[1] LATTIMER J M, PRAKASH M. Science, 2004, 304:536. arXiv:astro-ph/0405262.
[2] http://discovermagazine.com/2002/feb/cover/.
[3] WATTS A L, YU W F, POUTANEN J, et al. Science China Physics, Mechanics, and Astronomy, 2019, 62:29503. arXiv:1812.04021.
[4] ABBOTT B P, ABBOTT R, ABBOTT T D, et al. Physical Review Letters, 2017, 119:161101. arXiv:1710.05832.
[5] ABBOTT B P, ABBOTT R, ABBOTT T D, et al. Astrophys J, 2017, 848:L12. arXiv:1710.05833.
[6] LI T, XIONG S L, ZHANG S N, et al. Science China Physics, Mechanics, and Astronomy, 2018, 61:31011. arXiv:1710.06065.
[7] HU L, WU X F, ANDREONI I, et al. Science Bulletin,2017, 62(21):1433.
[8] ZHU Z Y, ZHOU E P, LI. Astrophys J, 2018, 862:98. arXiv:1802.05510.
[9] ZHOU E P, ZHOU X, LI A. Phys Rev D, 2018, 97:083015. arXiv:1711.04312.
[10] ANNALA E, GORDA T, KURKELA A, et al. Phys Rev Lett, 2018, 120:172703. arXiv:1711.02644.
[11] FATTOYEV F J, PIEKAREWICZ J, HOROWITZ C J. Phys Rev Lett, 2018, 120:172702. arXiv:1711.06615.
[12] ABBOTT B P, ABBOTT R, ABBOTT T D, et al. Phys Rev Lett, 2018, 121:161101. arXiv:1805.11581.
[13] DE S, FINSTAD D, LATTIMER J M, et al. Phys Rev Lett, 2018, 121:091102. arXiv:1804.08583.
[14] BAUSWEIN A, JUST O, JANKA H T, et al. Astrophys J, 2017, 850:L34. arXiv:1710.06843.
[15] GOMES R O, CHAR P, SCHRAMM S. 2018, arXiv:1806. 04763
[16] MARGALIT B, METZGER B D. Astrophys J, 2017, 850:L19. arXiv:1710.05938.
[17] RADICE D, PEREGO A, ZAPPA F, et al. Astrophys J, 2018, 852:L29. arXiv:1711.03647.
[18] RUIZ M, SHAPIRO S L, TSOKAROS A. Phys Rev D, 2018, 97:021501. arXiv:1711.00473.
[19] SHIBATA M, FUJIBAYASHI S, HOTOKEZAKA K, et al. Phys Rev D, 2017, 96:123012. arXiv:1710.07579.
[20] NANDI R, CHAR P. Astrophys J, 2018, 857:12. arXiv:1712. 08094.
[21] PASCHALIDIS V, YAGI K, ALVAREZ-CASTILLO D, et al. Phys Rev D, 2018, 97:084038. arXiv:1712.00451.
[22] FABER J A, RASIO F A. Living Reviews in Relativity, 2012, 15:8. arXiv:1204.3858.
[23] JANKA H T, LANGANKE K, MAREK A, et al. Physics Reports, 2007, 442:38. arXiv:astro-ph/0612072.
[24] KUMAR P, ZHANG B. Physics Reports, 2015, 561:1. arXiv:1410.0679.
[25] NAKAR E. Physics Reports, 2007, 442:166. arXiv:astroph/0701748.
[26] ROSSWOG S. International Journal of Modern Physics D, 2015, 24:1530012-52. arXiv:1501.02081.
[27] SHIBATA M, TANIGUCHI K. Living Reviews in Relativity, 2011, 14:6.
[28] APRAHAMIAN A, Surman R, Frebel A, et al. FRIB and the GW170817 Kilonova, 2018. arXiv:1809.00703.
[29] BAUSWEIN A, JANKA H T, HEBELER, K, et al. Phys Rev D, 2012, 86:063001. arXiv:1204.1888.
[30] HOTOKEZAKA K, KYUTOKU K, OKAWA H, et al. Phys Rev D, 2011, 83:124008. arXiv:1105.4370.
[31] LACKEY B D, KYUTOKU K, SHIBATA M, et al. Phys Rev D, 2012, 85:044061. arXiv:1109.3402.
[32] METZGER B D, MARTÍNEZ-PINEDO G, DARBHA S, et al. Monthly Notices of the Royal Astronomical Society, 2010, 406:2650. arXiv:1001.5029.
[33] TAKAMI K, REZZOLLA L, BAIOTTI L, et al. Phys Rev Lett, 2014, 113:091104. arXiv:1403.5672.
[34] ILIADIS C I. Nuclear Physics of Stars[M]. Weinheim:WileyVCH, 2007.
[35] LI A, LIU T. Astronomy and Astrophysics, 2013, 555:A129. arXiv:1305.2530.
[36] YUKAWA H. Proceedings of the Physico-mathematical Society of Japan, 1935, 17:48.
[37] TAKETANI M, NAKAMURA S, SASAKI M. Progress of Theoretical Physics, 1951, 6:581.
[38] MACHLEIDT R. Advances in Nuclear Physics, 1989, 19:189.
[39] STOKS V G J, KLOMP R A M, TERHEGGEN C P F, et al. Phys Rev C, 1994, 49:2950. arXiv:nucl-th/9406039.
[40] WIRINGA R B, STOKS V G J, SCHIAVILLA R. Phys Rev C, 1995, 51:38. arXiv:nucl-th/9408016.
[41] MACHLEIDT R. Physical Review C, 2001, 63:024001. arXiv:nucl-th/0006014.
[42] MAESSEN P M M, RIJKEN T A, DE SWART J J. Phys Rev C, 1989, 40:2226.
[43] RIJKEN T A, STOKS V G J, YAMAMOTO Y. Phys Rev C, 1999, 59:21. arXiv:nucl-th/9807082.
[44] ENTEM D R, MACHLEIDT. Phys Rev C, 2003, 68:041001. arXiv:nucl-th/0304018.
[45] MACHLEIDT R, ENTEM D R. Physics Reports, 2011, 503:1. arXiv:1105.2919.
[46] EPELBAUM E, HAMMER H W, MEISSNER U G. Reviews of Modern Physics, 2009, 81:1773. arXiv:0811.1338.
[47] MEISSNER U G. Nuclear Physics A, 2005, 751:149. arXiv:nucl-th/0409028.
[48] EPELBAUM E, GLÖCKLE W, MEISSNER U G. Nuclear Physics A, 2005, 747:362. arXiv:nucl-th/0405048.
[49] EPELBAUM E, KREBS H, MEISSNER U G. European Physical Journal A, 2015, 51:53. arXiv:1412.0142.
[50] ENTEM D R, KAISER N, MACHLEIDT R, et al. Phys Rev C, 2015, 91:014002. arXiv:1411.5335.
[51] EPELBAUM E, KREBS H, MEISSNER U G. Phys Rev Lett, 2015, 115:122301. arXiv:1412.4623.
[52] AOKI S, DOI T, HATSUDA T, et al. Progress of Theoretical and Experimental Physics, 2012, 2012:01A105.arXiv:1206.5088.
[53] BEANE S R, DETMOLD W, ORGINOS K, et al. Progress in Particle and Nuclear Physics, 2011, 66:1. arXiv:1004.2935.
[54] FUKUKAWA K, BALDO M, BURGIO G F, et al. Physical Review C, 2015, 92:065802. arXiv:1507.07288.
[55] KOHNO M. Phys Rev C, 2013, 88:064005. arXiv:1309.4556.
[56] LI Z H, SCHULZE H J. Physical Review C, 2012, 85:064002.
[57] CARBONE A, POLLS A, RIOS. Phys Rev C, 2013, 88:044302. arXiv:1307.1889.
[58] HEBELER K, BOGNER S K, FURNSTAHL R J, et al. Phys Rev C, 2011, 83:031301. arXiv:1012.3381.
[59] CORAGGIO L, HOLT J W, ITACO N, et al. Phys Rev C, 2014, 89:044321. arXiv:1402.0965.
[60] WELLENHOFER C, HOLT J W, KAISER N, et al. Phys Rev C, 2014, 89:064009. arXiv:1404.2136.
[61] DRISCHLER C, HEBELER K, SCHWENK A, et al. Phys Rev C, 2016, 93:054314. arXiv:1510.06728.
[62] HOLT J W, KAISER N, WEISE W. Progress in Particle and Nuclear Physics, 2013, 73:35. arXiv:1304.6350.
[63] RING P, SCHUCK P. The Nuclear Many-Body Problem[M]. New York:Springer-Verlag, 1980.
[64] VAUTHERIN D, BRINK D M. Phys Rev C, 1972, 5:626.
[65] DECHARGÉ J, GOGNY D. Phys Rev C, 1980, 21:1568.
[66] SEROT B D, WALECKA J D. Advances in Nuclear Physics, 1986, 16:1.
[67] BROCKMANN R. Phys Rev C, 1978, 18:1510.
[68] BORDERIE B, RIVET M F. Progress in Particle and Nuclear Physics, 2008, 61:551. arXiv:0812.3524.
[69] SIL T, AGRAWAL B K, DE J N, et al. Phys Rev C, 2001, 63:054604. arXiv:nucl-th/0012061.
[70] PAW LOWSKI P. Phys Rev C, 2002, 65:044615.
[71] PANAGIOTOU A D, CURTIN M W, TOKI H, et al. Phys Rev Lett,1984, 52:496.
[72] DAS C B, DAS GUPTA S, LYNCH W G, et al. Physics Reports, 2005, 406:1. arXiv:nucl-th/0410108.
[73] LI B A, CHEN L W, KO C M. Physics Reports, 2008, 464:113. arXiv:0804.3580.
[74] HEMPEL M, SCHAFFNER-BIELICH J. Nuclear Physics A, 2010, 837:210. arXiv:0911.4073.
[75] CHAMEL N, HAENSEL P. Living Reviews in Relativity, 2008, 11:10. arXiv:0812.3955.
[76] LATTIMER J M, PETHICK C J, RAVENHALL D G. Nuclear Physics A, 1985, 432:646.
[77] JAQAMAN H R, MEKJIAN A Z, ZAMICK L, et al. Phys Rev C, 1984, 29:2067.
[78] SHARMA B K, PAL S. Phys Rev C, 2010, 82:055802. arXiv:1010.5856.
[79] MÜLLER H, SEROT B D. Phys Rev C, 1995, 52:2072. arXiv:nucl-th/9505013.
[80] MARGUERON J, CHOMAZ P. Phys Rev C, 2003, 67:041602. arXiv:nucl-th/0212082.
[81] AVANCINI S S, BRITO L, CHOMAZ P,et al. Phys Rev C, 2006, 74:024317.
[82] WELLENHOFER C, HOLT J W, KAISER N. Phys Rev C, 2015, 92:015801. arXiv:1504.00177.
[83] MARUYAMA T, TATSUMI T, VOSKRESENSKY D N, et al. Phys Rev C, 2005, 72:015802. arXiv:nucl-th/0503027.
[84] FATTOYEV F J, HOROWITZ C J, SCHUETRUMPF B. Phys Rev C, 2017, 95:055804. arXiv:1703.01433.
[85] SCHNEIDER A S, BERRY D K, CAPLAN M E,et al. Phys Rev C, 2016, 93:065806. arXiv:1602.03215.
[86] SHEN H, TOKI H, OYAMATSU K, et al. Astrophys J(Supplement Series), 2011, 197:20, arXiv:1105.1666.
[87] AVANCINI S S, CHIACCHIERA S, MENEZES D P, et al. Phys Rev C, 2010, 82:055807. arXiv:1010.3644; Erratum:ibid. 2012, 85:059904.
[88] DOUCHIN F, HAENSEL P, MEYER J, et al. Nuclear Physics A, 2000, 665:419.
[89] ⅡDA K, OYAMATSU K. Phys Rev C, 2004, 69:037301, arXiv:nucl-th/0401057.
[90] SHEN H, TOKI H, OYAMATSU K, et al. Nuclear Physics A, 1998, 637:435. arXiv:nucl-th/9805035.
[91] BAO Shishao. Neutron Star Crusts and Phase Transition of Stellar Matter[D]. Tianjin:Nankai University, 2017. (in Chinese) (鲍世绍. 中子星壳层结构和超新星物质液气相变的研究[D]. 天津:南开大学, 2017.)
[92] ANGELI I, MARINOVA K P. Atomic Data and Nuclear Data Tables, 2013, 99:69.
[93] WANG M, AUDI G, WAPSTRA A H, et al. Chinese Physics C, 2012, 36:003.
[94] MÖLLER P, SIERK A J, ICHIKAWA T, et al. Atomic Data and Nuclear Data Tables, 2016, 109:1. arXiv:1508.06294.
[95] BLAIZOT J P. Physics Reports, 1980, 64:171.
[96] COLÒ G, GARG U, SAGAWA H. European Physical Journal A, 2014, 50:26. arXiv:1309.1572.
[97] AKMAL A, PANDHARIPANDE V R, RAVENHALL D G. Phys Rev C, 1998, 58:1804. arXiv:nucl-th/9804027.
[98] BALDO M, BOMBACI I, BURGIO G F. Astronomy and Astrophysics, 1997, 328:274. arXiv:astro-ph/9707277.
[99] FUCHS C. Progress in Particle and Nuclear Physics, 2006, 56:1. arXiv:nucl-th/0507017.
[100] GRANGÉ P, LEJEUNE A, MARTZOLFF M. Phys Rev C, 1989, 40:1040.
[101] ZHOU X R, BURGIO G F, LOMBARDO U, et al. Phys Rev C, 2004, 69:018801.
[102] TARANTO G, BALDO M, BURGIO G F. Phys Rev C, 2013, 87:045803. arXiv:1302.6882.
[103] DANIELEWICZ P, LACEY R, LYNCH W G. Science, 2002, 298:1592. arXiv:nucl-th/0208016.
[104] CHEN L W, CAI B J, KO C M, et al. Phys Rev C, 2009, 80:014322. arXiv:0905.4323.
[105] LIU Z W, QIAN Z, XING R Y, et al. Phys Rev C, 2018, 97:025801. arXiv:1801.08672.
[106] LI B A, HAN X. Physics Letters B, 2013, 727:276. arXiv:1304.3368.
[107] DALEN E N, FUCHS C, FAESSLER A. Phys Rev C, 2005, 72:065803. arXiv:nucl-th/0511040.
[108] LI Z H, SCHULZE H J. Phys Rev C, 2008, 78:028801.
[109] TSANG M B, ZHANG Y, DANIELEWICZ P, et al. Phys Rev Lett, 2009, 102:122701. arXiv:0811.3107.
[110] ZHANG Z, CHEN L W. Phys Rev C, 2015, 92:031301. arXiv:1504.01077.
[111] DANIELEWICZ P, LEE J. Nuclear Physics A, 2014, 922:1. arXiv:1307.4130.
[112] CENTELLES M, ROCA-MAZA X, VIÑAS X, et al. Phys Rev Lett, 2009, 102:122502. arXiv:0806.2886.
[113] COZMA M D, LEIFELS Y, TRAUTMANN W, et al. Phys Rev C, 2013, 88:044912. arXiv:1305.5417.
[114] OERTEL M, HEMPEL M, KLÄHN T, et al. Reviews of Modern Physics, 2017, 89:015007. arXiv:1610.03361.
[115] LI A, ZHANG N B, QI B, et al. 2016. arXiv:1610.08770.
[116] LI A, LI B A. 2011. arXiv:1107.0496.
[117] CAI B J, LI B A. Phys Rev C, 2016, 93:014619. arXiv:1509.09290.
[118] FATTOYEV F J, CARVAJAL J, NEWTON W G, et al. Phys Rev C, 2013, 87:015806. arXiv:1210.3402.
[119] FATTOYEV F J, NEWTON W G, LI B A. European Physical Journal A, 2014, 50:45. arXiv:1309.5153.
[120] KRASTEV P G, LI B-A. 2018. arXiv:1801.04620.
[121] LI B A, GUO W J, SHI Z. Phys Rev C, 2015, 91:044601.
[122] SAMMARRUC F. Phys Rev C, 2011, 84:044307. arXiv:1107.3339.
[123] XU C, LI A, LI B A. Journal of Physics Conference Series, 2013, 420:012090. arXiv:1207.1639.
[124] ZHANG N B, LI B A, XU J. Astrophys J, 2018, 859:90. arXiv:1801.06855.
[125] ZHAO Q, SUN B Y, LONG W H. Journal of Physics G Nuclear Physics, 2015, 42:095101. arXiv:1411.6274.
[126] DONG Jianmin, ZUO Wei, GU Jianzhong, et al. Nucl Phys Rev, 2014, 31(4):429. (in Chinese) (董建敏, 左维, 顾建中, 等. 原子核物理评论, 2014, 31(4):429.)
[127] CHEN Liewen. Nucl Phys Rev, 2017, 34(1):20.
[128] WEN Dehua, JING Zhenzhen. Nucl Phys Rev, 2015, 32(2):161. (in Chinese) (文德华, 荆珍珍. 原子核物理评论, 2015, 32(2):161.)
[129] HEN O, SARGSIAN M, WEINSTEIN L B, et al. Science, 2014, 346:614. arXiv:1412.0138.
[130] WANG Z, XU C, REN Z, et al. Phys Rev C, 2017, 96:054603.
[131] BALDO M. The Many-Body Theory of the Nuclear Equation of State, Nuclear Methods And The Nuclear Equation Of State. Series:International Review of Nuclear Physics[M]. Singapore:World Scientific, 1999:120.
[132] FUJITA J, MIYAZAWA H. Progress of Theoretical Physics, 1957, 17:360.
[133] PIEPER S C, PANDHARIPANDE V R, WIRINGA R B, et al. Phys Rev C, 2001, 64:014001. arXiv:nucl-th/0102004.
[134] PUDLINER B S, PANDHARIPANDE V R, CARLSON J, et al. Phys Rev Lett, 1995, 74:4396. arXiv:nucl-th/9502031.
[135] CARLSON J, PANDHARIPANDE V R, WIRINGA R B. Nuclear Physics A, 1983, 401:59.
[136] ZUO W, LEJEUNE A, LOMBARDO U, et al. Nuclear Physics A, 2002, 706:418. arXiv:nucl-th/0202076.
[137] ZUO W, LEJEUNE A, LOMBARDO U, et al. European Physical Journal A, 2002, 14:469. arXiv:nucl-th/0202077.
[138] LI Z H, LOMBARDO U, SCHULZE H J, et al. Phys Rev C, 2008, 77:034316.
[139] LI Z H, LOMBARDO U, SCHULZE H J, et al. Phys Rev C, 2006, 74:047304.
[140] LOGOTETA D, VIDAÑA I, BOMBACI I, et al. Phys Rev C, 2015, 91:064001. arXiv:1502.01248.
[141] BOMBACI I, LOGOTETA D. Astronomy and Astrophysics, 2018, 609:A128. arXiv:1805.11846.
[142] BALDO M, FUKUKAWA K. Phys Rev Lett, 2014, 113:242501. arXiv:1409.7206.
[143] BROCKMANN R, MACHLEIDT R. Phys Rev C, 199042:1965.
[144] CARLSON J, GANDOLFI S, PEDERIVA F, et al. Reviews of Modern Physics, 2015, 87:1067. arXiv:1412.3081.
[145] PANDHARIPANDE V R, WIRINGA R B. Reviews of Modern Physics, 1979, 51:821.
[146] NAVARRO J, GUARDIOLA R, MOLINER I. The Coupled Cluster Method and its Applications[M].Singapore:World Scientific Publishing, 2002:121.
[147] BALDO M, MAIERON C. Journal of Physics G:Nuclear and Particle Physics, 2017, 34 R243. arXiv:nucl-th/0703004.
[148] SKYRME T H R. Nuclear Physics, 1958, 9:615.
[149] SKYRME T H R. Philosophical Magazine, 1956, 1:1043.
[150] DUTRA M, LOURENÇO O, SÁMARTINS J S, et al. Phys Rev C, 2012, 85:035201. arXiv:1202.3902.
[151] CHABANAT E, BONCHE P, HAENSEL P, et al. Nuclear Physics A, 1997, 627:710.
[152] GORIELY S, CHAMEL N, PEARSON J M. Phys Rev C, 2010, 82:035804. arXiv:1009.3840.
[153] GORIELY S, CHAMEL N, PEARSON J M. Phys Rev C, 2013, 88:024308.
[154] GORIELY S, CHAMEL N, PEARSON J M. Phys Rev C, 2013, 88:061302.
[155] CHAMEL N, PEARSON J M, FANTINA A F, et al. Acta Physica Polonica B, 2015, 46:349.
[156] GORIELY S, CHAMEL N, PEARSON J M. Phys Rev C, 2016, 93:034337.
[157] WASHIYAMA K, BENNACEUR K, AVEZ B, et al. Phys Rev C, 2012, 86:054309. arXiv:1209.5258.
[158] KORTELAINEN M, MCDONNELL J, NAZAREWICZ W, et al. Phys Rev C, 2014, 89:054314. arXiv:1312.1746.
[159] STEVENSON P D, GODDARD P M, STONE J R, et al. American Institute of Physics Conference Series, 2013, 1529:262. arXiv:1210.1592.
[160] LI B A, RAMOS À, VERDE G, et al. European Physical Journal A, 2014, 50:9.
[161] GORIELY S, HILAIRE S, GIROD M, et al. Phys Rev Lett, 2009, 102:242501.
[162] GORIELY S, HILAIRE S, GIROD M, et al. European Physical Journal A, 2016, 52:202.
[163] HILAIRE S, GORIELY S, PÉRU S, et al. European Physical Journal A, 2016, 52:336.
[164] GONZALEZ-BOQUERA C, CENTELLES M, VIÑAS X, et al. Phys Rev C, 2017, 96:065806. arXiv:1706.02736.
[165] GONZALEZ-BOQUERA C, CENTELLES M, VIÑAS X, et al. Physics Letters B, 2018, 779:195. arXiv:1712.06735.
[166] SELLAHEWA R, RIOS A. Phys Rev C, 2014, 90:054327. arXiv:1407.8138.
[167] DUERR H P. Physical Review, 1956, 103:469.
[168] WALECKA J D. Annals of Physics, 1974, 83:491.
[169] BOGUTA J, BODMER A R. Nuclear Physics A, 1977, 292:413.
[170] SUGAHARA Y, TOKI H. Nuclear Physics A, 1994, 579:557.
[171] LALAZISSIS G A, KÖNIG J, RING P. Phys Rev C, 1997, 55:540. arXiv:nucl-th/9607039.
[172] LONG W, MENG J, GIAI N V. Phys Rev C, 2004, 69:034319. arXiv:nucl-th/0311031.
[173] TODD-RUTEL B G, PIEKAREWICZ J. Phys Rev Lett, 2005, 95:122501. arXiv:nucl-th/0504034.
[174] PIEKAREWICZ J, WEPPNER S P. Nuclear Physics A, 2006, 778:10. arXiv:nucl-th/0509019.
[175] DUTRA M, LOURENÇO O, AVANCINI S S, et al. Phys Rev C, 2014, 90:055203. arXiv:1405.3633.
[176] DUTRA M, LOURENÇO O, MENEZES D P. Phys Rev C, 2016, 93:025806; Erratum:ibid. 2016, 94:049901.
[177] NIKŠIĆ T, VRETENAR D, FINELLI P, et al. Phys Rev C, 2002, 66:024306. arXiv:nucl-th/0205009.
[178] TYPEL S. Phys Rev C, 2005, 71:064301. arXiv:nucl-th/0501056.
[179] GÖGELEIN P, VAN DALEN E N E, FUCHS C, et al. Phys Rev C, 2008, 77:025802. arXiv:0708.2867.
[180] ROCA-MAZA X, VIÑAS X, CENTELLES M, et al. Phys Rev C, 2011, 84:054309. arXiv:1110.2311.
[181] ANTIĆ S, TYPEL S. Nuclear Physics A, 2015, 938:92. arXiv:1501.07393.
[182] NIKŠIĆ T, VRETENAR D, RING P. Progress in Particle and Nuclear Physics, 2011, 66:519. arXiv:1102.4193.
[183] FORTIN M, PROVIDÊNCIA C, RADUTA A R, et al. Phys Rev C, 2016, 94:035804. arXiv:1604.01944.
[184] BOUYSSY A, MATHIOT J F, VAN GIAI N, et al. Phys Rev C, 1987, 36:380.
[185] SHI H L, CHEN B Q, MA Z Y, et al. Phys Rev C, 1995, 52:144. arXiv:nucl-th/9412010.
[186] XU R, MA Z, VAN DALEN E N E, et al. Phys Rev C, 2012, 85:034613. arXiv:1203.3355.
[187] LONG W, SAGAWA H, GIAI N V, et al. Phys Rev C, 2007, 76:034314. arXiv:0706.3497.
[188] HU J, TOKI H, WEN W, et al. Phys Lett B, 2010, 687:271.
[189] ZHU Z Y, LI A, HU J N, et al. Phys Rev C, 2016, 94:045803. arXiv:1607.04007.
[190] TOKI H, MEYER U, FAESSLER A, et al. Phys Rev C, 1998, 58:3749.
[191] HU J N, LI A, SHEN H, et al. Progress of Theoretical and Experimental Physics, 2014, 2014:013D02. arXiv:1310. 3602.
[192] HU J N, LI A, TOKI H, et al. Phys Rev C, 2014, 89:025802. arXiv:1307.4154.
[193] SHEN H, TOKI H. Nuclear Physics A, 2002, 707:469. arXiv:nucl-th/0104072.
[194] SHEN H, TOKI H. Phys Rev C, 2000, 61:045205. arXiv:nucl-th/9911046.
[195] BARIK N, MISHRA R N, MOHANTY D K, et al. Phys Rev C, 2013, 88:015206.
[196] XING X, HU J, SHEN H. Phys Rev C, 2016, 94:044308. arXiv:1609.04911.
[197] HU J, SHEN H. Phys Rev C, 2017, 96:054304. arXiv:1710.08613.
[198] XING X, HU J, SHEN H. Phys Rev C, 2017, 95:054310. arXiv:1704.08884.
[199] ZHU Z Y, LI A. Phys Rev C, 2018, 97:035805. arXiv:1802.07441.
[200] ZHU Z Y, LI A, HU J N, et al. Phys Rev C, 2019, 99:025804. arXiv:1805.04678.
[201] HOLT J W, KAISER N. Phys Rev C, 2017, 95:034326. arXiv:1612.04309.
[202] https://heasarc.gsfc.nasa.gov/Images/nicer/.
[203] BAYM G, PETHICK C, SUTHERLAND P. Astrophys J, 1971, 170:299.
[204] NEGELE J W, VAUTHERIN D. Nuclear Physics A, 1973, 207:298.
[205] WATTS A L, ANDERSSON N, CHAKRABARTY D, et al. Reviews of Modern Physics, 2016, 88:021001. arXiv:1602. 01081.
[206] ÖZEL F, FREIRE P. Annual Review of Astronomy and Astrophysics, 2016, 54:401. arXiv:1603.02698.
[207] ÖZEL F, PSALTIS D, ARZOUMANIAN Z, et al. Astrophys J, 2016, 832:92. arXiv:1512.03067.
[208] LI Z, FALANGA M, CHEN L, et al. Astrophys J, 2017, 845:8. arXiv:1706.09931.
[209] BURGIO G F, SCHULZE H J, LI A. Phys Rev C, 2011, 83:025804. arXiv:1101.0726.
[210] BEDNAREK I, HAENSEL P, ZDUNIK J L. Astronomy and Astrophysics, 2012, 543:A157. arXiv:1111.6942.
[211] BEJGER M. Astronomy and Astrophysics, 2013, 552:A59. arXiv:1212.2369.
[212] GOMES R O, DEXHEIMER V, SCHRAMM S, et al. Astrophys J, 2015, 808:8. arXiv:1411.4875.
[213] LI A, ZUO W, MI A J, et al. Chinese Physics, 2007, 16:1934.
[214] LI J J, SEDRAKIAN A, WEBER F. Physics Letters B, 2018, 783:234.
[215] LONARDONI D, LOVATO A, GANDOLFI S. Phys Rev Lett, 2015, 114:092301. arXiv:1407.4448.
[216] SUN B Y, LONG W H, MENG J, et al. Phys Rev C, 2008, 78:065805. arXiv:0910.4236.
[217] LONG W H, SUN B Y, HAGINO K, et al. Phys Rev C, 2012, 85:025806. arXiv:1109.5428.
[218] LOPES L, MENEZES D. Journal of Cosmology and AstroParticle Physics, 2018, 5:038. arXiv:1701.03211.
[219] MARQUES M, OERTEL M, HEMPEL M, et al. Phys Rev C, 2017, 96:045806. arXiv:1706.02913.
[220] TOGASHI H, HIYAMA E, YAMAMOTO Y, et al. Phys Rev C, 2016, 93:035808. arXiv:1602.08106.
[221] WEN D H, CHEN W. Chinese Physics B, 2011, 20:029701.
[222] WENG M H, GUO X H, LIU B. Chinese Physics C, 2013, 37:125101.
[223] YU Z, DING W B, BAO T, et al. Chinese Physics Letters, 2011, 28:089701.
[224] HONG B, REN Z Z. Chinese Physics C, 2018, 42:084105. arXiv:1804.03351.
[225] SUN T T, XIA C J, ZHANG S S, et al. Chinese Physics C, 2018, 42:025101. arXiv:1712.05569.
[226] LI J J, LONG W H, SEDRAKIAN A. The European Physical Journal A, 2018, 54:133. arXiv:1801.07084.
[227] LI A, BURGIO G F, LOMBARDO U, et al. Phys Rev C, 2006, 74:055801. arXiv:nucl-th/0610037.
[228] LI A, ZHOU X R, BURGIO G F, et al. Phys Rev C, 2010, 81:025806. arXiv:1002.0642.
[229] WANG G H, FU W J, LIU Y X. Phys Rev C, 2007, 76:065802.
[230] ZUO W, LI A, LI Z H, et al. Phys Rev C, 2004, 70:055802. arXiv:nucl-th/0412102.
[231] LI A, PENG G X, LOMBARDO U. Chinese Physics C, 2009, 33:61.
[232] LI A, ZUO W, PENG G X. Phys Rev C, 2015, 91:035803. arXiv:1503.02739.
[233] PENG G X, LI A, LOMBARDO U. Phys Rev C, 2008, 77:065807. arXiv:0807.0200.
[234] ZDUNIK J L, BEJGER M, HAENSEL P, et al. Astronomy and Astrophysics, 2008, 479:515. arXiv:0707.3691.
[235] ALFORD M, BRABY M, PARIS M, et al. Astrophys J, 2005, 629:969. arXiv:nucl-th/0411016.
[236] BAI Z, CHEN H, LIU Y X. Phys Rev D, 2018, 97:023018. arXiv:1707.09535.
[237] KALTENBORN M A R, BASTIAN N U F, BLASCHKE D B. Phys Rev D, 2017, 96:056024. arXiv:1701.04400.
[238] LI C M, ZHANG J L, YAN Y, et al. Phys Rev D, 2018, 97:103013. arXiv:1804.10785.
[239] SCHRAMM S, DEXHEIMER V, NEGREIROS R. European Physical Journal A, 2016, 52:14. arXiv:1508.04699.
[240] WEI J B, CHEN H, SCHULZE H J. Chinese Physics C, 2017, 41:115101. arXiv:1708.02433.
[241] ZHAO T, XU S S, YAN Y, et al. Phys Rev D, 2015, 92:054012. arXiv:1509.03377.
[242] WEISSENBORN S, SAGERT I, PAGLIARA G, et al. Astrophys J, 2011, 740:L14. arXiv:1102.2869.
[243] CAI B J, FATTOYEV F J, LI B A, et al. Phys Rev C, 2015, 92:015802. arXiv:1501.01680.
[244] DRAGO A, LAVAGNO A, PAGLIARA G, et al. Phys Rev C, 2014,90:065809.
[245] CHEN Y, YUAN Y, LIU Y. Phys Rev C, 2009, 79:055802.
[246] CHEN Y J, GUO H. Communications in Theoretical Physics, 2008, 49:1283.
[247] CHEN Y, GUO H, LIU Y. Phys Rev C, 2007, 75:035806.
[248] XIANG H, HUA G. Phys Rev C, 2003, 67:038801.
[249] WIKTOROWICZ G, DRAGO A, PAGLIARA G. Astrophys J, 2017, 846:163. arXiv:1707.01586.
[250] BOMBACI I, LOGOTETA D, PROVIDENCIA C, et al. Journal of Physics Conference Series, 2011, 336:012021.
[251] DAI Z G, LU T. Phys Rev Lett, 1998, 81:4301. arXiv:astroph/9810332.
[252] CHENG K S, DAI Z G. Phys Rev Lett, 1996, 77:1210. arXiv:astro-ph/9510073.
[253] LI, Z, QU, Z, CHEN, L, et al. Astrophys J, 2015, 798:56. arXiv:1405.3438.
[254] BHATTACHARYYA S, BOMBACI I, LOGOTETA D. Monthly Notices of the Royal Astronomical Society, 2016, 457:3101. arXiv:1601.06120.
[255] CHEN H, WEI J B, SCHULZE H J. European Physical Journal A, 2016, 52:291. arXiv:1603.05755.
[256] CHU P C, CHEN L W. Phys Rev D, 2017, 96:083019. arXiv:1708.09599.
[257] CHU P C, LI X H, WANG B, et al. European Physical Journal C, 2017, 77:512.
[258] LI A, XU R X, LU J F. Monthly Notices of the Royal Astronomical Society, 2010, 402:2715. arXiv:0905.3439.
[259] LU J, XU R. Proceedings of the Workshop on Quarks and Compact Stars 2017, (QCS2017), id.011026. arXiv:1706.04707.
[260] XIA C J, PENG G X, ZHAO E G, et al. Phys Rev D, 2016, 93:085025.
[261] XIA C J, ZHOU S G. Nuclear Physics B, 2017, 916:669.
[262] XU R X. Astrophys J, 2003, 596:L59. arXiv:astroph/0302165.
[263] LAI X Y, XU R X. Journal of Physics Conference Series, 2017, 861:012027. arXiv:1701.08463.
[264] SCHATZ H, GUPTA S, MÖLLER P, et al. Nature, 2014, 505:62. arXiv:1312.2513.
[265] PONS J A, VIGANÒ D, REA N. Nature Physics, 2013, 9:431. arXiv:1304.6546.
[266] RAVENHALL D G, PETHICK C J, WILSON J R. Phys Rev Lett, 1983, 50:2066.
[267] OYAMATSU K. Nuclear Physics A, 1993, 561:431.
[268] BAO S S, SHEN H. Phys Rev C, 2014, 89:045807. arXiv:1405.3837.
[269] BAO S S, SHEN H. Phys Rev C, 2015, 91:015807. arXiv:1501.03239.
[270] BAO Shixiao, HU Jinniu, ZHANG Zhaowen, et al. Nuclear Physics Review, 2017, 34(4):710. (in Chinese) (鲍世绍, 胡金牛, 张肇文, 等. 原子核物理评论, 2017, 34(3):387.)
[271] OKAMOTO M, MARUYAMA T, YABANA K, et al. Phys Rev C, 2013, 88:025801. arXiv:1304.4318.
[272] XU J, CHEN L W, LI B A, et al. Astrophysics J, 2009, 697:1549. arXiv:0901.2309.
[273] XU J, CHEN L W, LI B A, et al. Phys Rev C, 2009, 79:035802. arXiv:0807.4477.
[274] ZHANG N B, LI B A. Journal of Physics G, 2019, 46:014002. arXiv:1808.07955.
[275] NANDI R, BANDYOPADHYAY D, MISHUSTIN I N, et al. Astrophys J, 2011, 736:156. arXiv:1012.5970.
[276] FANG J J, PAIS H, PRATAPSI S, et al. Phys Rev C, 2017, 95:045802. arXiv:1704.00375.
[277] FANG J J, PAIS H, PRATAPSI S, et al. Phys Rev C, 2017, 95:062801. arXiv:1705.08641.
[278] CHEN Y J. Phys Rev C, 2017, 95:035807.
[279] SHARMA B K, CENTELLES M, VIÑAS X, et al. Astronomy and Astrophysics, 2015, 584:A103. arXiv:1506.00375.
[280] QI B, ZHANG N B, SUN B Y, et al. Research in Astronomy & Astrophysics, 2016, 16:60. arXiv:1408.1654.
[281] QIAN Z, XIN R, SUN B. Science China Physics, Mechanics, & Astronomy, 2018, 61:82011. arXiv:1802.03368.
[282] LASKY P D, HASKELL B, RAVI V, et al. Phys Rev D, 2014, 89:047302. arXiv:1311.1352.
[283] LÜ H-J, ZHANG B, LEI W H, et al. Astrophys J, 2015, 805:89. arXiv:1501.02589.
[284] GAO H, ZHANG B, LÜ H J. Phys Rev D, 2016, 93:044065. arXiv:1511.00753.
[285] LI A, ZHANG B, ZHANG N B, et al. Phys Rev D, 2016, 94:083010. arXiv:1606.02934.
[286] LI A. Quarks and Compact Stars 2017(QCS2017), 2018:011025. arXiv:1801.06626.
[287] ALFORD M G, SCHMITT A, RAJAGOPAL K, et al. Reviews of Modern Physics, 2008, 80:1455. arXiv:0709.4635.
[288] BAYM G, HATSUDA T, KOJO T, et al. Reports on Progress in Physics, 2018, 81:056902. arXiv:1707.04966.
[289] JIANG W Z, LI B A, CHEN L W. Astrophys J, 2012, 756:56. arXiv:1207.1686.
[290] DEMOREST P B, PENNUCCI T, RANSOM S M, et al. Nature, 2010, 467:1081. arXiv:1010.5788.
[291] FONSECA E, PENNUCCI T T, ELLIS J A, et al. Astrophys J, 2016, 832:167. arXiv:1603.00545.
[292] ANTONIADIS J, FREIRE P C C, WEX N, et al. Science, 2013, 340:448. arXiv:1304.6875.
[293] IVANENKO D, KURDGELAIDZE D F. Remarks on Quark Stars, 1969, 2:13.
[294] ITOH N. Progress of Theoretical Physics, 1970, 44:291.
[295] BODMER A R. Phys Rev D, 1971, 4:1601.
[296] WITTEN E. Phys Rev D, 1984, 30:272.
[297] HAENSEL P, ZDUNIK J L, SCHAEFER R. Astronomy and Astrophysics, 1986, 160:121.
[298] ALCOCK C, FARHI E, OLINTO A. Astrophys J, 1986, 310:261.
[299] LI X D, BOMBACI I, DEY M, et al. Phys Rev Lett, 1999, 83:3776. arXiv:hep-ph/9905356.
[300] XU R X, QIAO G J, ZHANG B. Astrophys J, 1999, 522:L109. arXiv:astro-ph/9907132.
[301] LAI X Y, XU R X. Monthly Notices of the Royal Astronomical Society, 2009, 398:L31. arXiv:0905.2839.
[302] XU R X, QIAO G J. Chinese Physics Letters, 1999, 16:778. arXiv:astro-ph/9908176.
[303] ZHOU E P, LU J G, TONG H, et al. Monthly Notices of the Royal Astronomical Society, 2014, 443:2705. arXiv:1404.2793.
[304] YUN Chaoang, LAI Xiaoyu, WANG Zhaojun, et al. Nucl Phys Rev, 2017, 34(4):710. (in Chinese) (云朝昂, 来小禹, 王兆军等. 原子核物理评论, 2017, 34(4):710.)
[305] Wang W, Lu J, Tong H, et al. Astrophys J, 2017, 837:81. arXiv:1603.08288.
[306] LI A, ZHU Z Y, ZHOU X. Astrophys J, 2017, 844:41. arXiv:1706.04720.
[307] LAI X Y, YU Y W, ZHOU E P, et al. Research in Astronomy and Astrophysics, 2018, 18:024. arXiv:1710.04964.
[308] ABE K, BRONNER C, HAYATO Y, et al. Astrophys J, 2018, 857:L4. arXiv:1802.04379.
[309] KIMURA S S, MURASE K, BARTOS I, et al. Phys Rev D, 2018, 98:043020. arXiv:1805.11613.
[310] KYUTOKU K, KASHIYAMA K. Phys Rev D, 2018, 97:103001. arXiv:1710.05922.
[311] LIU T, GU W M, ZHANG B. New Astronomy Reviews, 2017, 79:1. arXiv:1705.05516.
[312] MADSEN J, LARSEN J M. Phys Rev Lett, 2003, 90:121102. arXiv:astro-ph/0211597.
[313] WU F, XU R X, MA B Q. Journal of Physics G, 2007, 34:597. arXiv:nucl-th/0610127.
[314] ZHANG H, XU R X. Progress in Astronomy, 2005, 23:144.
[315] LI A, LIU T, GUBLER P, et al. Astroparticle Physics, 2015, 62:115.
[316] PODSIADLOWSKI P, DEWI J D M, LESAFFRE P, et al. Monthly Notices of the Royal Astronomical Society, 2005, 361:1243. arXiv:astro-ph/0506566.
[317] KITAURA F S, JANKA H T, HILLEBRANDT W. Astronomy and Astrophysics, 2006, 450:345. arXiv:astroph/0512065.
[318] TAURIS T M, LANGER N, MORIYA T J, et al. Astrophys J, 2013, 778:L23. arXiv:1310.6356.
[319] SUWA Y, YOSHIDA T, SHIBATA M, et al. Monthly Notices of the Royal Astronomical Society, 2018, 481:3305.
[320] BROWN E F, CUMMING A, FATTOYEV F J, et al. Phys Rev Lett, 2018, 120:182701. arXiv:1801.00041.
[321] FATTOYEV F J, BROWN E F, CUMMING A, et al. Phys Rev C, 2018, 98:025801. arXiv:1710.10367.
[322] YAKOVLEV D G, KAMINKER A D, GNEDIN O Y, et al. Physics Reports, 2001, 354:1. arXiv:astro-ph/0012122.
[323] HESSELS J W T, RANSOM S M, STAIRS I H, et al. Science, 2006, 311:1901. arXiv:astro-ph/0601337.
[324] DELSATE T, CHAMEL N, GÜRLEBECK N, et al. Phys Rev D, 2016, 94:023008. arXiv:1606.00016.
[325] HO W C G, ESPINOZA C M, ANTONOPOULOU D, et al. 14th International Symposium on Nuclei in the Cosmos (NIC2016), 2017, 010805. arXiv:1703.00932.
[326] LI A. Chinese Physics Letters, 2015, 32:079701.
[327] LI A, DONG J M, WANG J B, et al. Astrophys J (Supplement Series), 2016, 223:16. arXiv:1512.00340.
[328] LI A, WANG R. Pulsar Astrophysics the Next Fifty Years, 2018, 337:360. arXiv:1801.07350.
[329] https://users.camk.edu.pl/bhaskell/research/.
[330] DONATI P, PIZZOCHERO P M. Nuclear Physics A, 2004, 742:363.
[331] LINK B, EPSTEIN R I, LATTIMER J M. Phys Rev Lett, 1999, 83:3362. arXiv:astro-ph/9909146.
[332] ANDERSSON N, GLAMPEDAKIS K, HO W C G, ESPINOZA C M. Phys Rev Lett, 2012, 109:241103. arXiv:1207.0633.
[333] CHAMEL N. Phys Rev Lett, 2013, 110:011101. arXiv:1210.8177.
[334] WATANABE G, PETHICK C J. Phys Rev Lett, 2017, 119:062701. arXiv:1704.08859.
[335] ABBOTT B P, ABBOTT R, ABBOTT T D, et al. Astrophys J, 2017, 850:L39. arXiv:1710.05836.
[336] YU Y W, ZHANG B, GAO H. Astrophys J, 2013, 776:L40.
[337] LI S Z, LIU L D, YU Y W, et al. Astrophys J, 2018, 861:L12. arXiv:1804.06597.
[338] DAI Z G, WANG X Y, WU X F. Science, 2006, 311:1127. arXiv:astro-ph/0602525.
[339] ZHANG B. Astrophys J, 2013, 763:L22. arXiv:1212.0773.
[340] GAO H, DING X, WU X F. Astrophys J, 2013, 771:86. arXiv:1301.0439.
[341] ANDERSSON N, KOKKOTAS K D. International Journal of Modern Physics D, 2001, 10:381. arXiv:gr-qc/0010102.
[342] KOKKOTAS K D, SCHWENZER K. European Physical Journal A, 2016, 52:38. arXiv:1510.07051.
[343] AI S, GAO H, DAI Z G, et al. Astrophys J, 2018, 860:57. arXiv:1802.00571.
[344] DRAGO A, PAGLIARA G. Astrophys J, 2018, 852:L32. arXiv:1710.02003.
[345] MA P X, JIANG J L, WANG H, et al. Astrophys J, 2018, 858:74. arXiv:1711.05565.
[346] REZZOLLA L, MOST E R, WEIH L R. Astrophys J, 2018, 852:L25. arXiv:1711.00314.
[347] BAUSWEIN A, JANKA H T, OECHSLIN R, et al. Phys Rev Lett, 2009, 103:011101. arXiv:0812.4248.
[348] BRAMBILLA N, EIDELMAN S, FOKA P, et al. European Physical Journal C 2014, 74:2981. arXiv:1404.3723.