Journal of Quantum Information Science

Volume 10, Issue 4 (December 2020)

ISSN Print: 2162-5751   ISSN Online: 2162-576X

Google-based Impact Factor: 0.95  Citations  

In Praise and in Criticism of the Model of Continuous Spontaneous Localization of the Wave-Function

HTML  XML Download Download as PDF (Size: 1014KB)  PP. 73-103  
DOI: 10.4236/jqis.2020.104006    390 Downloads   1,585 Views  Citations
Author(s)

Affiliation(s)

ABSTRACT

Different attempts to solve the measurement problem of the quantum me-chanics (QM) by denying the collapse principle, and replacing it with changes in the quantum formalism, failed because the changes in the formalism lead to contradictions with QM predictions. To the difference, Ghirardi, Rimini and Weber took the collapse as a real phenomenon, and proposed a calculus by which the wave-function should undergo a sudden localization. Later on, Ghirardi, Pearle and Rimini came with a change of this calculus into the CSL (continuous spontaneous localization) model of collapse. Both these proposals rely on the experimental fact that the reduction of the wave-function occurs when the microscopic system encounters a macroscopic object and involves a big amount of its particles. Both these proposals also change the quantum formalism by introducing in the Schr?dinger equation additional terms with noisy behavior. However, these terms have practically no influence as long as the studied system contains only one or a few components. Only when the amount of components is very big, these terms become significant and lead to the reduction of the wave-function to one of its components. The present work has two purposes: 1) proving that the collapse postulate is unavoidable; 2) ap-plying the CSL model to the process in a detector and showing step by step the modification of the wave-function, until reduction. As a side detail, it is argued here that the noise cannot originate in some classical field, contrary to the thought/hope of some physicists, because no classical field is tailored by the wave-functions of entanglements.

Share and Cite:

Wechsler, S. (2020) In Praise and in Criticism of the Model of Continuous Spontaneous Localization of the Wave-Function. Journal of Quantum Information Science, 10, 73-103. doi: 10.4236/jqis.2020.104006.

Cited by

[1] The Wave Function Cannot be a Real Wave Then Can We Speak of an Ontology of Particles
arXiv preprint arXiv:2210.03530, 2022
[2] Coherence Field Theory: Quantum Coherence as the Basis for a Model of Brain Function
Journal of Quantum Information Science, 2022
[3] Collapse dynamics and Hilbert-space stochastic processes
Scientific Reports, 2021
[4] The quantum mechanics needs the principle of wave function collapse, but this principle should not be misunderstood
2021
[5] The Continuous Spontaneous Localization Model of Collapse is Problematic vs. the Relativity and vs. the Entanglements
2021
[6] About the Nature of the Quantum System–an Examination of the Random Discontinuous Motion Interpretation of the Quantum Mechanics
2021
[7] Is the Quantum Mechanics Faithful to the Superposition Principle? Is it Compatible with the Logic?
Is there indeed a wave-particle duality?, 2021
[8] Is the Continuous Spontaneous Localization Model of Collapse just a Particular Theory of Local Hidden Variables?
Is there indeed a wave-particle duality?, 2021
[9] Emergence of objective reality in an irreversible friend thought experiment
2021
[10] Is the Quantum Mechanics Faithful to the Superposition Principle?
Is there indeed a wave-particle duality?, 2021
[11] Is the Quantum Mechanics Compatible with the Superposition Principle?
2021
[12] About the Nature of the Quantum System, an Examination of the Random Discontinuous Motion Interpretation of the Quantum Mechanics
arXiv preprint arXiv:2107.05633, 2021

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.