Fundamental Physics at the Vigier Centenary, pp. 1-69 (2021) Free AccessChapter 1: The Dirac Electron Hypertube Revisited Nonlocal Parameters Within Extended Particle ElementsRICHARD L AMOROSO and JEAN-PIERRE VIGIERRICHARD L AMOROSONoetic Advanced Studies Institute, Escalante Desert, Beryl, UT 84714-5104, USAwww.noeticadvancedstudies.us and JEAN-PIERRE VIGIERNoetic Advanced Studies Institute, Escalante Desert, Beryl, UT 84714-5104, USAhttps://doi.org/10.1142/9789811246463_0001Cited by:0 PreviousNext AboutSectionsPDF/EPUB ToolsAdd to favoritesDownload CitationsTrack CitationsRecommend to Library ShareShare onFacebookTwitterLinked InRedditEmail Abstract: Traditionally, elementary particles, by definition are considered zero-dimensional (0D) or point-like elements; strings or branes on the other hand are dimensionally extended entities. Dirac's electron hypertube model appears to provide insight into this duality. Recent attempts to consider isolated particles and real constitutive wave elements as localized, extended spacetime structures (i.e., moving within time-like hypertubes or M-Theoretic higher dimensional (HD) brane topologies) are developed within a causal extension of the Feynman-Gell-Mann electron model. These extended structures contain real internal motions, (i.e., internal hidden parameters) locally correlated with the "hidden parameters" describing the local collective motions of the corresponding pilot-waves. The Dirac electron hypertube has been missed by the uncertainty principle. Recent experimental evidence and new protocols for supervening uncertainty are discussed. FiguresReferencesRelatedDetails Fundamental Physics at the Vigier CentenaryMetrics History PDF download
In this work we extend Vigier’s recent theory of ‘tight bound state’ (TBS) physics and propose empirical protocols to test not only for their putative existence, but also that their existence if demonstrated provides the 1 empirical evidence of string theory because it occurs in the context of large-scale extra dimensionality (LSXD) cast in a unique M-Theoretic vacuum corresponding to the new Holographic Anthropic Multiverse (HAM) cosmological paradigm. Physicists generally consider spacetime as a stochastic foam containing a zero-point field (ZPF) from which virtual particles restricted by the quantum uncertainty principle (to the Planck time) wink in and out of existence. According to the extended de Broglie-Bohm-Vigier causal stochastic interpretation of quantum theory spacetime and the matter embedded within it is created annihilated and recreated as a virtual locus of reality with a continuous quantum evolution (de Broglie matter waves) governed by a pilot wave a ‘super quantum potential’ extended in HAM cosmology to be synonymous with the a ‘force of coherence’ inherent in the Unified Field, UF. We consider this backcloth to be a covariant polarized vacuum of the (generally ignored by contemporary physicists) Dirac type. We discuss open questions of the physics of point particles (fermionic nilpotent singularities). We propose a new set of experiments to test for TBS in a Dirac covariant polarized vacuum LSXD hyperspace suggestive of a recently tested special case of the Lorentz Transformation put forth by Kowalski and Vigier. These protocols reach far beyond the recent battery of atomic spectral violations of QED performed through NIST.
By considering the irreducible representations of the Einstein group (the Lie group of general relativity), Sachs [1] has shown that the electromagnetic field tensor can be developed in terms of a metric qμ, which is a set of four quaternion-valued components of four-vector. Using this method, it is shown that the electromagnetic field vanishes [1] in flat spacetime, and that electromagnetism in general is a non-Abelian field theory. In this paper the non-Abelian component of the field tensor is developed to show the presence of the B(3) field of the O(3) electrodynamics, and the basic structure of O(3) electrodynamics is shown to be a sub-structure of general relativity as developed by Sachs. The extensive empirical evidence for both theories is summarized.
It is shown that the Aharonov Bohm effect is not consistently described in the received view. A self-inconsistency is demonstrated in the U(1) gauge theory applied to electrodynamics that is the basis of the effect. A self-consistent description of the effect is suggested using a novel O(3) invariant form of electrodynamics, a form which also reproduces the experimental data available on the effect.
A transition from the pure vacuum to the pure gauge vacuum is considered and shown to generate energy through the covariant derivative for all gauge group symmetries. The source of this energy is space-time curvature. A local gauge transformation of lagrangians made up of components of the four potential of the pure gauge vacuum generates a topological charge g, the electromagnetic field, and a locally gauge invariant and conserved charge current density which acts as the source for the electromagnetic field in the vacuum. Therefore there emerges a vacuum Poynting Theorem. The energy inherent in the vacuum is not bounded above, and in principle can be used as the source of energy for working devices.
352 A teamwork on a multiregional network: an experience about harmonizing homecare practices for intravenous antibiotic on an implantable catheter port M. Kerbrat1, R. Fretay2, D. Chailleux3, F. You3, K. Sery4, M. Chiffolleau5, S. Baumard5, M.T. Jousseaume6, I. Berhault6, M.C. L’Abbe6, C. Pingon6, A. Bataillou6, M. Idres7, C. Matras8, S. Paul9, M.L. Madec9, F. Goarent9, C. Le Saint9, Y. Kerneur9. 1CF Center Nantes, Roscoff, France; 2CF Center Vannes Lorient, Vannes, France; 3CF Center, Nantes, France; 4CF Center, St Nazaire, France; 5CF Centre, Angers, France; 6CF Center, Rennes, France; 7CF Center, St Brieuc, France; 8CF Center, Tours, France; 9CF Center, Roscoff, France
The aim of this note is to report experimental results obtained for mass transport under controlled flow conditions in a system where convection and diffusion are coupled with chemical interactions associated to the protein adhesion. The context of the problem is of crucial practical importance in the framework of medical application and is concerned with the maintenance of central venous catheters. Then a phenomenological description is suggested giving a possible description of the process.
The main forces driving black holes, neutron stars, pulsars, quasars, and supernovae dynamics have certain commonality to the mechanisms of less tumultuous systems such as galaxies, stellar and planetary dynamics. They involve gravity, electromagnetic, and single and collective particle processes. We examine the collective coherent structures of plasma and their interactions with the vacuum. In this paper we present a balance equation and, in particular, the balance between extremely collapsing gravitational systems and their surrounding energetic plasma media. Of particular interest is the dynamics of the plasma media, the structure of the vacuum, and the coupling of electromagnetic and gravitational forces with the inclusion of torque and Coriolis phenomena as described by the Haramein-Rauscher solution to Einstein's field equations. The exotic nature of complex black holes involves not only the black hole itself but the surrounding plasma media. The main forces involved are intense gravitational collapsing forces, powerful electromagnetic fields, charge, and spin angular momentum. We find soliton or magneto-acoustic plasma solutions to the relativistic Vlasov equations solved in the vicinity of black hole ergospheres. Collective phonon or plasmon states of plasma fields are given. We utilize the Hamiltonian formalism to describe the collective states of matter and the dynamic processes within plasma allowing us to deduce a possible polarized vacuum structure and a unified physics.
Venous catheters have to be steadily flushed during or after or between intravenous therapies using syringes and thus needing a motion of the hand to push the syringe plunger that can be responsible for a less efficient process. The aim of the study is to show, from experimental simulations, that the dynamic of the flow can have a marked effect on the kinetic of desadhesion of deposit along the duct. The method consists to impose permanent or intermittent controlled flow conditions in a transparent rectangular test section thus permitting easy observation and real time video recording of the desadhesion processes. Evaporating a suitable solid suspension previously carries out a special solid deposit. The results, although qualitative, show that the nature of the flow have a marked influence on the kinetic of desadhesion of the solid deposit. Namely, in identical conditions, a pulsed component of the flow leads to a significative reduction of the time scale of desadhesion during the first moments of the flushing. This preliminary approach leads to the conclusion that the efficiency of the flushing is clearly dependent on the time characteristic of the flow. The flushing fluid volume being fixed by the syringe volume, the definition of a strict protocol is then of prior importance for obtaining a reproducible optimized and standardized motion of the hand.
Although the Newton and Coulomb potentials have similar forms the two theories have developed separately leaving their unification an unsolved problem throughout the history of Modern Science. In the past most attempts at unification have been within a frame associating electromagnetism with new geometrical properties of spacetime [1,2,3]. The aim of this paper is different. Following Puthoff [4], and others, both fields are represented by four-vector field densities μ A ; where one considers both types of phenomena as different
The inverse Faraday effect is described from the first principles of general relativity, using the irreducible representations of the Einstein group.
The aim of this work is to suggest that if gravitation and electromagnetism are described in terms of sets of local permanent extended “holes” and “bumps” moving in a real Dirac-type aether in external flat space, one can describe strong interactions between protons and neutrons in terms of dielectric–diamagnetic properties inherent in the electromagnetic interaction itself.
General relativity is reduced to O (3) electrodynamics by consideration of the irreducible representations of the Einstein group and through a particular choice of basis. The photon is shown always to possess a scalar curvature R , and so the origin of quantization is found in general relativity.
Extending EM and Quantum Theory suggests the possibility of photon mass, additional terms for Maxwell’s equations, reality of de Broglie-Bohm causality and the Vigier model of extended charged particles. Experimental tests indicative of these hypotheses can be performed with double-slit interferometry of single visible wavelengths comparing near and far field sources over laboratory and various cosmological distances to observe the possibility of spreading of the photon wavepacket during propagation. These observations could determine whether nonlinearities causing non-dispersivity are associated with Maxwell’s equations. If so, this may be an indirect determination of nonzero restmass photon anisotropy, de Broglie photon piloting and vacuum permittivity reincarnating the Michelson-Morley experiment in terms of a Dirac covariant ether.
The Aharonov-Bohm effect shows that the vacuum is structured, and that there can exist a finite vector potentialA in the vacuum when the electric field strengthE and magnetic flux densityB are zero. It is shown on this basis that gauge theory produces energy inherent in the vacuum. The latter is considered as the internal space of the gauge theory, containing a field made up of components ofA, to which a local gauge transformation is applied to produce the electromagnetic field tensor, a vacuum charge/current density, and a topological charge g. Local gauge transformation is the result of special relativity and introduces spacetime curvature, which gives rise to an electromagnetic field whose source is a vacuum charge current density made up ofA and g. The field carries energy to a device which can in principle extract energy from the vacuum. The development is given forU(1) andO(3) invariant gauge theory applied to electrodynamics.
General relativity has a geometric and a field interpretation. If angular momentum conservation is invoked in the geometric interpretation to explain experiments, the causality principle is violated. The field interpretation avoids this problem by allowing faster-than-light propagation of gravity in forward time. All existing experiments are in agreement with that interpretation. This implies the existence of real superluminal propagation and communication of particles and fields, free of causality problems. The introduction of real physical faster-than-light propagation into gravitation, electrodynamics and quantum theory has important consequences for physics.
The isotropic Cosmic Microwave Background Radiation (CMBR) is reinterpreted as emission from the geometric structure of spacetime. This is postulated to occur in the context of the Wheeler/Feynman transactional radiation law, extended to include the dynamics of spacetime topology in a framework of continuous state Spacetime Cavity-QED (STCQED) where the Planck Blackbody spectrum is described as an equilibrium condition of cosmic redshift as absorption and CMBR as emission. The continuous state spin-exchange compactification dynamics of the Dirac vacuum hyperstructure is shown to gives rise naturally to a 2.735degrees K Hawking type radiation from the topology of Planck scale micro-black hole hypersurfaces. This process arises from the richer open Kaluza-Klein dimensional structure of a post Bigbang continuous state cosmology.