigas, A. Lane, and J. Martorell, Phys. Rep.51, 267 (1979

  • [64]

    T. Sil, S. Shlomo, B. K. Agrawal, and P.-G. Reinhard, Phys. Rev. C73, 034316 (2006

  • [65]

    J. Blaizot, Phys. Rep.64, 171 (1980

  • [66]

    A. Bohr and B. Mottelson,Nuclear Structure, Vols. I and II(Benjamin, London, 1975)

  • [67]

    X. Roca-Maza, M. Brenna, G. Colòet al., Phys. Rev. C88, 024316 (2013

  • [68]

    URLhttps://madai.phy.duke.edu

  • [69]

    C. E. Rasmussen and C. K. I. Williams,Gaussian Processes for Machine Learning(MIT Press, Cambridge, MA, 2006)

  • [70]

    M. D. Morris and T. J. Mitchell, J. Stat. Plan. Inf.43, 381 (1995

  • [71]

    J. Erler, P. Klüpfel, and P.-G. Reinhard, J. Phys. G37, 064001 (2010

  • [72]

    B. G. Carlsson, J. Dobaczewski, and M. Kortelainen, Phys. Rev. C78, 044326 (2008

  • [73]

    F. Raimondi, B. G. Carlsson, and J. Dobaczewski, Phys. Rev. C83, 054311 (2011

  • [74]

    R. Wang, L. W. Chen, and Y. Zhou, Phys. Rev. C98, 054618 (2018

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