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    <title>Auteurs : Richard L. Amoroso</title>
    <link>http://popups.lib.uliege.be/1373-5411/index.php?id=2302</link>
    <description>Publications of Auteurs Richard L. Amoroso</description>
    <language>fr</language>
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      <title>The Schrödinger Equation in Complex Minkowski Space, Nonlocality and Anticipatory Systems</title>
      <link>http://popups.lib.uliege.be/1373-5411/index.php?id=3756</link>
      <description>We develop a formalism for the Schrôdinger equation in an eight dimensional complex Minkowski space and discuss its relation to the Dirac equation, properties of nonlocality, remote connectedness, Young's double slit experiment, Bell's Theorem, the EPR paradox and anticipatory parameters of spacetime; and also identify an imaginary temporal component as a small nonlinear term and find soliton or solitary wave solutions. These coherent solutions can carry information over long distances, are consistent with Lorentz invariance and appear to provide a fundamental methodology for describing the issue of quantum measurement and a new context for the basis of quantum theory. In the Copenhagen view models of reality are not desirable. However our new approach may enable the redefinition of concepts of reality from a new nonlocal anticipatory quantum theory. Certainly the most desirable consequence of scientific discovery is the ability to redefine our concepts of reality.  </description>
      <pubDate>Thu, 26 Sep 2024 15:14:25 +0200</pubDate>
      <lastBuildDate>Tue, 08 Oct 2024 14:19:27 +0200</lastBuildDate>
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      <title>Class II Mesoionic Xanthines as Potential Ten-Qubit Quantum Computer Substrate Registers</title>
      <link>http://popups.lib.uliege.be/1373-5411/index.php?id=3744</link>
      <description>Class II mesoionic xanthines such as anhydro-(8-hydroxyalkyl-5-hydroxy-7-oxothia zolo[3,2-a]pyrimidinium hydroxides) are unique, small atomic weight, stable crystalline organic compounds that can be represented as a combination often different resonance structures for each simple xanthine molecule. Each resonance structure contributes a certain percentage to the total resonance of the molecule. This unique resonance represents ten different quantum states of the entire molecule and can thus be exploited as a potential substrate for a ten-qubit register. The number of possible superposition states for such a register in a single molecule is potentially as high as 2' states or (in this case where n = 10) 1,024 complex numbers. In solution the least-unit of this mesoionic crystalline structure is scalable suggesting putative utility for bulk NMR quantum computing. It will be shown that these ten-qubit registers are amenable to standard Deutsch-Jozsa, Shor and Grover algorithms. Additionally, we attempt to formalize VO techniques for our Class II mesoionic xanthines based on a coherent control RF process of cumulative resonant interaction where by utilizing additional degrees of freedom pertinent to a relativistic basis for the qbit (r-qbit) new HD commutation rules allow decoherence to be ontologically overcome </description>
      <pubDate>Thu, 26 Sep 2024 12:21:53 +0200</pubDate>
      <lastBuildDate>Tue, 08 Oct 2024 13:38:13 +0200</lastBuildDate>
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      <title>Holoinformational Consciousness: An Extension of Interactive Dualism with Anticipatory Parameters</title>
      <link>http://popups.lib.uliege.be/1373-5411/index.php?id=3740</link>
      <description>The authors propose a quantum-informational holographic model of brain consciousness-universe interactions based on the holonomic neural networks of Karl Pribram, the holographic quantum theory of David Bohm, and the non-locality property of the quantum field described by Hiroomi Umezawa. We consider this model an extension of the interactive dualism of Sir John Eccles. His ideas of an interconnection between brain and spirit by means of quantum microsites (dendrons and psychons), has deeply influenced the development of our conception of consciousness. We propose a dynamic concept of consciousness, a holoinformational flux interconnecting holonomic informational quantum brain dynamics, with the quantum informational holographic nature of the universe. </description>
      <pubDate>Thu, 26 Sep 2024 11:52:52 +0200</pubDate>
      <lastBuildDate>Tue, 08 Oct 2024 14:31:49 +0200</lastBuildDate>
      <guid isPermaLink="true">http://popups.lib.uliege.be/1373-5411/index.php?id=3740</guid>
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      <title>Empirical Mediation of the Primary Mechanism Initiating Protein Conformation in Prion Propagation</title>
      <link>http://popups.lib.uliege.be/1373-5411/index.php?id=3725</link>
      <description>Transmissible prion based spongiform encephalopathies propagate by conformational change of the prion's protein, PrP structure. An experimental design, relying on the utility of a new fundamental teleological action principle inherent in the topological geometry of a covariant polarized Dirac vacuum putatively driving self-organization in all autopoietic complex living systems, is developed to elucidate the fundamental nature of this conformational change. Further, PrP propagation is considered a mechanical action that can be described by 'interactive computational modes' of 'topological switching' driven by incursive oscillations occurring in the bioenergetics of the prions physical chemistry when improperly coupled to the long-range coherence of the noetic action. The experimental apparatus, a multi-level interferometer, is designed to focus this noetic field in a manner that simulates the mechanism driving PrP conformation to pathological form.  </description>
      <pubDate>Thu, 26 Sep 2024 11:23:24 +0200</pubDate>
      <lastBuildDate>Tue, 08 Oct 2024 13:54:34 +0200</lastBuildDate>
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      <title>Universal Quantum Computing: Anticipatory Parameters Predictng Bulk Implementation, Part I - Philosophical Foundations for the Formalism</title>
      <link>http://popups.lib.uliege.be/1373-5411/index.php?id=3716</link>
      <description>We introduce an anticipatory approach to Universal Quantum Computing (UQC) utilizing a variety of extended theoretical parameters. </description>
      <pubDate>Thu, 26 Sep 2024 11:15:12 +0200</pubDate>
      <lastBuildDate>Tue, 08 Oct 2024 13:41:31 +0200</lastBuildDate>
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      <title>Emergence of Generalized F-Theory 2-Branes from SUSY Spacetime Parameters of the Discrete Incursive Oscillator</title>
      <link>http://popups.lib.uliege.be/1373-5411/index.php?id=3703</link>
      <description>We simulate the emergence of 2-branes from the spacetime backcloth utilizing the Discrete lncursive Oscillator (DIO) </description>
      <pubDate>Thu, 26 Sep 2024 10:48:43 +0200</pubDate>
      <lastBuildDate>Tue, 08 Oct 2024 13:20:07 +0200</lastBuildDate>
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      <title>The Physical Implications of Multidimensional Geometries and Measurement</title>
      <link>http://popups.lib.uliege.be/1373-5411/index.php?id=2480</link>
      <description>We have developed Non-Abelian gauge groups for real and complex amended Maxwell's equations in a complex 8-Dimensional Minkowski space to describe nonlocality in quantum theory and relativity which has quantum gravitational implications. We demonstrate a mapping between the twistor algebra of the complex 8-space and the spinor calculus of 5D Kaluza-Klein geometry which attempts to unify Gravitational and EM theory. Our quantum formalism demonstrates that solving the Schrödinger equation in a complex 8D geometry yields coherent collective state phenomena with soliton wave solutions. The model shows that standard quantum theory is a linear approximation to a higher Dimensional complex space. Through this formalism we can assess that complex systems can be defined within conventional quantum theory as long as we express that theory in a hyper-geometric space. We utilize our complex dimensional geometry to formulate nonlocal correlated phenomena, including the quantum description of the 1935 EPR paradox formulated with Bell's theorem. Tests by Clauser, Aspect, Gisin have demonstrated that particles emitted with approximde simultaneity at c remain correlated nonlocally over meter and kilometer distances. As Stapp has said, Bell's theorem and its experimental verification is one of the most profound discoveries of the 20th century. We will demonstrate the application of our formalism for complex systems and review the history of our model from 1974. </description>
      <pubDate>Fri, 23 Aug 2024 13:26:24 +0200</pubDate>
      <lastBuildDate>Fri, 23 Aug 2024 13:26:32 +0200</lastBuildDate>
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      <title>Elucidating the Trigger of Alzheimer's Disease : A Complex Anticipatory Systems Approach</title>
      <link>http://popups.lib.uliege.be/1373-5411/index.php?id=2299</link>
      <description>Recent discovery of ADDL protein (Amyloid β-Derived Diffusible Ligand) allows the trigger mechanism causing Alzheimer's Disease (AD) to be described by principles of complex systems theory. This entails a teleological cosmology with inherent self-organized / anticipatory parameters introducing a life principle (élan vital) providing the action driving self-organization in autopoietic living systems. Interaction between this Noetic Field (élan vital) and brain is defined in terms of a Hamiltonian-Lagrange operator called the Noetic Effect. If mind/body interactions mediating this Noetic Effect drive the system away from equilibrium catastrophes causing protein misfolds may trigger the onset of AD. The discovery of ADDL also promises an AD vaccine. </description>
      <pubDate>Wed, 31 Jul 2024 12:58:38 +0200</pubDate>
      <lastBuildDate>Wed, 31 Jul 2024 12:58:46 +0200</lastBuildDate>
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