60. "CNO cycle". Cosmos — The SAO Encyclopedia of Astronomy. Web. 23 ноя. 2014. http://astronomy.swin.edu.au/cosmos/C/CNO+cycle
61. Franz Muheim (2006). "Junior Honours Nuclear and Particle Physics — Part II: Particle Physics". The University of Edinburgh. Lecture 10, p. 3. http://www2.ph.ed.ac.uk/~muheim/teaching/np3/lect-ZandW.pdf
62. Ишханов Б.С., Кэбин Э.И. «Шпаргалка для отличника (Частицы и ядра) — Глюоны». МГУ. http://nuclphys.sinp.msu.ru/spargalka/053.htm
63. M.A. Thomson (Lent 2004). "Lecture Courses — Part II, Particle Physics — QCD". University of Cambridge. P. 4. http://www.hep.phy.cam.ac.uk/~thomson/lectures/partIIparticles/pp2004_qcd.pdf
64. Ишханов Б.С., Кэбин Э.И. «Антиматерия». МГУ. Гл. 11. http://nuclphys.sinp.msu.ru/antimatter/ant11.htm
65. "CNO cycle". Wikipedia. Web. 29 ноя. 2014. http://en.wikipedia.org/wiki/CNO_cycle
66. Надежин Д.К. «Углеродный цикл». Физика Космоса — Маленькая Энциклопедия / Гл. ред. Р. А. Сюняев, 2-е изд. — М.: Советская Энциклопедия, 1986.
67. F. Palla, H. Zinnecker (2002). A. Maeder, G. Meynet, eds. "Physics of Star Formation in Galaxies". Springer, рp. 25, 43.
68. Fred C. Adams (1996). Ben Zuckerman, Matthew A. Malkan, eds. "The Origin and Evolution of the Universe". Jones & Bartlett, pp. 46–47.
69. F. Palla, H. Zinnecker (2002). A. Maeder, G. Meynet, eds. "Physics of Star Formation in Galaxies". Springer, рp. 43, 45.
70. "Red dwarf star". Encyclopaedia Britannica. Web. 30 ноя. 2014. http://www.britannica.com/EBchecked/topic/494217/red-dwarf-star
71. Philip Massey, Michael R. Meyer (October 2001). "Stellar Masses".
72. Fred C. Adams, Gregory Laughlin, and Genevieve J. M. Graves (2004). "Red Dwarfs and the End of the Main Sequence".
73. Peter P. Eggleton, John Faulkner (1981). I. Iben Jr. and A. Renzini (eds.). "Why Do Stars Become Red Giants?".
74. O.R. Pols (September 2011). "Stellar Structure and Evolution". Astronomical Institute Utrecht. P. 150. Web. 2 дек. 2014. http://www.ucolick.org/~woosley/ay112-14/texts/pols11.pdf
75. "Triple-alpha process". Wikipedia. Web. 4 дек. 2014. http://en.wikipedia.org/wiki/Triple-alpha_process
76. Kragh, Helge (07 Oct 2010). "When is a prediction anthropic? Fred Hoyle and the 7.65 MeV carbon resonance". University of Aarhus. P. 18. http://philsci-archive.pitt.edu/5332/
77. C.R. Nave. "The Hoyle Resonance".
78. Ишханов Б.C., Капитонов И.М., Тутынь И.А. «Нуклеосинтез во Вселенной». — М.: Изд-во Московского университета, 1998. — Гл. 6. http://nuclphys.sinp.msu.ru/nuclsynt/n06.htm
79. L. Siess (December III 2007). "Evolution of massive AGB stars — II. model properties at non-solar metallicity and the fate of Super-AGB stars".
80. Sean G. Ryan, Andrew J. Norton (2010). "Stellar Evolution and Nucleosynthesis". Cambridge University Press, p. 109.
81. Albert A. Zijlstra (7 Nov 1994). "Stellar Evolution and Mass Loss on the Asymptotic Giant Branch", p. 1. arXiv: http://arxiv.org/abs/astro-ph/9411023v1
82. Daniel J. Eisenstein et al. (2006 November). "A Catalog of Spectroscopically Confirmed White Dwarfs from the Sloan Digital Sky Survey Data Release 4".
83. Mukremin Kilic et al. (2007 May 10). "The Lowest Mass White Dwarf".
84. S. O. Kepler et al. (March 11, 2007). "White dwarf mass distribution in the SDSS". Mon. Not. R. Astron. Soc. 375
, 1315–1324, p. 1315. DOI: http://dx.doi.org/10.1111/j.1365-2966.2006.11388.x85. Ишханов Б.C., Капитонов И.М., Тутынь И.А. «Нуклеосинтез во Вселенной — Белый карлик». — М.: Изд-во Московского университета, 1998. http://nuclphys.sinp.msu.ru/nuclsynt/n10a.htm
86. Shipman, H. L. (Feb. 15, 1979). "Masses and radii of white-dwarf stars. III — Results for 110 hydrogen-rich and 28 helium-rich stars".