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Space Research
Reference:

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Serga Eduard Vasilevich

PhD in Technical Science

Leading Research Fellow at the Military and Engineering Corporation 

141090, Russia, Korolev, Mkr. Yubileinyi, ul. Pionerskaya, 1/4

serga-e@yandex.ru
Other publications by this author
 

 
Gladkov Igor' Aleksandrovich

Doctor of Technical Science



105064, Russia, g. Moscow, ul. Kazakova, 16, of. 16-05

gladkov35@mail.ru

DOI:

10.7256/2453-8817.2018.1.25455

Received:

13-02-2018


Published:

15-09-2018


Abstract: The subject of the article is the theoretical rationale of the experiment, which implementation can prove the possibility of gravity control. In modern practice, only methods are available aimed at overcoming the gravitational pull (passive methods). The widely discussed question, concerning the possibility of active gravity control, is under theoretical research and has not yet been experimentally confirmed. The proposed model of the experiment is based on the theoretical concepts of physical vacuum as a material medium in which electromagnetic and gravitational waves propagate. The methods of formal logic, as well as general scientific research, approaches: generalization and critical analysis of theoretical positions and experimental data, synthesis, was used to solve the tasks. The paper designs the promising method of action on the vacuum, which can lead to disturbance of its structure and characteristics, and, consequently, to the interruption (full or partial) gravity interaction. According to the authors estimates the effect of reducing the gravity force can be experimentally detected using existing charged particle accelerators without additional time-consuming research.


Keywords:

Gravity Research, Gravity control, Gravitational wave, Gravity Pole, Antiproton, Propagation of gravity, Physical vacuum, Vacuum structure, Vacuum pair, Pair production

References
1. Chernobrov V. A. Parad graviletov // Novaya energetika, ¹ 4, 2003. S. 33-37.
2. Goryachko I. G., Dobrosotskii A. V. Sposob upravleniya elektromagnitnym-gravitatsionnym polem material'nogo tela. URL: http://www.findpatent.ru /patent/220/2202133 (data obrashcheniya: 13.02.208)
3. West T. Scientists To Manipulate Gravity? Current Technology Could Turn Off And On Gravitational Field At Will // Inquisitr. 09 Jan. 2016. URL: https://www.inquisitr.com/2692718/scientists-to-manipulate-gravity-current-technology-could-turn-off-and-on-gravitational-field-at-will/ (data obrashcheniya: 13.02.208).
4. Shipov G. I. Teoriya fizicheskogo vakuuma. Teoriya, eksperimenty i tekhnologii. Izd. vtoroe, ispravlennoe i dopolnennoe. – M., «Nauka», 1997.
5. Kruglyakov E. P. Uchenye s bol'shoi dorogi / RAN. Komissiya po bor'be s lzhenaukoi i fal'sifikatsiei nauchnykh issledovanii.- M., Nauka. 2001.
6. Serga E. V. Fizicheskii vakuum kak forma materii: novyi vzglyad na strukturu i svoistva // Issledovaniya kosmosa. 2017. ¹ 2. S. 85-100.
7. Serga E. V. K teorii fizicheskogo vakuuma: rasprostranenie elektromagnitnykh i gravitatsionnykh voln // Issledovaniya kosmosa. 2017. ¹ 3. S. 163-172.
8. Volovik G. E. Ot efira N'yutona k vakuumu sovremennoi fiziki // N'yuton i filosofskie problemy KhKh veka. – M., 1991. S. 88-98.
9. Fizicheskii entsiklopedicheskii slovar'. Effekt Kupera / gl. redaktor akad. AN SSSR A. M. Prokhorov. – M.: Sovetskaya entsiklopediya. 1983. S. 335.
10. Cooper L. N. Bound electron pairs in a degenerate Fermi gas. // Physical Reiew.1956.Vol. 104. ¹ 4. P. 1189-1190.
11. Fizika mikromira: malen'kaya entsiklopediya / gl. red. chl.-korr. AN SSSR D. V. Shirkov. M., «Sovetskaya entsiklopediya». 1980.
12. Fizicheskaya entsiklopediya. T. 1. Antiproton // gl. redaktor akad. AN SSSR A. M. Prokhorov. – M.: Sovetskaya entsiklopediya. 1988. S. 335.
13. Frauenfel'der G., Khenli E. Subatomnaya fizika. Per. s angl. Izd. «Mir». – M. 1979. S. 47.