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Abstract:

In this paper we argue that the formalisms for decoherence originally devised to deal just with closed or open systems can be subsumed under a general conceptual framework, in such a way that they cooperate in the understanding of the same physical phenomenon. This new perspective dissolves certain conceptual difficulties of the einselection program but, at the same time, shows that the openness of the quantum system is not the essential ingredient for decoherence. Copyright 2007 by the Philosophy of Science Association. All rights reserved.

Registro:

Documento: Artículo
Título:A general conceptual framework for decoherence in closed and open systems
Autor:Castagnino, M.; Laura, R.; Lombardi, O.
Filiación:CONICET-IAFE, Universidad Nacional de Buenos Aires, Casilla de Correos 67, Sucursal 28, 1428 Buenos Aires, Argentina
IFIR, Universidad Nacional de Rosario, Av. Pellegrini 250, 2000 Rosario, Argentina
CONICET, Universidad Nacional de Buenos Aires, C. Larralde 3440, 6D, 1430, Buenos Aires, Argentina
Año:2007
Volumen:74
Número:5
Página de inicio:968
Página de fin:980
DOI: http://dx.doi.org/10.1086/525637
Título revista:Philosophy of Science
Título revista abreviado:Philos. Sci.
ISSN:00318248
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_00318248_v74_n5_p968_Castagnino

Referencias:

  • Adler, S., (2004) Quantum Theory as an Emergent Phenomenon, , Cambridge: Cambridge University Press
  • Bacciagaluppi, G., Hemmo, M., Making Sense of Approximate Decoherence (1994) Proceedings of the Philosophy of Science Association, 1, pp. 345-354. , David Hull, Micky Forbes, and Richard M. Burian eds, East Lansing, MI: Philosophy of Science Association
  • Bacciagaluppi, G., Hemmo, M., Modal Interpretations, Decoherence and Measurements (1996) Studies in History and Philosophy of Modern Physics, 27, pp. 239-277
  • Bonifacio, R., Olivares, S., Tombesi, P., Vitali, D., Model-Independent Approach to Nondissipative Decoherence (2000) Physical Review A, 61, p. 053802
  • Bub, J., (1997) Interpreting the Quantum World, , Cambridge: Cambridge University Press
  • Calzetta, E., Hu, B.-L., Mazzitelli, F., Coarse-Grained Effective Action and Renormalization Group Theory in Semiclassical Gravity and Cosmology (2001) Physics Reports, , 352: 459-520
  • Casati, G., Chirikov, B., Comment on 'Decoherence, Chaos, and the Second Law' (1995) Physical Review Letters, 75, pp. 349-350
  • Casati, G., Chirikov, B., Quantum Chaos: Unexpected Complexity (1995) Physica D, 86, pp. 220-237
  • Castagnino, M., The Classical-Statistical Limit of Quantum Mechanics (2004) Physica A, 335, pp. 511-517
  • Castagnino, M., Classical Limit of Non-integrable Systems (2005) Brazilian Journal of Physics, 35, pp. 375-379
  • _ (2006), The Equilibrium Limit of the Casati-Prosen Model, Physics Letters A 357: 97-100; Castagnino, M., Gadella, M., The Problem of the Classical Limit of Quantum Mechanics and the Role of Self-Induced Decoherence (2006) Foundations of Physics, 36, pp. 920-952
  • Castagnino, M., Gadella, M., Lombardi, O., Time's Arrow and Irreversibility in Time-Asymmetric Quantum Mechanics (2005) International Studies in the Philosophy of Science, 19, pp. 223-243
  • Castagnino, M., Laura, R., Lombardi, O., Decoherence in Closed and Open Systems, manuscript (2006), arXiv: quant-ph/0601132; Castagnino, M., Lombardi, O., The Self-Induced Approach to Decoherence in Cosmology (2003) International Journal of Theoretical Physics, 42, pp. 1281-1299
  • Castagnino, M., Lombardi, O., Self-Induced Decoherence: A New Approach (2004) Studies in History and Philosophy of Modern Physics, 35, pp. 73-107
  • Castagnino, M., Lombardi, O., Decoherence Time in Self-Induced Decoherence (2005) Physical Review A, 72, p. 012102
  • Castagnino, M., Lombardi, O., Self-Induced Decoherence and the Classical Limit of Quantum Mechanics (2005) Philosophy of Science, 72, pp. 764-776
  • Castagnino, M., Lombardi, O., The Classical Limit of Non-integrable Quantum Systems, a Route to Quantum Chaos (2006) Chaos, Solitons and Fractals, 28, pp. 879-898
  • Daneri, A., Loinger, A., Prosperi, G.M., Quantum Theory of Measurement and Ergodicity Conditions (1962) Nuclear Physics, 33, pp. 297-319
  • d'Espagnat, B., (1995) Veiled Reality: An Analysis of Present-Day Quantum Mechanical Concepts, , Reading, MA: Addison-Wesley
  • Diosi, L., A Universal Master Equation for the Gravitational Violation of Quantum Mechanics (1987) Physics Letters A, 120, pp. 377-381
  • Diosi, L., Models for Universal Reduction of Macroscopic Quantum Fluctuations (1989) Physical Review A, 40, pp. 1165-1174
  • Elby, A., The 'Decoherence' Approach to the Measurement Problem in Quantum Mechanics (1994) Proceedings of the Philosophy of Science Association, 1, pp. 355-365
  • Ford, G., O'Connell, R., Decoherence without Dissipation (2001) Physics Letters A, 286, pp. 87-90
  • Frasca, Marco (2003), General Theorems on Decoherence in the Thermodynamic Limit, Physics Letters A 308: 135-139; Healey, R., Dissipating the Quantum Measurement Problem (1995) Topoi, 14, pp. 55-65
  • Joos, E., Zeh, D., Kiefer, C., Giulini, D., Kupsch, J., Stamatescu, I.-O., (2003) Decoherence and the Appearance of a Classical World in Quantum Theory, , Berlin: Springer-Verlag
  • Lombardi, O., Determinism, Internalism and Objectivity (2002) Between Chance and Choice: Interdisciplinary Perspectives on Determinism, pp. 75-87. , Harald Atmanspacher and Robert Bishop eds, Exeter: Imprint-Academic
  • Lombardi, O., Labarca, M., The Ontological Autonomy of the Chemical World (2005) Foundations of Chemistry, 7, pp. 125-148
  • Mackey, M., The Dynamic Origin of Increasing Entropy (1989) Reviews of Modern Physics, 61, pp. 981-1015
  • Milburn, G., Intrinsic Decoherence in Quantum Mechanics (1991) Physical Review A, 44, pp. 5401-5406
  • Omnès, R., Decoherence: An Irreversible Process (2001) Los Alamos National Laboratory, , manuscript. arXiv: quant-ph/0106006
  • Omnès, R., Decoherence, Irreversibility and the Selection by Decoherence of Quantum States with Definite Probabilities (2002) Physical Review A, 65, p. 052119
  • Omnès, R., Results and Problems in Decoherence Theory (2005) Brazilian Journal of Physics, 35, pp. 207-210
  • Paz, J.P., Zurek, W., Environment-Induced Decoherence and the Transition from Quantum to Classical (2002) Lecture Notes in Physics, 587, pp. 77-148. , Dieter Heiss ed, Heidelberg: Springer
  • Pessoa, Osvaldo Jr, Can the Decoherence Approach Help to Solve the Measurement Problem? (1998) Synthese, 113, pp. 323-346
  • Schlosshauer, M., The 'Self-Induced Decoherence' Approach: Strong Limitations on Its Validity in a Simple Bath Model and on Its General Physical Relevance (2005) Physical Review A, 72, p. 012109
  • Sicardi Schifino, A.C., Abal, G., Siri, R., Romanelli, A., Donangelo, R., Intrinsic Decoherence and Irreversibility in the Quasiperiodic Kicked Rotor, manuscript (2003), arXiv:quant-ph/0308162; Stamp, P., Time, Decoherence and 'Reversible' Measurements (1995) Time's Arrow Today, pp. 107-154. , S. Savitt ed, Cambridge: Cambridge University Press
  • van Hove, Leon (1957), The Approach to Equilibrium in Quantum Statistics: A Perturbation Treatment to General Order, Physica 23: 441-480; Stamp, P., The Ergodic Behaviour of Quantum Many-Body Systems (1959) Physica, 25, pp. 268-276
  • van Kampen, Nicolaas (1954), Quantum Statistics of Irreversible Processes, Physica 20: 603-622; Zeh, D., On the Interpretation of Measurement in Quantum Theory (1970) Foundations of Physics, 1, pp. 69-76
  • Zeh, D., On the Irreversibility of Time and Observation in Quantum Theory (1971) Foundations of Quantum Mechanics, pp. 263-273. , Bernard d'Espagnat ed, New York: Academic Press
  • Zeh, D., Toward a Quantum Theory of Observation (1973) Foundations of Physics, 3, pp. 109-116
  • Zurek, W., Pointer Basis of Quantum Apparatus: Into What Mixtures Does the Wave Packet Collapse? (1981) Physical Review D, 24, pp. 1516-1525
  • Zurek, W., Environment-Induced Superselection Rules (1982) Physical Review D, 26, pp. 1862-1880
  • Zurek, W., Decoherence and the Transition from Quantum to Classical (1991) Physics Today, 44, pp. 36-44
  • Zurek, W., Preferred Sets of States, Predictability, Classicality and Environment-Induced Decoherence (1994) Physical Origins of Time Asymmetry, pp. 175-212. , Jonathan J. Halliwell, Juan Pérez-Mercader, and Wojciech H. Zurek eds, Cambridge: Cambridge University Press
  • Zurek, W., Decoherence, Einselection, and the Existential Interpretation, manuscript (1998), arXiv: quant-ph/9805065; Zurek, W., Decoherence, Einselection, and the Quantum Origins of the Classical (2003) Reviews of Modern Physics, 75, pp. 715-776

Citas:

---------- APA ----------
Castagnino, M., Laura, R. & Lombardi, O. (2007) . A general conceptual framework for decoherence in closed and open systems. Philosophy of Science, 74(5), 968-980.
http://dx.doi.org/10.1086/525637
---------- CHICAGO ----------
Castagnino, M., Laura, R., Lombardi, O. "A general conceptual framework for decoherence in closed and open systems" . Philosophy of Science 74, no. 5 (2007) : 968-980.
http://dx.doi.org/10.1086/525637
---------- MLA ----------
Castagnino, M., Laura, R., Lombardi, O. "A general conceptual framework for decoherence in closed and open systems" . Philosophy of Science, vol. 74, no. 5, 2007, pp. 968-980.
http://dx.doi.org/10.1086/525637
---------- VANCOUVER ----------
Castagnino, M., Laura, R., Lombardi, O. A general conceptual framework for decoherence in closed and open systems. Philos. Sci. 2007;74(5):968-980.
http://dx.doi.org/10.1086/525637