References
213
40. Double Chooz collaboration, Phys. Rev. Lett. 108, 131801 (2012) ;
Daya Bay collaboration, Phys. Rev. Lett. 108, 171803 (2012);
RENO collaboration, Phys. Rev. Lett. 108, 191802 (2012)
41. G. Dvali, L. Funcke, Small neutrino masses from gravitational θ-term. Phys.
Rev. D93, 113002 (2016);
G. Barenboim, J. Turner, Y.L. Zhou, Light neutrino masses from gravitational
condensation: the Schwinger-Dyson approach. arXiv:1909.04675 [hep-ph]
42. C.P. Enz, No Time to be Brief (Oxford University Press, Oxford, 2002)
43. E. Epelbaum, H. Krebs, T.A. Lahde, D. Lee, U.G. Meissner, Viability of carbonbased life as a function of the light quark mass. Phys. Rev. Lett. 110(11), 112502
(2013)
44. For a description of Majorana’s scientific contributions, see E. Recami, Ettore
Majorana: his work and his life. Int. J. Mod. Phys. D 23, 1444009 (2014)
45. For a review of the MOND theory, see B. Famaey, S. McGaugh, Modified
Newtonian Dynamics (MOND): observational phenomenology and relativistic
extensions. Living Rev. Rel. 15, 10 (2012)
46. For an excellent summary of heavy element nucleosynthesis as of 2018, see A.
Frebel, T. Beers, The formation of the heaviest elements. Phys. Today 71, 1 (2018)
47. For a historical review of the developments leading to the GIM mechanism,
see, L. Maiani, The GIM Mechanism: origin, predictions and recent uses.
arXiv:1303.6154 [hep-ph]
48. For a summary of the current knowledge about neutrino decay, see M. Escudero,
M. Fairbairn, Cosmological constraints on invisible neutrino decays revisited.
Phys. Rev. D 100(10), 103531 (2019)
49. For books that provide the broad landscape of physics beyond the standard
model with many more details, see
R. N. Mohapatra, Unification and Supersymmetry: Frontiers of Quark Lepton
Physics, 3rd edn. (Springer, Berlin, 2003);
P. Ramond, Journeys Beyond the Standard Model (Taylor and Francis, Milton
Park, 2003);
S. Weinberg, Quantum Theory of Fields (Cambridge University Press, Cambridge, 2005);
H. Baer, X. Tata, Weak Scale Supersymmetry: From Superfields to Scattering Events
(Cambridge University Press, Cambridge, 2006;
M. Drees, R. Godbole, P. Roy, Theory and Phenomenology of Sparticles: An
Account of Four-Dimensional N = 1 Supersymmetry in High Energy Physics (World
Scientific, Singapore, 2006);
P.G. Langacker, The Standard Model and Beyond (Taylor and Francis, Milton
Park, 2009);
C. Quigg, Gauge Theories of the Strong, Weak, and Electromagnetic Interactions
(Princeton University Press, Princeton, 2013)
Précédent

- 210/219

Suivant