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Nonlocal Physics in the Wave Function Terminology 被引量:1
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作者 Boris V. Alexeev 《Journal of Applied Mathematics and Physics》 2021年第11期2889-2908,共20页
Shortcomings of the Boltzmann physical kinetics and the Schr<span style="font-size:12px;white-space:nowrap;">&#246;</span>dinger wave mechanics are considered. From the position of nonlocal p... Shortcomings of the Boltzmann physical kinetics and the Schr<span style="font-size:12px;white-space:nowrap;">&#246;</span>dinger wave mechanics are considered. From the position of nonlocal physics, the Schr<span style="font-size:12px;white-space:nowrap;">&#246;</span>dinger equation is a local equation;this fact leads to the great shortcomings of the linear Schr<span style="font-size:12px;white-space:nowrap;">&#246;</span>dinger wave mechanics. Nonlocal nonlinear quantum mechanics is considered using the wave function terminology. 展开更多
关键词 nonlocal physics Transport Processes in Quantum Mechanics Shortcomings of the Schrödinger Equation Wave Function Terminology
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Physical Kinetics, Relativism and Nonlocal Physics
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作者 Boris V. Alexeev 《Journal of Applied Mathematics and Physics》 2022年第1期68-90,共23页
The old classical problems of theoretical physics are revisited from the point of view of nonlocal physics. Nonlocal physics leads to very complicated mathematical apparatus. Here, we explain the main principles of no... The old classical problems of theoretical physics are revisited from the point of view of nonlocal physics. Nonlocal physics leads to very complicated mathematical apparatus. Here, we explain the main principles of nonlocal physics using transparent considerations and animations. 展开更多
关键词 nonlocal physics Transport Processes in the Dissipative Statistical Physical Systems Relativistic Theories Michelson-Morley Experiment The Uncertainty Heisenberg Principle
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Nonlocal Theory of High-Temperature Superconductivity 被引量:2
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作者 Boris V. Alexeev 《Journal of Modern Physics》 2021年第5期552-593,共42页
The Boltzmann local physical kinetics forecasts the destruction of SC regime because of the heat movement of particles. Then, the most fundamental distinction between a strange metal and a conventional metal is the ab... The Boltzmann local physical kinetics forecasts the destruction of SC regime because of the heat movement of particles. Then, the most fundamental distinction between a strange metal and a conventional metal is the absence of well-defined quasi-particles. Here, we show that the mentioned “quasi-particles” are solitons, which are formed as a result of self-organization of ionized matter. Shortcomings of the Boltzmann physical kinetics consist in the local description of the transport processes on the level of infinitely small physical volumes as elements of diagnostics. The non-local physics leads to the theory superconductivity including the high temperature diapason. The generalized non-local non-stationary London’s formula is derived. 展开更多
关键词 High Temperature Superconductivity Generalized London’s Formula nonlocal physics Transport Processes in Superconductors Longitudinal Electromagnetic Waves Solitons in Superconductors
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Main Problems of the Theoretical Physics and Artifacts of Local Physics 被引量:1
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作者 Boris V. Alexeev 《Journal of Modern Physics》 2021年第7期1048-1108,共61页
Shortcomings of the Boltzmann physical kinetics are considered. Boltzmann equation is only plausible equation. The cosequences originated from this fact are considered in the different fields of theoretical physics fr... Shortcomings of the Boltzmann physical kinetics are considered. Boltzmann equation is only plausible equation. The cosequences originated from this fact are considered in the different fields of theoretical physics from the point of view of nonlocal physics. Namely: main principles of nonlocal physics;generalized hydrodynamic equations;magnetic field evolution in the superconductor of the second type;Hubble expansion;special theory of relativity;the problem of the interaction of matter (M) with physical vacuum (PV) is considered including the PV—M energy exchange. Application nonlocal physics to the problem of the dark matter existence—dark matter does not exist, analytical investigation. 展开更多
关键词 nonlocal physics Interaction of Matter With Physical Vacuum Antimatter Evolution After Big Bang Dark Matter Problem Transport Processes in Physical Vacuum
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Tsunami and Hubble Expansion in the Frame of Unified Nonlocal Theory
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作者 Boris V. Alexeev 《Journal of Applied Mathematics and Physics》 2022年第3期779-801,共23页
Nonlocal physics is applied for investigation of the tsunami wave movement. It is established that tsunami movement and the Hubble effect of the Universe expansion can be considered in the frame of the same mathematic... Nonlocal physics is applied for investigation of the tsunami wave movement. It is established that tsunami movement and the Hubble effect of the Universe expansion can be considered in the frame of the same mathematical theory. Moreover, it can be said that tsunami is Hubble effect in the Earth conditions. The corresponding results of mathematical modeling are shown. 展开更多
关键词 nonlocal physics Tsunami Movement Hubble Effect Transport Processes in nonlocal Hydrodynamics Soliton Theory
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Nonlocal Theory of the Photon Gas Evolution Beginning from the Planck Time
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作者 Boris V. Alexeev 《Journal of Applied Mathematics and Physics》 2022年第5期1443-1460,共18页
Evolution of the photon gas (PG) in the Planck period is considered as a particular case of the physical vacuum (PV) hydrodynamics. Nonlocal quantum hydrodynamic equations are applied for calculation of the photon gas... Evolution of the photon gas (PG) in the Planck period is considered as a particular case of the physical vacuum (PV) hydrodynamics. Nonlocal quantum hydrodynamic equations are applied for calculation of the photon gas evolution. In general case, PG hydrodynamics contains gravitation in the explicit form. Exact analytical solutions of PG hydrodynamics are obtained. Solutions show the exponential growth of gradient values for internal energy in time and space. In comparison with phenomenological General Relativistic Theory, Nonlocal quantum hydrodynamics (NQH) does not lead to contradictions in all limit cases. Theory of physical vacuum and the theory of photonic gas are related theories. These theoretical (analytical!) results confirm the result of direct observations (Arno Alan Penzias and Robert Woodrow Wilson, Nobel Prize (1978) for their discovery of cosmic microwave background;John C. Mather and George F. Smoot. Nobel Prize (2006) for their discovery of the blackbody form and anisotropy of the cosmic microwave background radiation). 展开更多
关键词 nonlocal physics Physical Vacuum Photon Gas Evolution after Big Bang Transport Processes in Physical Vacuum Cosmic Microwave Background Anisotropy of the Cosmic Microwave Background Radiation
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Non-Local Theory of Bose-Einstein Condensate and Stopping of Light
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作者 Boris V. Alexeev 《Journal of Applied Mathematics and Physics》 2022年第7期2200-2215,共16页
The problem of an adequate description of the transport processes in Bose-Einstein condensates (CBE), including space-temporal evolution of CBE in a gravitational field is considered. The full nonlocal system for the ... The problem of an adequate description of the transport processes in Bose-Einstein condensates (CBE), including space-temporal evolution of CBE in a gravitational field is considered. The full nonlocal system for the CBE evolution is delivered including particular case and analytical solutions. We show (analytically) that a black hole can evolve in the Bose-Einstein condensate (CBE) regime. At the same time, there are modes in which black hole flickering occurs. Quantization of the black holes flickering is discovered. The corresponding nonlocal hydrodynamic equations indicated for fermions gas. 展开更多
关键词 nonlocal physics Transport Processes in Bose-Einstein Condensate Black Hole Flickering Light Stopping nonlocal Hydrodynamic Equations for Fermions Gas
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Bose-Einstein Condensates and Atomic and Electron Lasers Including Atomic Laser in the self-Consistent Gravitation Field
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作者 Boris V. Alexeev 《Journal of Applied Mathematics and Physics》 2022年第9期2581-2603,共23页
The problem of an adequate description of the wave processes in Bose-Einstein condensates (CBE), including space-temporal evolution of CBE in the electron CBE condensate in the self-consistent electrical field and CBE... The problem of an adequate description of the wave processes in Bose-Einstein condensates (CBE), including space-temporal evolution of CBE in the electron CBE condensate in the self-consistent electrical field and CBE atomic condensate in the self-consistent gravitational field is considered. The complete nonlocal system for the CBE evolution is delivered including particular case and analytical solutions. 展开更多
关键词 nonlocal physics Transport Wave Processes in Bose-Einstein Condensate Bose-Einstein Condensate Lasers
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