- [1]
J. S. Lewis,Physics and chemistry of the Solar system(Elsevier Acad. Press, 2-ndEdition, 2004)
- [2]
S. P. Maydanyuk, P. M. Zhang, and L. P. Zou, Phys. Rev. C99, 064602 (2019), arXiv: 1812.07180
- [3]
X. Liu, S. P. Maydanyuk, P. M. Zhanget al., Phys. Rev. C99, 064614 (2019), arXiv: 1810.11942
- [4]
S. P. Maydanyuk, V. S. Olkhovsky, G. Giardinaet al., Nucl. Phys. A823(1-4), 38 (2009)
- [5]
S. P. Maydanyuk, V. S. Olkhovsky, G. Mandaglioet al., J. Phys.: Conf. Ser.282, 012016 (2011)
- [6]
S. P. Maydanyuk, V. S. Olkhovsky, G. Mandaglioet al., Phys. Rev. C82, 014602 (2010)
- [7]
S. P. Maydanyuk, V. S. Olkhovsky, G. Mandaglioet al., Int. J. Mod. Phys. E19(5-6), 1189 (2010)
- [8]
S. P. Maydanyuk and V. S. Vasilevsky, Phys. Rev. C108, 064001 (2023), arXiv: 2304.04082
- [9]
K. A. Shaulskyi, S. P. Maydanyuk, and V. S. Vasilevsky, Phys. Rev. C110, 034001 (2024), arXiv: 2404.11930
- [10]
S. P. Maydanyuk, Phys. Rev. C107, 024618 (2023), arXiv: 2203.07146
- [11]
See Supplemental Material at http://link.aps.org/ supplemental/10.1103/PhysRevC.107.024618 for details of calculations of the matrix element of emission.
- [12]
E. Epelbaum, H. W. Hammer, and Ulf-G. Meiβner, Rev. Mod. Phys.81, 1773 (2009), arXiv: 0811.1338
- [13]
D. R. Tilley, C. M. Cheves, J. L. Godwinaet al., Nucl. Phys. A708, 3 (2002)
- [14]
G. S. Bisnovatyi-Kogan,Relativistic astrophysics and physical cosmology(Moskva, Krasand, 2011), pp.376 (in Russian)
- [15]
G. S. Bisnovatyi-Kogan,Physical problems of the theory of stellar evolution(Moscow, Nauka, 1989), pp.488 (in Russian)
- [16]
R. Kippenhahn, A. Weigert, and A. Weiss,Stellar structure and Evolution(Springer Berlin Heidelberg, 2ndEd., 2012), pp.604
- [17]
K. Wildermuth and Y. C. Tang,A Unifierd Theory of the Nucleus, (Vieweg, 1977)
- [18]
Y. C. Tang, M. LeMere, and D. R. Thompson, Phys. Rep.47, 167 (1978)
- [19]
Y. C. Tang, inTopics in Nuclear Physics II, Lecture Notes in Physics, Vol. 145 (Springer, Berlin, 1981), pp. 571–692
- [20]
H. Horiuchi, Prog. Theor. Phys. Suppl.62, 90 (1977)
- [21]
Y. K. Gambhir, P. Ring, and A. Thimet, Ann. Phys.198, 132 (1990)
- [22]
P. Ring, Prog. Part. Nucl. Phys.37, 193 (1996)
- [23]
P. Ring and A. V. Afanasjev, Prog. Part. Nucl. Phys.38, 137 (1997)
- [24]
P. Ring, Prog. Part. Nucl. Phys.46, 165 (2001)
- [25]
M. Serra, A. Rummel, and P. Ring, Prog. Part. Nucl. Phys.46, 175 (2001)
- [26]
P. Ring, E. Litvinova, and D. Vretenar, Prog. Part. Nucl. Phys.59, 393 (2007)
- [27]
D. Pena Arteaga and P. Ring, Prog. Part. Nucl. Phys.59, 314 (2007)
- [28]
T. Niksic, D. Vretenar, and P. Ring, Prog. Part. Nucl. Phys.66, 519 (2011)
- [29]
D. Vretenar, A. V. Afanasjev, G. A. Lalazissis, and P. Ring, Phys. Rep.409, 101 (2005)
- [30]
J. Boguta and A. R. Bodmer, Nucl. Phys. A292, 413 (1977)
- [31]
P. Ring and J. Speth, Nucl. Phys. A235, 315 (1974)
- [32]
G. A. Lalazissis, J. König, and P. Ring, Phys. Rev. C55, 540 (1997)
- [33]
G. A. Lalazissis, S. Raman, and P. Ring, Atom. Data Nucl. Data Tabl.71, 1 (1999)
- [34]
B. R. Barrett, P. Navratil, and J. P. Vary, Prog. Part. Nucl. Phys.69, 131 (2013)
- [35]
P. A. M. Guichon, J. R. Stone, and A. W. Thomas, Prog. Part. Nucl. Phys.100, 262 (2018)
- [36]
M. Oertel, M. Hempel, T. Klähnet al., Rev. Mod. Phys.89, 015007 (2017), arXiv: 1610.03361
- [37]
P. Danielewicz, R. Lacey, and W. G. Lynch, Science298, 1592 (2002), arXiv: nucl-th/0208016
- [38]
S. A. Chin, Ann. Phys.108, 301 (1977), arXiv: nucl-th/0208016
- [39]
H. Shen, H. Toki, K. Oyamatsu, and K. Sumiyoshi, Nucl. Phys. A637, 435 (1998), arXiv: nucl-th/9805035
- [40]
S. K. Singh, S. K. Biswal, M. Bhuyanet al., J. Phys. G: Nucl. Part. Phys.41, 055201 (2014)
- [41]
A. Akmal, V. R. Pandharipande, and D. G. Ravenhall, Phys. Rev. C58, 1804 (1998)
- [42]
V. R. Pandharipande, Nucl. Phys. A178, 123 (1971)
- [43]
V. R. Pandharipande, Nucl. Phys. A174, 641 (1971)
- [44]
V. R. Pandharipande, Nucl. Phys. A166, 317 (1971)
- [45]
P. J. Siemens and V. R. Pandharipande, Nucl. Phys. A173, 561 (1971)
- [46]
S. L. Shapiro and S. A. Teukolsky,Black Holes, White Dwarfs, and Neutron Stars: The Physics of Compact Objects, (Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim, 2004), pp.645
- [47]
P. Haensel, A. Yu. Potekhin, and D. G. Yakovlev,Neutron Stars 1: Equation of State and Structure, (New York: Springer, 2007)
- [48]
A. Yu. Potekhin, Physics - Uspehi53(12), 1279 (2010)
- [49]
A. I. Steshenko and G. F. Filippov,Size and shape of neutron-excess nuclei, Yad. Fiz.14, 715 (1971) [Sov. J. Nucl. Phys.14, 715 (1971)]
- [50]
G. F. Filippov and A. I. Steshenko, Ukr. Phys. J.15, 625 (1970)
- [51]
A. I. Steshenko,Properties of ground states of atomic nuclei, PhD Thesis, (Kiev, 1971)
- [52]
A. I. Steshenko,On a model of deformed oscillator shells for calculation of bound states of atomic nuclei, Preprint (BITP, Kiev, 1976)
- [53]
S. P. Maydanyuk, P. M. Zhang, and S. V. Belchikov, Nucl. Phys. A940, 89 (2015), arXiv: 1504.00567
- [54]
S. P. Maydanyuk, P. M. Zhang, and L. P. Zou, Phys. Rev. C96, 014602 (2017), arXiv: 1711.07012
- [55]
S. P. Maydanyuk, P. M. Zhang, and L. P. Zou, Phys. Rev. C93, 014617 (2016), arXiv: 1505.01029
- [56]
S. P. Maydanyuk and P. M. Zhang, Phys. Rev. C91, 024605 (2015), arXiv: 1309.2784
- [57]
S. P. Maydanyuk, Phys. Rev. C86, 014618 (2012), arXiv: 1203.1498
- [58]
J. Clayton, W. Benenson, M. Cronqvistet al., Phys. Rev. C45, 1815 (1992)
- [59]
J. E. Clayton,High energy gamma ray production in proton induced reactions at energies of 104, 145, and 195 MeV, PhD Thesis, (Michigan State University, 1991)
- [60]
M. J. van Goethem, L. Aphecetche, J. C. S. Bacelaret al., Phys. Rev. Lett.88(12), 122302 (2002)
- [61]
S. P. Maydanyuk, P. M. Zhang, and L. P. Zou, Phys. Rev. C98, 054613 (2018), arXiv: 1809.10403
- [62]
L. D. Landau and E. M. Lifshitz,Kvantovaya Mehanika, kurs Teoreticheskoi Fiziki, (Quantum mechanics, course of Theoretical Physics), Vol. 3 (Nauka, Mockva, 1989) p.768 — (in Russian; Eng. variant: Oxford, Uk, Pergamon, 1982)
- [63]
R. B. Wiringa, V. G. J. Stocks, and R. Schiavilla, Phys. Rev. C51, 38 (1995)
- [64]
R. Machleidt, Phys. Rev. C63, 024001 (2001)
- [65]
V. G. J. Stockset al., Phys. Rev. C49, 2950 (1994)
- [66]
M. Lacombeet al., Phys. Rev. C21, 861 (1980)
- [67]
L. Bloaset al., Phys. Rev. C84(1), 014310 (2011)
- [68]
P. Haensel and A. Yu. Potekhin, Astron. Astrophys.428, 191 (2004), arXiv: astro-ph/0408324
- [69]
D. Blaschke and N. Chamel,Phases of dense matter in compact stars, 337–400. In: Rezzolla L., Pizzochero P., Jones D., Rea N., Vidana I. (eds) The Physics and Astrophysics of Neutron Stars. Astrophysics and Space Science Library, vol 457 (2018), Springer, Cham., arXiv: 1803.01836
- [70]
S. P. Maydanyuk and V. S. Olkhovsky, Prog. Theor. Phys.109(2), 203 (2003), arXiv: nucl-th/0404090
- [71]
S. P. Maydanyuk and V. S. Olkhovsky, Eur. Phys. J. A28(3), 283 (2006), arXiv: nucl-th/0408022
- [72]
G. Giardina, G. Fazio, G. Mandaglioet al., Eur. Phys. J. A36(1), 31 (2008)
- [73]
G. Giardina, G. Fazio, G. Mandaglioet al., Mod. Phys. Lett. A23(31), 2651 (2008), arXiv: 0804.2640
- [74]
S. P. Maydanyuk, J. Phys. Study.13(3), 3201 (2009)
- [75]
S. P. Maydanyuk,Multipolar model of bremsstrahlung accompanying proton decay of nuclei, J. Phys. G38(8), 085106 (2011), arXiv: 1102.2067
- [76]
S. de Benedetti,Yadernie vzaimodeistviya(Nuclear Interactions) (Atomizdat, Mockva, 1968) p. 475 — (in Russian; Eng. variant: New York - London - Sydney, John Wiley and Sons)
- [77]
S. P. Maydanyuk, G. Wolf, and K. A. Shaulskyi, Universe9, 354 (2023), arXiv: 2305.09389
- [78]
S. P. Maydanyuk and K. A. Shaulskyi, Eur. Phys. J. A5, 220 (2022), arXiv: 2205.13895
- [79]
S. P. Maydanyuk and G. Wolf,Incoherent processes in dilepton production in proton-nucleus scattering at high energies, arXiv: 2312.07372