• NUCLEAR TECHNIQUES
  • Vol. 46, Issue 8, 080021 (2023)
Zhihong LI1,2,*, Gexing LI1, Hankui WANG3, Yunju LI1..., Na SONG1, Chen CHEN1, Junwen TIAN1, Chao DONG1 and Jiayinghao LI1|Show fewer author(s)
Author Affiliations
  • 1China Institute of Atomic Energy, Beijing 102413, China
  • 2University of Chinese Academy of Sciences, Beijing 101408, China
  • 3Zhejiang SCI-TECH University, Hangzhou 310018, China
  • show less
    DOI: 10.11889/j.0253-3219.2023.hjs.46.080021 Cite this Article
    Zhihong LI, Gexing LI, Hankui WANG, Yunju LI, Na SONG, Chen CHEN, Junwen TIAN, Chao DONG, Jiayinghao LI. Supernovae and their scientific secrets[J]. NUCLEAR TECHNIQUES, 2023, 46(8): 080021 Copy Citation Text show less
    References

    [1] Woosley S E, Heger A, Weaver T A. The evolution and explosion of massive stars[J]. Reviews of Modern Physics, 74, 1015-1071(2002).

    [2] Woosley S E, Blinnikov S, Heger A. Pulsational pair instability as an explanation for the most luminous supernovae[J]. Nature, 450, 390-392(2007).

    [3] Graur O[M]. Supernova(2022).

    [4] Branch D, Wheeler J C[M]. Supernova explosions(2017).

    [5] Hillebrandt W, Niemeyer J C. Type ia supernova explosion models[J]. Annual Review of Astronomy and Astrophysics, 38, 191-230(2000).

    [6] Iben I, Tutukov A V. Supernovae of type I as end products of the evolution of binaries with components of moderate initial mass[J]. The Astrophysical Journal Letters Supplement Series, 54, 335-372(1984).

    [7] Yang J, Fan X Y, Feng C J et al. Latest data constraint of some parameterized dark energy models[J]. Chinese Physics Letters, 40, 019801(2023).

    [8] Friedman A. Über die Krümmung des raumes[J]. Zeitschrift Für Physik, 10, 377-386(1922).

    [9] Li G X, Li Z H. Relation between varying fine structure constant and cosmological components[J]. Physical Review D, 103, 063504(2021).

    [10] Li G X, Li Z H. Effect of cosmic mean metallicity on the supernovae cosmology[J]. The Astronomical Journal, 162, 249(2021).

    [11] Rutherford E. Origin of actinium and age of the earth[J]. Nature, 123, 313-314(1929).

    [12] Truran J W. The age of the universe from nuclear chronometers[J]. Proceedings of the National Academy of Sciences of the United States of America, 95, 18-21(1998).

    [13] Meyer B S, Truran J W. Nucleocosmochronology[J]. Physics Reports, 333–334, 1-11(2000).

    [14] LI Zhihong. Recent study progress in age of the universe[J]. Atomic Energy Science and Technology, 53, 1747-1754(2019).

    [15] Cameron A G W, Truran J W. The supernova trigger for formation of the solar system[J]. Icarus, 30, 447-461(1977).

    [16] Lattimer J M, Schramm D N, Grossman L. Supernovae, grains and the formation of the Solar System[J]. Nature, 269, 116-118(1977).

    [17] Banerjee P, Qian Y Z, Heger A et al. Evidence from stable isotopes and 10Be for solar system formation triggered by a low-mass supernova[J]. Nature Communications, 7, 13639(2016).

    [18] Boss A P, Keiser S A. Supernova-triggered molecular cloud core collapse and the Rayleigh-Taylor fingers that polluted the solar nebula[J]. The Astrophysical Journal Letters, 756, L9(2012).

    [19] Gaidos E, Krot A N, Williams J P et al. 26Al and the formation of the solar system from a molecular cloud contaminated by Wolf-Rayet winds[J]. The Astrophysical Journal Letters, 696, 1854-1863(2009).

    [20] Li G X, Li Z H. The 26Al production of the ν e -process in the explosion of massive stars[J]. The Astrophysical Journal Letters, 932, 49(2022).

    [21] Su J, Zhang H, Li Z H et al. First result from the Jinping Underground Nuclear Astrophysics experiment JUNA: precise measurement of the 92 keV 25Mg(p,γ)26Al resonance[J]. Science Bulletin, 67, 125-132(2022).

    [22] Bonner W A. Parity violation and the evolution of biomolecular homochirality[J]. Chirality, 12, 114-126(2000).

    [23] Miller S L. The production of amino acids under possible primitive earth conditions[J]. Science, 117, 528(1953).

    [24] Boyd R N, Kajino T, Onaka T. Supernovae and the chirality of the amino acids[J]. Astrobiology, 10, 561-568(2010).

    [25] Brakenridge G R. Solar system exposure to supernova γ radiation[J]. International Journal of Astrobiology, 20, 48-61(2021).

    [26] Wallner A, Feige J, Kinoshita N et al. Recent near-Earth supernovae probed by global deposition of interstellar radioactive 60Fe[J]. Nature, 532, 69-72(2016).

    [27] Castelvecchi D. How to capture an exploding star[J]. Nature, 602, 562-565(2022).

    [28] Gao X Y, Reich W, Sun X H et al. Peering into the Milky Way by FAST: IV. identification of two new Galactic supernova remnants G203.1+6.6 and G206.7+5.9[J]. Science China Physics, Mechanics & Astronomy, 65, 129705(2022).

    Zhihong LI, Gexing LI, Hankui WANG, Yunju LI, Na SONG, Chen CHEN, Junwen TIAN, Chao DONG, Jiayinghao LI. Supernovae and their scientific secrets[J]. NUCLEAR TECHNIQUES, 2023, 46(8): 080021
    Download Citation