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- W1992478709 abstract "In this work the most universal mechanism of essential acceleration of low energy nuclear reactions on the basis of correlated states of interacting particles is considered. This mechanism provides a giant increase of barrier penetrability under critical conditions (low energy, high barrier), where the effectiveness of “ordinary” tunneling effects is negligibly small, and can be applied to different experiments. The physical reason of an increased barrier penetrability in correlated states is connected to the modified uncertainty relation σpσq⩾ℏ2/41-rpq2 for correlated states and to the increase in momentum σp and position σq variances with increasing of correlation coefficient rpq. We have considered preconditions and methods of formation of correlated coherent states of interacting nuclei in non-stationary dynamical systems. It was shown that in real nuclear-physical systems at rpq2→1 very sharp growth (up to a factor of 1030–10100 and more!) of Coulomb barrier penetrability at very low energy of interacting particles is possible. Several successful low-energy correlated-induced fusion experiments are discussed." @default.
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- W1992478709 date "2013-12-01" @default.
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- W1992478709 title "Acceleration of low energy nuclear reactions by formation of correlated states of interacting particles in dynamical systems" @default.
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- W1992478709 doi "https://doi.org/10.1016/j.anucene.2013.02.021" @default.
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