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<journal-id journal-id-type="publisher">london-journal-of-research-in-science-natural-and-formal</journal-id>
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<journal-title>London Journal of Research In Science: Natural and Formal</journal-title>
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<issn publication-format="print">2631-8490</issn>
<issn publication-format="electronic">2631-8504</issn>
<publisher><publisher-name>JournalsPress</publisher-name></publisher>
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<article-id pub-id-type="publisher-id">64852</article-id>
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<article-title>Some Features of a Gravitational Field Quantization</article-title>
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<volume>19</volume>
<issue>2</issue>
<fpage>17</fpage>
<lpage>28</lpage>
<abstract><p>The problems connected to propagation of a gravitational field are considered. The law of change of an electromagnetic radiation frequency in a gravitational field is shown. On the basis use of a quantum gravitational eikonal the energy of a single graviton is found. Refusal from a stresses tensor in structure of an energy-impulse tensor has allowed the quantum form of the energy-impulse tensor in Einstein’s equation is found. It is shown that the solution of the Einstein??s equation for the certain direction in this case represents the sum of a gravitational wave and a graviton. It is noticed that the deep understanding of process of the gravitational waves with massive body interaction can be only at the quantum philosophy. It is shown that at approach of a graviton to the massive bodies (double stars) radiating gravitational waves there is a resonant pumping of the gravitational field energy of these bodies to the gravitons. It enables registration of the gravitons with the help of the detector located near to massive bodies.</p></abstract>
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<p>The problems connected to propagation of a gravitational field are considered. The law of change of an electromagnetic radiation frequency in a gravitational field is shown. On the basis use of a quantum gravitational eikonal the energy of a single graviton is found. Refusal from a stresses tensor in structure of an energy-impulse tensor has allowed the quantum form of the energy-impulse tensor in Einstein&#039;s equation is found. It is shown that the solution of the Einstein??s equation for the certain direction in this case represents the sum of a gravitational wave and a graviton. It is noticed that the deep understanding of process of the gravitational waves with massive body interaction can be only at the quantum philosophy. It is shown that at approach of a graviton to the massive bodies (double stars) radiating gravitational waves there is a resonant pumping of the gravitational field energy of these bodies to the gravitons. It enables registration of the gravitons with the help of the detector located near to massive bodies.</p>
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