The Effects of Interactions of the Extremely Low-Level …
37
E. Del Guidice describes dynamics of processes in alive organisms, specified in
[6] that «Living systems cannot be thermal systems, but coherent systems» .
It is necessary to note three important factors at the characteristic of quantum
coherent systems.
1. Character of processes in coherent quantum macrosystems has essential differences from incoherent one. For these systems, the phenomena of superradiation
(effect of R. Dicke) [7], displays of effect of Josephson, [8], collective effects
of a response on the external impulses of influence (like the Mossbauer effect),
phenomena of trigger effect on the signals of an extremely low size and others are
possible, which are not described by the laws of classical physics.
For example, according to the principle of Dicke [7], radiation in coherent quantum
systems is collective process and intensity of radiation is proportional to a square
of number of particles, i.e., ~N
2 , instead of number of particles N, as in incoherent
environments.
There can be also the phenomena of screening of Coulomb barrier of particles due
to plasma vibrations and other quantum effects, characteristics only for the coherent
systems, substantially reducing a factor of influencing potential barrier, impedimental
of approaching particles on distances in which a nuclear reaction can begin on.
2. Management of processes in coherent quantum systems is possible at very deep
level where processes of transfer of energy are not involved [9]. Such management
can be carried out only through vector magnetic potential.
Circumstance that these two differences have not been taken into account in theoretical interpretations of events, which is taking place in coherent and not coherent
environments, is one of the reasons of the absence of understanding the essence of
reactions CNF and LENR. Exactly, this fact was marked repeatedly by the creator
of new theory of water, built in accordance with principles of quantum theory of the
field, J. Preparata and by his colleagues, researches of which have led to prominent
results not only in area of physics of water [6] but also in the theory of cold nuclear
fusion [10].
3. For biological systems, except for the mentioned features, there is one more
factor on which alive cardinally differs from lifeless: the presence of biological
fields. The most essential contribution to research of a biological field has brought
in Gurvich [11].
These three factors, practically, determine all dynamics of functioning of an alive
organism. We shall note that they are not independent; they should be considered in
unity and the interrelation providing existence of an organism as a single whole.
So, in [12], it is underlined that partial loss of coherence can be considered
as disease of an organism. In turn, renewal of an organism supposes renewal of
the energy and information interrelations, which occur with the participation of
biofield interactions, an essential role which is executed by processes, guided through
the influence of vector magnetic potential which is carrying out the information
functions.
The abovementioned three factors for biosystems cause specificity that the
processes in an organism can be managed by signals having an ultralow intensity. As
37
E. Del Guidice describes dynamics of processes in alive organisms, specified in
[6] that «Living systems cannot be thermal systems, but coherent systems» .
It is necessary to note three important factors at the characteristic of quantum
coherent systems.
1. Character of processes in coherent quantum macrosystems has essential differences from incoherent one. For these systems, the phenomena of superradiation
(effect of R. Dicke) [7], displays of effect of Josephson, [8], collective effects
of a response on the external impulses of influence (like the Mossbauer effect),
phenomena of trigger effect on the signals of an extremely low size and others are
possible, which are not described by the laws of classical physics.
For example, according to the principle of Dicke [7], radiation in coherent quantum
systems is collective process and intensity of radiation is proportional to a square
of number of particles, i.e., ~N
2 , instead of number of particles N, as in incoherent
environments.
There can be also the phenomena of screening of Coulomb barrier of particles due
to plasma vibrations and other quantum effects, characteristics only for the coherent
systems, substantially reducing a factor of influencing potential barrier, impedimental
of approaching particles on distances in which a nuclear reaction can begin on.
2. Management of processes in coherent quantum systems is possible at very deep
level where processes of transfer of energy are not involved [9]. Such management
can be carried out only through vector magnetic potential.
Circumstance that these two differences have not been taken into account in theoretical interpretations of events, which is taking place in coherent and not coherent
environments, is one of the reasons of the absence of understanding the essence of
reactions CNF and LENR. Exactly, this fact was marked repeatedly by the creator
of new theory of water, built in accordance with principles of quantum theory of the
field, J. Preparata and by his colleagues, researches of which have led to prominent
results not only in area of physics of water [6] but also in the theory of cold nuclear
fusion [10].
3. For biological systems, except for the mentioned features, there is one more
factor on which alive cardinally differs from lifeless: the presence of biological
fields. The most essential contribution to research of a biological field has brought
in Gurvich [11].
These three factors, practically, determine all dynamics of functioning of an alive
organism. We shall note that they are not independent; they should be considered in
unity and the interrelation providing existence of an organism as a single whole.
So, in [12], it is underlined that partial loss of coherence can be considered
as disease of an organism. In turn, renewal of an organism supposes renewal of
the energy and information interrelations, which occur with the participation of
biofield interactions, an essential role which is executed by processes, guided through
the influence of vector magnetic potential which is carrying out the information
functions.
The abovementioned three factors for biosystems cause specificity that the
processes in an organism can be managed by signals having an ultralow intensity. As
