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E-raamat: Quantum Kinetics: Duration of Basic Elementary Processes

  • Formaat: 244 pages
  • Ilmumisaeg: 01-Jan-2018
  • Kirjastus: Nova Science Publishers Inc
  • ISBN-13: 9781536126570
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  • Formaat: 244 pages
  • Ilmumisaeg: 01-Jan-2018
  • Kirjastus: Nova Science Publishers Inc
  • ISBN-13: 9781536126570

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The author considers basic definitions of temporal functions in the quantum field theory (delays in scattering processes and durations of formation of particles and states, their "e;dressing"e;) and further on their basis experimentally checkable theories are examined: the theory of optical dispersion, the theory of multiphoton processes, the theory of condensed states and phase transitions of the first kind, the theory of near field. The offered approach allows resolving such known difficulties, as the defining of physical sense of some renormalization procedures, the so-called "e;superluminal"e; phenomena, some other paradoxes.
Preface xi
Introduction xiii
References xvii
Chapter I Temporal Functions: Basic Expressions
1(26)
1 Photons Scattering and their Durations
1(4)
2 Illustrative Example: Harmonic Oscillator
5(2)
3 Dispersion Relations and Sum Rules
7(3)
4 Ward Identity, Proper Duration of Interaction, Zitterbewegung
10(3)
5 Formal Theory of Scattering
13(4)
6 Adiabatic Hypothesis as Implicit Including of Formations Duration
17(3)
7 To Renormalization Procedures
20(2)
8 To Theories of Unstable States [ 24]
22(3)
References
25(2)
Chapter II Kinetic Theory of Optical Dispersion
27(44)
1 Common Theory of Optical Dispersion
27(5)
2 Kinetics of Photon Propagation, Heuristic Approach
32(2)
3 Some Specification of Basic Expressions
34(7)
4 Transient Singularities on Borders and Surface Transitive Zones
41(7)
5 Light Refraction: Right or Left Turn of Rays
48(5)
6 Optical Bonding Forces between Light Guides[ 46]
53(2)
7 Light Pressure on Transparent Media
55(7)
8 Thresholds of Light Reflection
62(2)
9 Corpuscular Optics
64(1)
10 Dispersion in External Fields
65(2)
References
67(4)
Chapter III Multiphoton Processes
71(32)
1 Overview of General Theory
71(5)
2 Stimulated Radiation
76(6)
3 Processes of Higher Harmonics Generation
82(7)
4 Multiphoton Ionization: Problem of Momentum
89(7)
5 "Dark" Gamma-Ray Bursts: Possible Role of Multiphoton Processes
96(4)
References
100(3)
Chapter IV Quantum Kinetics of Condensed States
103(24)
1 Overview
103(2)
2 General Consideration
105(4)
3 Radii of Thermal and Field Correlations
109(2)
4 Some Applications: Electromagnetic Properties
111(7)
5 Some Applications: Thermodynamic Properties
118(5)
6 Bose-Einstein Condensation of Gases: Interconnection of Constituents
123(2)
References
125(2)
Chapter V Phase Transitions as Radiative Processes
127(34)
1 Emission of Latent Heat at Phase Transitions
127(6)
2 Quantum Theory of Phase Transition Radiation
133(2)
3 Recombination of Coupled Anti-Parallel Dipoles
135(3)
4 Experimental Data and Observations
138(2)
5 Mechanisms of Dendrites Occurrence During Crystallization: Features of the Ice Crystals Formation [ 15]
140(6)
6 Sonoluminescence as Unique Effect of Energy Concentration [ 54]
146(2)
7 Radiative Transitions in Balance of Atmospheric Heating
148(9)
References
157(4)
Chapter VI Some Problems of Physico-Chemical Kinetics
161(8)
1 Eyring Formula
161(2)
2 Kinetic Coefficients of Transport Processes
163(2)
3 Crystals Fracture
165(1)
References
166(3)
Chapter VII Near Field: Instantaneous Singularities and "Superluminal Phenomena"
169(44)
1 Overview
170(2)
2 Canonical Green Functions: Faster-than-c Terms
172(6)
3 Covariant Restrictions and Spectral Representations: Superluminal Phenomena, Tunneling
178(4)
4 Energy-Momentum Constraints
182(3)
5 Problem of Tachyons
185(1)
6 Theory of Frustrated Total Internal Reflection: Superluminal Singularities of Optical Waveguides [ 18]
185(8)
7 Interaction of Atoms in Near Field
193(2)
8 Sound beyond the Speed of Light [ 41]
195(2)
9 "Superluminal" Phenomena: Violations of Lorentz Invariance and Instantaneous Transferring
197(8)
Appendix: Restrictions and Projectors [ 3]
205(5)
References
210(3)
Conclusion 213