The Effects of Interactions
of the Extremely Low-Level Radiation
with Quantum Coherent Nanosystems
Ludmila Stepanovna Martseniuk and Aleksandr Stepanovich Martseniuk
1 Introduction
The display of effects of small doses of radiation is most typically found out in the
coherent environment of alive organisms. However, the similar effects can be found
out and in some not biological objects. Such effects represent a theoretical interest as
discovered by the features of functioning of the coherent systems, and, in particular,
the alive organisms. Practical interest will be that the disclosing of this mechanism,
possibly, will allow us to find another way to decision of the very important task—
creation of working installations in which the guided cold nuclear fusion can be
carried out.
The phenomena of the low-energy nuclear reactions were opened by L. Alvarets.
Exactly for these openings, he was awarded the Nobel bonus on physics as early as
in 1968 [1].
Now many laboratories of the various countries conduct researches on studying an
opportunity of reception of superfluous energy due to low-energy reactions of nuclear
synthesis commercially. Significant successes in this way are received. Among them
it is possible to note, for example, creation of functioning installation of reception
of superfluous heat—warm generator Rossi (nickel lithium aqueous reactor) which
work was accompanied by the change of isotope structure of reaction components at
the real absence of excretions of radioactive waste products and without radioactive
radiation.
L. S. Martseniuk (B)
Institute of Nuclear Researches of the National Academy of Science of Ukraine, 03680 Prospect
Nauky 47, Kiev, Ukraine
e-mail: prolisok77@gmail.com
A. S. Martseniuk
Department of Science and Education of Ukraine, National University of Food Technology,
Vladimirskaya 68, 601 Kiev, Ukraine
© Springer Nature Switzerland AG 2021
O. Fesenko and L. Yatsenko (eds.), Nanomaterials and Nanocomposites,
Nanostructure Surfaces, and Their Applications, Springer Proceedings
in Physics 246, https://doi.org/10.1007/978-3-030-51905-6_4
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