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И. Студеникин, И. В. Токарев // Научная конференция “Ломоносовские чтения”,секция физики: матер. конф. — М, 2012. — С. 58-61.[34] Баланцев, И. А. Движение нейтрино и электронов в среде и магнитном поле в рамках метода точных решений: дис. ... канд. физ.-мат. наук: 01.04.02/ Баланцев Илья Анатольевич — М., 2012. — 105 с.[35] Баланцев, И. А. Бета-распад во внешнем магнитном поле / И. А.
Баланцев, А. И. Студеникин. — М.: Физический факультет МГУ, 2013. — 160 с.[36] Observation of a new particle in the search for the Standard Model Higgsboson with the ATLAS detector at the LHC / G. Aad et al. // Phys. Lett. B.— 2012. — Vol. 716. — P. 1-29.[37] Observation of a new boson at a mass of 125 GeV with the CMS experimentat the LHC / S. Chatrchyan et al. // Phys. Lett. B. — 2012. — Vol. 716. —P. 30-61.[38] Global analysis of neutrino masses, mixings and phases: entering the era ofleptonic CP violation searches / G. L. Fogli et al.
// Phys. Rev. D. — 2012. —Vol. 86. — P. 013012.[39] Search for neutrinos from transient sources with the ANTARES telescope andoptical follow-up observations / M. Ageron et al. // Nucl. Instrum. Meth. A.— 2012. — Vol. 692. — P. 184-187.[40] Evidence for High-Energy Extraterrestrial Neutrinos at the IceCube Detector/ M. G.
Aartsen et al. // Science. — 2013. — Vol. 342. — P. 1242856.[41] Fermi, E. Tentativo di una teoria dei raggi β / E. Fermi // Nuovo Cim. —1934. — Vol. 11. — P. 1-19.[42] Review of particle physics / J. Beringer et al. // Phys. Rev. D. — 2012. — Vol.86. — P. 010001.[43] Bethe, H. The “Neutrino” / H. Bethe, R. Peierls // Nature. — 1934. — Vol.133. — P.
532.102[44] Pontecorvo, B. Nuclear capture of mesons and the meson decay / B.Pontecorvo // Phys. Rev. — 1947. — Vol. 72. — P. 246.[45] Puppi, G. Sui mesoni dei raggi cosmici / G. Puppi // Nuovo Cim. — 1948. —Vol. 5. — P. 587-588.[46] Klein, O.
Mesons and nucleons / O. Klein // Nature. — 1948. — Vol. 161. —P. 897-899.[47] Yang, C. N. Reflection properties of spin 1/2 fields and a universal fermi typeinteraction / C. N. Yang, J. Tiomno // Phys. Rev. — 1950. — Vol. 79. — P.495-498.[48] Lee, T. D. Question of parity conservation in weak interactions / T. D. Lee,C. N.
Yang // Phys. Rev. — 1956. — Vol. 104. — P. 254-258.[49] Experimental test of parity conservation in beta decay / C. S. Wu et al. //Phys. Rev. — 1957. — Vol. 105. — P. 1413-1414.[50] Garwin, R. L. Observations of the failure of conservation of parity and chargeconjugation in meson decays: the magnetic moment of the free muon / R. L.Garwin, L. M. Lederman, M. Weinrich // Phys. Rev. — 1957. — Vol. 105. —P. 1415-1417.[51] Landau, L. D. On the conservation laws for weak interactions / L. D.
Landau// Nucl. Phys. — 1957. — Vol. 3. — P. 127-131.[52] Lee, T. D. Parity nonconservation and a two component theory of the neutrino/ T. D. Lee, C. N. Yang // Phys. Rev. — 1957. — Vol. 105. — P. 1671-1675.[53] Salam, A. On parity conservation and neutrino mass / A. Salam // NuovoCim. — 1957. — Vol.
5. — P. 299-301.[54] Goldhaber, M. Helicity of neutrinos / M. Goldhaber, L. Grodzins, A. W.Sunyar // Phys. Rev. — 1958. — Vol. 109. — P. 1015-1017.[55] Detection of the free neutrino: a confirmation / C. L. Cowan et al. // Science.— 1956. — Vol. 124. — P. 103-104.[56] Reines, F. Cowan, C.
L. The neutrino / F. Reines, C. L. Cowan // Nature. —1956. — Vol. 178. — P. 446-449.103[57] Reines, F. Cowan, C. L. Neutrino physics / F. Reines, C. L. Cowan // Phys.Today. — 1957. — Vol. 10. — P. 12-18.[58] Feynman, R. Theory of Fermi interaction / R. Feynman, M. Gell-Mann //Phys.
Rev. — 1958. — Vol. 109. — P. 193-198.[59] Sudarshan, E. Chirality invariance and the universal Fermi interaction / E.Sudarshan, R. Marshak // Phys. Rev. — 1958. — Vol. 109. — P. 1860-1862.[60] Observation of high-energy neutrino reactions and the existence of two kindsof neutrinos / G. Danby et al. // Phys. Rev. Lett. — 1962.
— Vol. 9. — P. 36-44.[61] Pontecorvo, B. Electron and muon neutrinos / B. Pontecorvo // Sov. Phys.JETP. — 1960. — Vol. 10. — P. 1236-1240.[62] Reines, F. Detection of anti-electron-neutrino e scattering / F. Reines, H. S.Gurr, H. W. Sobel // Phys. Rev. Lett. — 1976. — Vol. 37. — P. 315-318.[63] Glashow, S. L. Partial symmetries of weak interactions / S. L. Glashow //Nucl.
Phys. — 1961. — Vol. 22. — P. 579-588.[64] Weinberg, S. A model of leptons / S. Weinberg // Phys. Rev. Lett. — 1967.— Vol. 19. — P. 1264-1266.[65] Salam, A. Weak and electromagnetic interactions / A. Salam // Conf. Proc.— 1968. — Vol. C680519. — P. 367-377.[66] Nakano, T. Charge independence for V-particles / T. Nakano, K. Nishijima// Prog. Theor. Phys. — 1953. — Vol. 10. — P. 581-582.[67] Nishijima, K.
Charge independence theory of V particles / K. Nishijima //Prog. Theor. Phys. — 1955. — Vol. 13. — P. 285-304.[68] Gell-Mann, M. The interpretation of the new particles as displaced chargedmultiplets / M. Gell-Mann // Nuovo Cim. — 1956. — Vol. 4. — P. 848-866.[69] ’t Hooft, G. Renormalizable lagrangians for massive Yang-Mills fields / G. ’tHooft // Nucl. Phys. B. — 1971. — Vol. 35. — P. 167-188.[70] Evidence for anomalous lepton production in e+ - e− annihilation / M.
Perlet al. // Phys. Rev. Lett.— 1975. — Vol. 35. — P. 1489-1492.104[71] Observation of tau neutrino interactions / K. Kodama et al. // Phys. Lett. B.— 2001. — Vol. 504. — P. 218-224.[72] Higgs, P. Broken symmetries, massless particles and gauge fields / P. Higgs //Phys. Lett.— 1964. — Vol. 12. — P. 132-133.[73] Higgs, P. Broken symmetries and the masses of gauge bosons / P. Higgs //Phys. Rev. Lett.— 1964. — Vol. 13. — P. 508-509.[74] Gell-Mann, M. Behavior of neutral particles under charge conjugation / M.Gell-Mann, A.
Pais // Phys. Rev. — 1955. — Vol. 97. — P. 1387-1389.[75] Bahcall, J. N. Solar neutrinos - a scientific puzzle / J. N. Bahcall, R. Davis //Science. — 1976. — Vol. 191. — P. 264-267.[76] Measurement of the solar electron neutrino flux with the Homestake chlorinedetector / B. T. Cleveland et al. // Astrophys. J. — 1998. — Vol.
496. — P.505-526.[77] Gribov, V. N. Neutrino astronomy and lepton charge / V. N. Gribov, B.Pontecorvo // Phys. Lett. B. — 1969. — Vol. 28. — P. 493.[78] Bilenky, S. M. Quark-lepton analogy and neutrino oscillations / S. M. Bilenky,B. Pontecorvo // Phys. Lett. B. — 1976. — Vol.
61. — P. 248.[79] Bilenky, S. M. Again on Neutrino Oscillations / S. M. Bilenky, B. Pontecorvo// Lett. Nuovo Cim. — 1976. — Vol. 17. — P. 569.[80] Wolfenstein, L. Neutrino oscillations in matter / L. Wolfenstein // Phys. Rev.D. — 1978. — Vol. 17. — P. 2369-2374.[81] Grigoriev, A. Effect of matter motion and polarization in neutrino flavoroscillations / A. Grigoriev, A. Lobanov, A.
Studenikin // Phys. Lett. B. —2002. — Vol. 535. — P. 187-192.[82] Atmospheric neutrino oscillation analysis with sub-leading effects in SuperKamiokande I, II, and III / R. Wendell et al. // Phys. Rev. D. — 2010. — Vol.81. — P. 092004.[83] Results from Super-Kamiokande / Y. Takeuchi et al. // Nucl. Phys. B. — 2012.— Vol. 229–232. — P.
79–84.105[84] Maki, Z. Remarks on the unified model of elementary particles / Z. Maki, M.Nakagawa, S. Sakata // Prog. Theor. Phys. — 1962. — Vol. 28. — P. 870-880.[85] Forero, D. V. Global status of neutrino oscillation parameters after Neutrino2012 / D. V. Forero, M. Tortola, J. W. F.
Valle // Phys. Rev. D. — 2012. —Vol. 86. — P. 073012.[86] Thomas, S. A. Upper bound of 0.28eV on the neutrino masses from the largestphotometric redshift survey / S. A. Thomas, F. B. Abdalla, O. Lahav // Phys.Rev. Lett. — 2010. — Vol. 105. — P. 031301.[87] Battye, R. A. Evidence for massive neutrinos from cosmic microwavebackground and lensing observations / R. A. Battye, A. Moss // Phys. Rev.Lett.
— 2014. — Vol. 112. — P. 051303.[88] Current direct neutrino mass experiments / G. Drexlin, V. Hannen, S. Mertens,C. Weinheimer // Adv. High Energy Phys. — 2013. — Vol. 2013. — P. 293986.[89] Current direct neutrino mass experiments / Ch. Kraus et al. // Eur. Phys. J.C. — 2005.
— Vol. 40. — P. 447-468.[90] An upper limit on electron antineutrino mass from Troitsk experiment / V.N. Aseev et al. // Phys. Rev. D. — 2011. — Vol. 84. — P. 112003.[91] Studenikin, A. Neutrino magnetic moment: a window to new physics / A.Studenikin // Nucl. Phys. Proc. Suppl. — 2009. — Vol. 188. — P. 220-222.[92] Giunti, C.
Neutrino electromagnetic properties / C. Giunti, A. Studenikin //Phys. Atom. Nucl. — 2009. — Vol. 72. — P. 2089-2125.[93] Giunti, C. Electromagnetic properties of neutrinos / C. Giunti, A. Studenikin// J. Phys. Conf. Ser. — 2010. — Vol. 203. — P. 012100.[94] Broggini, C. Electromagnetic properties of neutrinos / C. Broggini, C. Giunti,A.
Studenikin // Adv. High Energy Phys. — 2012. — Vol. 2012. — P. 459526.[95] Fujikawa, K. The magnetic moment of a massive neutrino and neutrino spinrotation / K. Fujikawa, R. Shrock // Phys. Rev. Lett. — 1980. — Vol. 45. —P. 963.106[96] Cisneros, A. Effect of neutrino magnetic moment on solar neutrino observations/ A. Cisneros // Astrophys. Space Sci. — 1980. — Vol.
10. — P. 87-92.[97] Schechter, J. Majorana neutrinos and magnetic fields / J. Schechter, J. W. F.Valle // Phys. Rev. D. — 1981. — Vol. 24. — P. 1883-1889.[98] Lim, C.-S. Resonant spin-flavor precession of solar and supernova neutrinos /C.-S. Lim, W. Marciano // Phys. Rev. D. — 1988. — Vol. 37. — P. 1368.[99] Akhmedov, E. Resonant amplification of neutrino spin rotation in matter andthe solar-neutrino problem / E. Akhmedov // Phys. Lett. B. — 1988. — Vol.213. — P. 64.[100] Smirnov, A. The Geometrical phase in neutrino spin precession and the solarneutrino problem / A.
















