Towards a nonlinear quantum physics /:
The author of this book presents conceptual and experimental evidence showing that Heisenberg's uncertainty relations are not valid in all cases. Furthermore, he derives a more general set of uncertainty relations. The new relations result from the replacement of the Fourier nonlocal and nontem...
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Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
Singapore ; River Edge, NJ :
World Scientific Pub. Co.,
©2003.
|
Schriftenreihe: | World Scientific series in contemporary chemical physics ;
v. 20. |
Schlagworte: | |
Online-Zugang: | Volltext |
Zusammenfassung: | The author of this book presents conceptual and experimental evidence showing that Heisenberg's uncertainty relations are not valid in all cases. Furthermore, he derives a more general set of uncertainty relations. The new relations result from the replacement of the Fourier nonlocal and nontemporal paradigm by wavelet local analysis. These results lead to a coherent and beautiful causal synthesis unifying quantum and classical physics. |
Beschreibung: | 1 online resource (xi, 215 pages) : illustrations |
Bibliographie: | Includes bibliographical references and indexes. |
ISBN: | 9789812776334 9812776338 1281929131 9781281929136 9786611929138 6611929134 |
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505 | 0 | |a 1. Introduction -- 2. Complementarity principle and the nonlocal Fourier analysis. 2.1. Introduction. 2.2. Fourier nonlocal analysis. 2.3. The measurement and the collapse of the wave train. 2.4. Heisenberg uncertainty relations and the complementarity principle. 2.5. References -- 3. New generation of microscopes. 3.1. Introduction. 3.2 The common Fourier microscopes. 3.3 Tunneling super-resolution microscope. 3.4. Apertureless optical microscope. 3.5. References -- 4. Beyond Heisenberg's uncertainty relations. 4.1. Introduction. 4.2. Wavelet local analysis. 4.3. Some elements of the causal theory of de Broglie. 4.4. A nonlinear Schrodinger equation. 4.5. Local paradigm in place of the nonlocal Fourier paradigm. 4.6. Derivation of a more general set of uncertainty relations. 4.7. Experiments to test the general validity of the usual uncertainty relations. 4.8. An example of a concrete measurement that goes beyond Heisenberg's uncertainty relations. 4.9. References -- 5. The meaning of the wave function. 5.1. Introduction. 5.2. A causal interpretation for the two-slit experiment. 5.3. Experiments to test the nature of the wave function. 5.4. Experiments on the collapse of the wave function. 5.5. Experiments based on the complex interaction process of the causal quantum particles. 5.6. References -- 6. Interference without superposition of the wave packets. 6.1. Introduction. 6.2. Interferometric experiments without overlapping of the wavepackets. 6.3. Orthodox interpretation. 6.4. Causal explanation. 6.5. Experimental test for the two approaches. 6.6. Franson type experiments. 6.7. References. | |
520 | |a The author of this book presents conceptual and experimental evidence showing that Heisenberg's uncertainty relations are not valid in all cases. Furthermore, he derives a more general set of uncertainty relations. The new relations result from the replacement of the Fourier nonlocal and nontemporal paradigm by wavelet local analysis. These results lead to a coherent and beautiful causal synthesis unifying quantum and classical physics. | ||
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author | Croca, J. R. |
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contents | 1. Introduction -- 2. Complementarity principle and the nonlocal Fourier analysis. 2.1. Introduction. 2.2. Fourier nonlocal analysis. 2.3. The measurement and the collapse of the wave train. 2.4. Heisenberg uncertainty relations and the complementarity principle. 2.5. References -- 3. New generation of microscopes. 3.1. Introduction. 3.2 The common Fourier microscopes. 3.3 Tunneling super-resolution microscope. 3.4. Apertureless optical microscope. 3.5. References -- 4. Beyond Heisenberg's uncertainty relations. 4.1. Introduction. 4.2. Wavelet local analysis. 4.3. Some elements of the causal theory of de Broglie. 4.4. A nonlinear Schrodinger equation. 4.5. Local paradigm in place of the nonlocal Fourier paradigm. 4.6. Derivation of a more general set of uncertainty relations. 4.7. Experiments to test the general validity of the usual uncertainty relations. 4.8. An example of a concrete measurement that goes beyond Heisenberg's uncertainty relations. 4.9. References -- 5. The meaning of the wave function. 5.1. Introduction. 5.2. A causal interpretation for the two-slit experiment. 5.3. Experiments to test the nature of the wave function. 5.4. Experiments on the collapse of the wave function. 5.5. Experiments based on the complex interaction process of the causal quantum particles. 5.6. References -- 6. Interference without superposition of the wave packets. 6.1. Introduction. 6.2. Interferometric experiments without overlapping of the wavepackets. 6.3. Orthodox interpretation. 6.4. Causal explanation. 6.5. Experimental test for the two approaches. 6.6. Franson type experiments. 6.7. References. |
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discipline | Physik |
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spelling | Croca, J. R. Towards a nonlinear quantum physics / J.R. Croca. Singapore ; River Edge, NJ : World Scientific Pub. Co., ©2003. 1 online resource (xi, 215 pages) : illustrations text txt rdacontent computer c rdamedia online resource cr rdacarrier World Scientific series in contemporary chemical physics ; vol. 20 Includes bibliographical references and indexes. Print version record. 1. Introduction -- 2. Complementarity principle and the nonlocal Fourier analysis. 2.1. Introduction. 2.2. Fourier nonlocal analysis. 2.3. The measurement and the collapse of the wave train. 2.4. Heisenberg uncertainty relations and the complementarity principle. 2.5. References -- 3. New generation of microscopes. 3.1. Introduction. 3.2 The common Fourier microscopes. 3.3 Tunneling super-resolution microscope. 3.4. Apertureless optical microscope. 3.5. References -- 4. Beyond Heisenberg's uncertainty relations. 4.1. Introduction. 4.2. Wavelet local analysis. 4.3. Some elements of the causal theory of de Broglie. 4.4. A nonlinear Schrodinger equation. 4.5. Local paradigm in place of the nonlocal Fourier paradigm. 4.6. Derivation of a more general set of uncertainty relations. 4.7. Experiments to test the general validity of the usual uncertainty relations. 4.8. An example of a concrete measurement that goes beyond Heisenberg's uncertainty relations. 4.9. References -- 5. The meaning of the wave function. 5.1. Introduction. 5.2. A causal interpretation for the two-slit experiment. 5.3. Experiments to test the nature of the wave function. 5.4. Experiments on the collapse of the wave function. 5.5. Experiments based on the complex interaction process of the causal quantum particles. 5.6. References -- 6. Interference without superposition of the wave packets. 6.1. Introduction. 6.2. Interferometric experiments without overlapping of the wavepackets. 6.3. Orthodox interpretation. 6.4. Causal explanation. 6.5. Experimental test for the two approaches. 6.6. Franson type experiments. 6.7. References. The author of this book presents conceptual and experimental evidence showing that Heisenberg's uncertainty relations are not valid in all cases. Furthermore, he derives a more general set of uncertainty relations. The new relations result from the replacement of the Fourier nonlocal and nontemporal paradigm by wavelet local analysis. These results lead to a coherent and beautiful causal synthesis unifying quantum and classical physics. English. Quantum theory. http://id.loc.gov/authorities/subjects/sh85109469 Physics. http://id.loc.gov/authorities/subjects/sh85101653 Quantum Theory https://id.nlm.nih.gov/mesh/D011789 Physics https://id.nlm.nih.gov/mesh/D010825 Théorie quantique. Physique. physics. aat SCIENCE Physics Quantum Theory. bisacsh Physics fast Quantum theory fast Print version: Croca, J.R. Towards a nonlinear quantum physics. Singapore ; River Edge, NJ : World Scientific Pub. Co., ©2003 9812382100 (OCoLC)52075328 World Scientific series in contemporary chemical physics ; v. 20. http://id.loc.gov/authorities/names/no93025701 FWS01 ZDB-4-EBA FWS_PDA_EBA https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=514344 Volltext |
spellingShingle | Croca, J. R. Towards a nonlinear quantum physics / World Scientific series in contemporary chemical physics ; 1. Introduction -- 2. Complementarity principle and the nonlocal Fourier analysis. 2.1. Introduction. 2.2. Fourier nonlocal analysis. 2.3. The measurement and the collapse of the wave train. 2.4. Heisenberg uncertainty relations and the complementarity principle. 2.5. References -- 3. New generation of microscopes. 3.1. Introduction. 3.2 The common Fourier microscopes. 3.3 Tunneling super-resolution microscope. 3.4. Apertureless optical microscope. 3.5. References -- 4. Beyond Heisenberg's uncertainty relations. 4.1. Introduction. 4.2. Wavelet local analysis. 4.3. Some elements of the causal theory of de Broglie. 4.4. A nonlinear Schrodinger equation. 4.5. Local paradigm in place of the nonlocal Fourier paradigm. 4.6. Derivation of a more general set of uncertainty relations. 4.7. Experiments to test the general validity of the usual uncertainty relations. 4.8. An example of a concrete measurement that goes beyond Heisenberg's uncertainty relations. 4.9. References -- 5. The meaning of the wave function. 5.1. Introduction. 5.2. A causal interpretation for the two-slit experiment. 5.3. Experiments to test the nature of the wave function. 5.4. Experiments on the collapse of the wave function. 5.5. Experiments based on the complex interaction process of the causal quantum particles. 5.6. References -- 6. Interference without superposition of the wave packets. 6.1. Introduction. 6.2. Interferometric experiments without overlapping of the wavepackets. 6.3. Orthodox interpretation. 6.4. Causal explanation. 6.5. Experimental test for the two approaches. 6.6. Franson type experiments. 6.7. References. Quantum theory. http://id.loc.gov/authorities/subjects/sh85109469 Physics. http://id.loc.gov/authorities/subjects/sh85101653 Quantum Theory https://id.nlm.nih.gov/mesh/D011789 Physics https://id.nlm.nih.gov/mesh/D010825 Théorie quantique. Physique. physics. aat SCIENCE Physics Quantum Theory. bisacsh Physics fast Quantum theory fast |
subject_GND | http://id.loc.gov/authorities/subjects/sh85109469 http://id.loc.gov/authorities/subjects/sh85101653 https://id.nlm.nih.gov/mesh/D011789 https://id.nlm.nih.gov/mesh/D010825 |
title | Towards a nonlinear quantum physics / |
title_auth | Towards a nonlinear quantum physics / |
title_exact_search | Towards a nonlinear quantum physics / |
title_full | Towards a nonlinear quantum physics / J.R. Croca. |
title_fullStr | Towards a nonlinear quantum physics / J.R. Croca. |
title_full_unstemmed | Towards a nonlinear quantum physics / J.R. Croca. |
title_short | Towards a nonlinear quantum physics / |
title_sort | towards a nonlinear quantum physics |
topic | Quantum theory. http://id.loc.gov/authorities/subjects/sh85109469 Physics. http://id.loc.gov/authorities/subjects/sh85101653 Quantum Theory https://id.nlm.nih.gov/mesh/D011789 Physics https://id.nlm.nih.gov/mesh/D010825 Théorie quantique. Physique. physics. aat SCIENCE Physics Quantum Theory. bisacsh Physics fast Quantum theory fast |
topic_facet | Quantum theory. Physics. Quantum Theory Physics Théorie quantique. Physique. physics. SCIENCE Physics Quantum Theory. Quantum theory |
url | https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=514344 |
work_keys_str_mv | AT crocajr towardsanonlinearquantumphysics |