The experimental detection of the hidden periodicities in the activity of various radioactive sources which were observed by different instruments and which coincided with the period of the free oscillations of the Sun gave an impetus to the further research. The simultaneous recording of gamma rays from two radioactive sources revealed the elements of synchronism and the periods of solar oscillations as well as the phase delay for the different sources in the obtained time series. A neutrino detector has been designed and tested, the advanced schemes for neutrino detection are developed, and the impact of the neutrino source on the radioactive matter is explored. The search for the new principles for creating the emitters of neutrino beams is conducted.
KeywordsRadioactive SourcePeriodicities of RadioactivitySolar Oscillations and NeutrinoAbnormal Capture Cross SectionNeutrino BeamsNeutrino Detector
Khavroshkin, O. and Tsyplakov, V. (2011) Radioactivity of Nuclei in a Centrifugal Force Field. The Natural Science (NS), 3, 733-737.
Khavroshkin, O. and Tsyplakov, V. (2013) Sun, Earth, Radioactive Ore: Common Periodicity. The Natural Science (NS), 5, 1001-1005.
Khavroshkin, O.B. and Tsyplakov, V.V. (2013) The Radioactivity, Solar Neutrino, Interactions. Engineering Physics, Moscow, No. 8, 53-62.
Siegert, Н., Shrader, H. and Schotzis, U. (1998) Half-Life Measurements of Europium Radio Nuclides and the Long-Term Stability of Detectors. Applied Radiation and Isotopes, 49, 1397-1401.
Ellis, K.J. (1990) The Affective Half-Life of a Broad Beam 238PuBe Total Body Neutron Irradiator. Physics in Medicine and Biology, 35, 1079-1088.
Alburder, D.E., Harbottle, G. and Norton, E.F. (1986) Half-Life of 32Si. Earth and Planetary Science Letters, 78, 169.
Parkhomov, A.G. and Maklyaev, E.F. (2004) Search of Rhyhmtms and Fluctuations of Radioactivity, Quartzes Resonators, Noise of Half Conductivity, Temperature and Atmosphere Pressure in Long Time Measurements. Physical Thought of Russia, No. 1, 1-12.
Parkhomov, A.G. (2010) Researches of Alpha Beta Radioactivity at Long-Term Observations. arXiv:1004.1761v1 [physics.gen-ph].
Parkhomov, A.G. (2009) Space. Earth. Human. New Aspects of Science. Science, Moscow.
Baurov, Y.A., Sobolev, Y.G., et al. (2000) Experimental Research of Change Velocity of Beta Decay for Radioactivity Elements. Physical Thought of Russia, No. 1, 1-7.
Baurov, Y.A. and Malov, I.F. (2010) Variations of Decay Rates of Radio-Active Elements and Their Connections with Global Anisotropy of Physical Space. arXiv:1001.5383v1 [physics.gen-ph].
Sturrock, P.A., Buncher, J.B., Fischbach, E., Gruenwald, J.T., Javorsek II, D., Jenkins, J.H., Lee, R.H., Mattes, J.J. and Newport, J.R. (2010) Power Spectrum Analysis of Physicalisch-Technische Bundesanstalt Decay-Rate Data: Evidence for Solar Rotational Modulation. Solar Physics, 267, 251-265. http://dx.doi.org/10.1007/s11207-010-9659-4
Jenkins, J.H., Herminghuysen, K.R., Blue, T.E., Fischbach, E., Javorsek II, D., Kauffman, A.C., Mundy, D.W., Sturrock, P.A. and Talnagi, J.W. (2012) Additional Experimental Evidence for a Solar Influence on Nuclear Decay Rates. Astroparticle Physics, 37, 81-88. http://dx.doi.org/10.1016/j.astropartphys.2012.07.008
Parkhomov, A.G. (2009) Research Alpha and Beta Radioactivity of Long-Term Measurements. Space. Earth. Human. New Aspects of Science. Science, Moscow.
Sturrock, P.A., Parkhomov, A.G., Fischbach, E. and Jenkins, J.H. (2012) Power Spectrum Analysis of LMSU (Lomonosov Moscow State University) Nuclear Decay-Rate Data: Further Indication of R-Mode Oscillations in an Inner Solar Tachocline. Astroparticle Physics, 35, 755-758. http://dx.doi.org/10.1016/j.astropartphys.2012.03.002
Parkhomov, A.G. (2011) Deviations from Beta Radioactivity Exponential Drop. Journal of Modern Physics, 2, 1310- 1317. http://dx.doi.org/10.4236/jmp.2011.211162
Starodubov, A.V., Khavroshkin, O.B. and Tsyplakov, V.V. (2014) From the Periodicity of Radioactivity to the Cosmic and Metaphysical Oscillations. Metaphysics, No. 1, Russian Peoples’ Friendship University, Moscow, 137-149.
Shestopalov, I.P., Belov, S.V., Soloviev, A. A. and Kuzmin, Y.D. (2013) About Neutron Generation and Geomagnetic Disturbance which Connection with Chilean Earthquake on 27 February and a Volcanic Eruption in Iceland in March- April 2010. Geo Magnet and Aeronomic, 53, 130-142.
Wang, H.-Z. (1990) On the Internal Energy Source of the Large Planets. Chinese Astronomy and Astrophysics, 14, 361-370. http://dx.doi.org/10.1016/0275-1062(90)90015-6
Letnikov, F.A. (2001) On the Problem of the Earth’s Internal Heat Source. Reports of the Russian Academy of Sciences, 378, 387-389.
Anisichkin, V. F., Voronin, D.V. and Kryukov, B.P. (1999) Calculation of the Fragmentation of the Planets in the Explosion. Proceedings of the International Conference, V Zababakhin Scientific Readings, VNIITF Publisher, Snezhinsk, 89-91.
Dodonov, V.V., Klimov, A.B. and Man’ko, V.L. (1996) Low Energy Wave Packet Tunneling from a Parabolic Potential Well through a High Potential Barrier. Physics Letters A, 220, 41-48. http://dx.doi.org/10.1016/0375-9601(96)00482-3
Iben Jr., I. and Mahaffy, J. (1976) On the Sun’s Acoustical Spectrum. Astrophysical Journal, 209, L39-L43. http://dx.doi.org/10.1086/182262
Bolotovski, B.M., Yu, D. and Usachev, M. (Eds.) (1970) Dirac Monopole. Collection of Articles, Translated from English.
Polyakov, A.M. (1974) Particle Spectrum in the Quantum Field Theory. JETP Letters, 20, 194-195.
Khavroshkin, O. and Tsyplakov, V. (2013) Nonlinear Seismology: The Space Component. Palmarium Academic Publishing, Saarbrücken, 516.
Bakal, J. (1993) Neutrino Astrophysics. Translated from English, Mir, Moscow, 624 p.
Davis Jr., R. (1996) A Review of Measurement of the Solar Neutrino Flux and Their Variation. Nuclear Physics B—Proceedings Supplements, 48, 284-298. http://dx.doi.org/10.1016/0920-5632(96)00263-0
Shestopalov, I.P., Kuzhevsky, B.M. and Kharin, E.P. (2014) Correlation of Neutrino Fluxes with Seismicity of the Earth. The Hypothesis of the Possible Formation of Neutrinos on the Period of Strong Deep Earthquakes. Engineering Physics, No. 1, 5-12.