78
E.J. Brändas
information theory [26, 27], is in fact a quite different conception. As demonstrated
in the appendices further below, the STN configuration reproduces evolution in that
it inhibits loss of ordering between the phases of the system or otherwise stated is
decoherence code forbidden leading to atypically longer lifetimes.
To complete the picture, we call attention to the sub-dynamics programme of the
Brussels School [22, 28], a derivation that combines classical and quantum mechanics employing the Nakajima-Zwanzig projection and the Liouville operator technique [29, 30]. Making use of the dilation analytic properties of the many-body
molecular Hamiltonian, i.e. employing the universal complex scaling method for
the subsequent analytical continuation via a mathematical theorem due to Balslev
and Combes [31] the author derived and developed the advanced-retarded representation of the Prigogine Generalized Master Equation [32], see e.g. Refs. [15, 33, 34].
These extensions are not merely technical as the possibility to formulate and analyze
the STN concept rests on the incorporation of broken symmetry solutions (parity violations, time irreversibility, non-probabilistic evolution etc.) resulting in the above
mentioned quantum-thermal unification. Moreover it will be easy to separate, in the
Master Equation, the appropriate residue contributions of its key partaker, the nonhermitian collision operator, in addition to calculate related creation- and destruction operators via proper analytic continuation as ascertained by the mathematical
theorem just mentioned. The ensuing spectral limit on the real axis gives the dissipativity condition for a quantum mechanical system with an absolutely continuous
spectrum as well as rigorously defining necessary analytic extensions.
In summary the primary differences between the causal dynamics of the Brussels
School and the present formulation is appended. Thus it is advocated [13, 37]:
(i) a retarded-advanced (homeo-, morpho-, teleo-) dynamics, allowing conversion
of the authentic time evolution into contracted semigroups
(ii) a relaxed positivity preserving condition, compelling a non-probabilistic interpretation
(iii) an entrenched integration of an inevitable objective loss of information
(iv) a wide-ranging self-organization through integral quantum-thermal correlations as established by the instituted Bloch thermalization.
This progression begets a new concept, viz. the Spatio-Temporal Neumatic structure, STN, which in addition to perpetuating microscopic self-organization including
a rich variation of timescales as well as (code-forbidden) protection against decoherence, also brings about transmissible encodable transformations yielding authorization to consecutive changes between germane, e.g. polymorph biological states.
4.3 Nucleic Acids Versus Proteins as Cell Discriminator in Vivo
The recent Nobel Prize in Physiology and Medicine, recognized work that concerned the remarkable possibility to reprogram somatic cells to so-called induced
pluripotent stem cells, IPS [35, 36]. This achievement is not only predicted to stimulate progress and providing new tools to scientists around the world in many areas
E.J. Brändas
information theory [26, 27], is in fact a quite different conception. As demonstrated
in the appendices further below, the STN configuration reproduces evolution in that
it inhibits loss of ordering between the phases of the system or otherwise stated is
decoherence code forbidden leading to atypically longer lifetimes.
To complete the picture, we call attention to the sub-dynamics programme of the
Brussels School [22, 28], a derivation that combines classical and quantum mechanics employing the Nakajima-Zwanzig projection and the Liouville operator technique [29, 30]. Making use of the dilation analytic properties of the many-body
molecular Hamiltonian, i.e. employing the universal complex scaling method for
the subsequent analytical continuation via a mathematical theorem due to Balslev
and Combes [31] the author derived and developed the advanced-retarded representation of the Prigogine Generalized Master Equation [32], see e.g. Refs. [15, 33, 34].
These extensions are not merely technical as the possibility to formulate and analyze
the STN concept rests on the incorporation of broken symmetry solutions (parity violations, time irreversibility, non-probabilistic evolution etc.) resulting in the above
mentioned quantum-thermal unification. Moreover it will be easy to separate, in the
Master Equation, the appropriate residue contributions of its key partaker, the nonhermitian collision operator, in addition to calculate related creation- and destruction operators via proper analytic continuation as ascertained by the mathematical
theorem just mentioned. The ensuing spectral limit on the real axis gives the dissipativity condition for a quantum mechanical system with an absolutely continuous
spectrum as well as rigorously defining necessary analytic extensions.
In summary the primary differences between the causal dynamics of the Brussels
School and the present formulation is appended. Thus it is advocated [13, 37]:
(i) a retarded-advanced (homeo-, morpho-, teleo-) dynamics, allowing conversion
of the authentic time evolution into contracted semigroups
(ii) a relaxed positivity preserving condition, compelling a non-probabilistic interpretation
(iii) an entrenched integration of an inevitable objective loss of information
(iv) a wide-ranging self-organization through integral quantum-thermal correlations as established by the instituted Bloch thermalization.
This progression begets a new concept, viz. the Spatio-Temporal Neumatic structure, STN, which in addition to perpetuating microscopic self-organization including
a rich variation of timescales as well as (code-forbidden) protection against decoherence, also brings about transmissible encodable transformations yielding authorization to consecutive changes between germane, e.g. polymorph biological states.
4.3 Nucleic Acids Versus Proteins as Cell Discriminator in Vivo
The recent Nobel Prize in Physiology and Medicine, recognized work that concerned the remarkable possibility to reprogram somatic cells to so-called induced
pluripotent stem cells, IPS [35, 36]. This achievement is not only predicted to stimulate progress and providing new tools to scientists around the world in many areas
