134Chubba J., Watermeyer R. 2016 Feb. Artifice or integrity in the marketization of research impact? Investigating the moral economy of (pathways to) impact statements within research funding proposals in the UK and Australia . Stud. High. Edu. 42 (12): 2360–2372.
135Shulman S. et al. 2016. Higher education at a crossroads: the economic value of tenure and the security of the profession . Academe, March—April 2016, pp. 9–23. www.aaup.org/sites/default/files/2015-16EconomicStatus Report.pdf
136Brembs B. 2015. Booming university administrations . Björn.Brembs.Blog, January 7, 2015. http://bjoern.brembs.net/2015/01/booming-university-administrations
137Foster J. G. et al. 2015. Tradition and innovation in scientists’ research strategies . Am. Sociol. Rev. 80 (5): 875–908.
138Weaver K. et al. 2007. Inferring the popularity of an opinion from its familiarity: a repetitive voice can sound like a chorus . J. Pers. Soc. Psychol. 92 (5): 821–833.
139Odenwald S. 2015. The future of physics . Huffington Post, January 26, 2015. www.huffingtonpost.com/dr-sten-odenwald/the-future-of-physics_b_6506304.html
140Lykken J., Spiropulu M. 2014. Supersymmetry and the crisis in physics . Scientific American, May 1, 2014.
141Khosrovshahi G. B. n. d. Interview with Alain Connes . Retrieved January 2016. www.freewebs.com/cvdegosson/connes-interview.pdf
142Kac M. 1966. Can one hear the shape of a drum? Amer. Math. Monthly. 73 (4): 1–23.
143Chamseddine A. H. et al. 2007. Gravity and the standard model with neutrino mixing . Adv. Theor. Math. Phys. 11: 991–1089. arXiv: hep-th/0610241.
144Connes A. 2008. Irony . Noncommutative Geometry, August 4, 2008. http://noncommutativegeometry.blogspot.de/2008/08/irony.html
145Chamseddine A. H., Connes A. 2012. Resilience of the spectral standard model. JHEP. 1209: 104. arXiv:1208.1030 [hep-ph].
146Hebecker A., Wetterich W. 2003. Spinor gravity . Phys. Lett. B. 574: 269–275. arXiv: hep-th/0307109; Finster F., Kleiner J. 2015. Causal fermion systems as a candidate for a unified physical theory . J. Phys. Conf. Ser. 626: 012020. arXiv:1502.03587 [math-ph].
147Lisi A. G. 2007. An exceptionally simple theory of everything . arXiv:0711.0770 [hep-th].
148Lisi A. G., Weatherall J. O. 2010. A geometric theory of everything . Scientific American, December 2010.
149Kachru S. et al. 2003. De Sitter vacua in string theory . Phys. Rev. D68: 046005. arXiv: hep-th/0301240.
150Hossenfelder S. 2013. Whatever happened to AdS/CFT and the quark gluon plasma? Backreaction, September 12, 2013. http://backreaction.blogspot.com/2013/09/whatever-happened-to-adscft-and-quark.html
151Conlon J. 2015. Why string theory? Boca Raton, FL: CRC Press, p. 135.
152Dyson F. 2009. Birds and frogs. Notices of the AMS. 56 (2): 221.
153Замечательная книга о связи математики и теории струн: Yau S.-T., Nadis S. 2012. The shape of inner space: string theory and the geometry of the universe’s hidden dimensions . New York: Basic Books. (Яу Ш., Надис С. 2012. Теория струн и скрытые измерения Вселенной. СПб.: Питер. – Прим. перев .)
154Очень понятно об этой связи рассказывается здесь: Ronan M. 2006. Symmetry and the monster: the story of one of the greatest quests of mathematics . Oxford, UK: Oxford University Press.
155Polchinski J. 2015. String theory to the rescue . arXiv:1512.02477 [hep-th].
156Polchinski J. 2004. Monopoles, duality, and string theory . Int. J. Mod. Phys. A19S1: 145–156. arXiv: hep-th/0304042.
157Almheiri A. et al. 2013. Black holes: complementarity or firewalls? J. High. Energ. Phys. 2013 (2): 62. arXiv:1207.3123 [hep-th].
158Greene A. 2014. Stephen King: the Rolling Stone interview . Rolling Stone, October 31, 2014.
159Conlon J. 2015. Why string theory? Boca Raton, FL: CRC Press, p. 236.
160Witten E. 2003. Viewpoints on string theory . Nova: The Elegant Universe. PBS. www.pbs.org/wgbh/nova/elegant/viewpoints.html
161Brink L., Henneaux M. 1988. Principles of string theory . Boston: Springer.
162Greene B. 1999. The elegant universe: superstrings, hidden dimensions, and the quest for the ultimate theory. New York: WW Norton, p. 82.
163Cheng Z., Wen X.-G. 2012. Emergence of helicity +/– 2 modes (gravitons) from qubit models . Nucl. Phys. B. 863: 90–129. arXiv:0907.1203 [gr-qc].
164Vinkers C. H. et al. 2015. Use of positive and negative words in scientific PubMed abstracts between 1974 and 2014: retrospective analysis. BMJ. 351: h6467.
165Freese K. 2014. Cosmic cocktail: three parts dark matter . Princeton, NJ: Princeton University Press.
166Feng J. L. 2008. Collider physics and cosmology . Class. Quant. Grav. 25: 114003. arXiv:0801.1334 [gr-qc]; Buckley R. B., Randall L. 2011. Xogenesis . J. High. Energ. Phys. 1109: 009. arXiv:1009.0270 [hep-ph].
167Baudis L. 2015. Dark matter searches . Ann. Phys. (Berlin). 528 (1–2): 74–83. arXiv:1509.00869 [astro-ph.CO].
168Goodman M. W., Witten E. 1985. Detectability of certain dark-matter candidates . Phys. Rev. D. 31 (12): 3059–3063.
169Gelmini G. 1987. Bounds on galactic cold dark matter particle candidates and solar axions from a Ge-spectrometer . In: Hinchliffe I., editor. Proceedings of the theoretical workshop on cosmology and particle physics: July 28 – Aug. 15, 1986, Lawrence Berkeley Laboratory, Berkeley, California . Singapore: World Scientific.
170Benoit A. et al. 2001. First results of the EDELWEISS WIMP search using a 320 g heat-and-ionization Ge detector . Phys. Lett. B. 513: 15–22. arXiv: astro-ph/0106094.
171Xenon100 Collaboration. 2013. Limits on spin-dependent WIMP-nucleon cross sections from 225 live days of XENON100 data . Phys. Rev. Lett. 111: 021301. arXiv:1301.6620 [astro-ph.CO].
172Milgrom M. 1983. A modification of the Newtonian dynamics – implications for galaxies . Astrophys. J. 270: 371.
173См., например, Moffat J. W., Rahvar S. 2013. The MOG weak field approximation and observational test of galaxy rotation curves . MNRAS. 436: 1439. arXiv:1306.6383 [astroph.GA]. См. также другие статьи этих авторов.
174Berezhiani L., Khoury J. 2015. Theory of dark matter superfluidity . Phys. Rev. D. 92: 103510. arXiv:1507.01019 [astro-ph.CO]. Схожая идея предлагалась и раньше: Bruneton J.-P. et al. 2009. Reconciling MOND and dark matter? JCAP. 3: 21. arXiv:0811.3143 [astro-ph].
175Boyle L. A. et al. 2006. Inflationary predictions for scalar and tensor fluctuations reconsidered . Phys. Rev. Lett. 96: 111301. arXiv: astro-ph/0507455.
176Martin J. et al. 2014. The best inflationary models after Planck . JCAP. 1403: 039. arXiv:1312.3529 [astro-ph.CO].
177Azhar F., Butterfield J. 2017. Scientific realism and primordial cosmology . In: Saatsi J., editor. The Routledge handbook of scientific realism . New York: Routledge. arXiv:1606.04071 [physics.hist-ph].
178Silk J. 2007. The dark side of the universe . Astron. Geophys. 48 (2): 2.30–2.38.
179Ijjas A. et al. 2017. Pop goes the universe . Scientific American, January 2017.
180Hawking S. W., Ellis G. F. R. 1973. The large scale structure of space-time . Cambridge, UK: Cambridge University Press. (Хокинг С., Эллис Д. Крупномасштабная структура пространства-времени . М.: Мир, 1977. – Прим. перев .)
Читать дальше
Конец ознакомительного отрывка
Купить книгу