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In this work we demonstrate that non-zero neutrino masses can be generated from gravitational interactions.
Theory of superconductivity
John Bardeen, L. N. Cooper, and J. R. Schrieffer · 1957
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Dynamical Model of Elementary Particles Based on an Analogy with Superconductivity. 1
Yoichiro Nambu and G. Jona-Lasinio · 1961
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One loop divergencies in the theory of gravitation
Gerard ’t Hooft and M. J. G. Veltman · 1974
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μ → e γ \mu\to e\gamma at a Rate of One Out of 10 9 10^{9} Muon Decays?
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A Theory of Lepton Number Violation, Neutrino Majorana Mass, and Oscillation
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Neutrino Masses, Mixings and Oscillations in SU(2) x U(1) Models of Electroweak Interactions
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Proton Lifetime and Fermion Masses in an SO(10) Model
George Lazarides, Q. Shafi, and C. Wetterich · 1981
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Neutrino Masses and the Scale of B-L Violation
C. Wetterich · 1981
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Neutrino Masses and Mixings in Gauge Models with Spontaneous Parity Violation
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Neutrino Decay and Spontaneous Violation of Lepton Number
J. Schechter and J. W. F. Valle · 1982
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Remarks on the Zee Model of Neutrino Mixing (mu —> e gamma, Heavy Neutrino —> Light Neutrino gamma, etc.)
S. T. Petcov · 1982
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STABILITY OF FERMION AND MOMENTUM CUTOFF IN QUANTUM GRAVITY IN FLAT BACKGROUND SPACE-TIME
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CHIRAL SYMMETRY BREAKING IN QUANTUM GRAVITY IN FLAT BACKGROUND SPACE-TIME
Osamu Abe · 1985
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R. N. Mohapatra and J. W. F. Valle · 1986
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Model of ’Calculable’ Majorana Neutrino Masses
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The Lightest of Black Holes
Xavier Calmet · 2014
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Package-X: A Mathematica package for the analytic calculation of one-loop integrals
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