Decoherencia cuántica

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Sin duda se trata de un mecanismo poderoso que se encuentra en desarrollo y no ha agotado todo su potencial. Es precisamente por este motivo que la decoherencia ha sido invocada para resolver las dificultades particulares de ciertas interpretaciones de la mecánica cuántica. Por ejemplo Schlosshauer sostiene que “''es razonable anticipar que la decoherencia, inmersa en alguna estructura interpretativa adicional, puede conducir a una descripción completa y consistente del mundo clásico a partir de principios mecánico-cuánticos''” (Schlosshauer 2004, 1287).
 
 
==Bibliografía==
 
Adler, S. 2003. “Why decoherence has not solved the measurement problem: A response to P. W. Anderson” ''Studies in History and Philosophy of Modern Physics'' 34: 135–142.
 
Adolf, J. y Renger, T. 2006. “How Proteins Trigger Excitation Energy Transfer in the FMO Complex of Green Sulfur Bacteria” ''Biophysical Journal'' 91: 2778–2797.
 
Ball, P. 2011. “Physics of life: The dawn of quantum biology” ''Nature'' 474: 272–274.
 
Ballentine, L. E. 1990. ''Quantum Mechanics''. New York: Prentice Hall.
 
Bengtsson, I. y Yczkowski, K. Z. 2006. ''Geometry of Quantum States: An Introduction to Quantum Entanglement''. Cambridge: Cambridge University Press.
 
Berlin, Y. A., Burin, A. L. y Goldanskii, V. V. 1996. “The Hund paradox and stabilization of molecular chiral states” ''Zeitschrift für Physik D'' 37: 333–339.
 
Bohm, D. 1989. ''Quantum Theory''. New York: Dover Publications.
 
Bohr, N. 1920. “Über die Serienspektra der Element” ''Zeitschrift für Physik'' 2: 423–478.
 
Bonifacio, R., Olivares, S., Tombesi, P. y Vitali, D. 2000. “Model-independent approach to nondissipative decoherence” ''Physical Review A'' 61: 053802.
 
Bub, J. 1997. ''Interpreting the Quantum World''. Cambridge: University Press.
 
Camalet, S. y Chitra, R. 2007. “Effect of random interactions in spin baths on decoherence” ''Physical Review B'' 75: 094434.
 
Caruso, F., Chin, A.W., Datta, A. y Plenio, M.B. 2009. “Highly efficient energy excitation transfer in light-harvesting complexes: The fundamental role of noise-assisted transport” ''The Journal of Chemical Physics'' 131, 105106.
 
Casati, G. y Chirikov, B. 1995a. “Comment on “Decoherence, chaos, and the second law” ''Physical Review Letters'' 75: 350–350.
 
Casati, G. y Chirikov, B. 1995b. “Quantum chaos: unexpected complexity” ''Physica D'' 86: 220–237.
 
Casati, G. y Prosen, T. 2005. “Quantum chaos and the double-slit experiment” ''Physical Review A'' 72: 032111.
 
Castagnino, M. 1999. “The classical regime of a quantum universe obtained through a functional method” ''International Journal of Theoretical Physics'' 38: 1333–1348.
 
Castagnino, M. 2004. “The classical-statistical limit of quantum mechanics” ''Physica A'' 335: 511–517.
 
Castagnino, M. 2006. “The equilibrium limit of the Casati-Prosen model” ''Physics Letters A'' 357: 97–100.
 
Castagnino, M. y Fortin, S. 2011, “Predicting decoherence in discrete models” ''International Journal of Theoretical Physics'' 50: 2259–2267.
 
Castagnino, M. y Fortin, S. 2012. “Non-Hermitian Hamiltonians in decoherence and equilibrium theory” ''Journal of Physics A: Mathematical and Theoretical'' 45: 444009.
 
Castagnino, M. y Gadella, M. 2006. “The problem of the classical limit of quantum mechanics and the role of self-induced decoherence” ''Foundations of Physics'' 36: 920–952.
 
Castagnino, M. y Laura, R. 1997. “Minimal irreversible quantum mechanics: Pure-state formalism” ''Physical Review A'' 56: 108–119.
 
Castagnino, M. y Laura, R. 2000a. “Functional approach to quantum decoherence and the classical final limit” ''Physical Review A'' 62: 022107.
 
Castagnino, M. y Laura, R. 2000b. “Functional approach to quantum decoherence and the classical final limit: The Mott and cosmological problems” ''International Journal of Theoretical Physics'' 39: 1737–1765.
 
Castagnino, M. y Lombardi, O. 2003. “The self-induced approach to decoherence in cosmology” ''International Journal of Theoretical Physics'' 42: 1281–1299.
 
Castagnino, M. y Lombardi, O. 2004. “Self-induced decoherence: a new approach” ''Studies in History and Philosophy of Modern Physics'' 35: 73–107.
 
Castagnino, M. y Lombardi, O. 2005. “Self-induced decoherence and the classical limit of quantum mechanics” ''Philosophy of Science'' 72: 764–776.
 
Castagnino, M. y Ordoñez, A. 2004. “Algebraic formulation of quantum decoherence” ''International Journal of Theoretical Physics'' 43: 695–719.
 
Castagnino, M., Fortin, S. y Lombardi, O. 2010a. “The effect of random coupling coefficients on decoherence” ''Modern Physics Letters A'' 25: 611–617.
 
Castagnino, M., Fortin, S. y Lombardi, O. 2010b. “Suppression of decoherence in a generalization of the spin-bath model” ''Journal of Physics A: Mathematical and Theoretical'' 43: 065304.
 
Castagnino, M., Fortin, S. y Lombardi, O. 2010c. “Is the decoherence of a system the result of its interaction with the environment?” ''Modern Physics Letters A'' 25: 1431–1439.
 
Castagnino, M., Fortin, S., Laura, R. y Lombardi, O. 2008. “A general theoretical framework for decoherence in open and closed systems” ''Classical and Quantum Gravity'' 25: 154002.
 
Cucchietti, F. M., Paz, J. P., Zurek, W. H. 2005. “Decoherence from spin environments” ''Physical Review A'' 72: 052113.
 
Daneri, A., Loinger, A. y Prosperi, G. 1962. “Quantum theory of measurement and ergodicity conditions” ''Nuclear Physics'' 33: 297–319.
 
Dawson, C. M., Hines A. P., McKenzie, R. H. y Milburn, G. J. 2005. “Entanglement sharing and decoherence in the spin-bath” ''Physical Review A'' 71: 052321.
 
d'Espagnat, B. 1966. ''Preludes in Theoretical Physics''. Amsterdam: North-Holland.
 
d'Espagnat, B. 1976. ''Conceptual Foundations of Quantum Mechanics'', Reading MA: Benjamin.
 
d'Espagnat, B. 2000. “A note on measurement” ''Physics Letters A'' 282: 133–137.
 
Dieks, D., 1989. “Resolution of the measurement problem through decoherence of the quantum state” ''Physics Letters A'', 142: 439-446.
 
Diosi, L. 1987. “A universal master equation for the gravitational violation of quantum mechanics” ''Physics Letters A'' 120: 377–381.
 
Diosi, L. 1989. “Models for universal reduction of macroscopic quantum fluctuations” ''Physical Review A'' 40: 1165–1174.
 
Dirac, P. A. M. (1929). “Quantum mechanics of many-electron systems”. ''Proceedings of the Royal Society of London A'' 123: 714–33.
 
Dito, G. y Sternheimer, D. 2002. “Deformation quantization: Genesis, developments and metamorphoses.” ''En IRMA Lectures in Mathematics and Theoretical Physics 1'', editado por G. Halbout, 9–55. Berlin: W. de Gruyter & Co.
 
Ehrenfest, P. 1927. “Bemerkung über die angenäherte Gültigkeit der klassischen Mechanik innerhalb der Quantenmechanik” ''Zeitschrift für Physik'' 45: 455–457.
 
Engel, G., Calhoun, T. R., Read, E. L., Ahn, T-K, Mancal, T., Cheng, Y-C, Blankenship, R. E. y Fleming, G. R. 2007. “Evidence for wavelike energy transfer through quantum coherence in photosynthetic systems” ''Nature'' 446: 782–786.
 
Ford, G. W. y O'Connell, R. F. 2001. “Decoherence without dissipation” ''Physics Letters A'' 286: 87–90.
 
Fortin, S. y Lombardi, O. 2014. “Partial traces in decoherence and in interpretation: What do reduced states refer to?” ''Foundations of Physics'' 44: 426–446.
 
Fortin, S., Narvaja, M. y Lastiri, M. 2009. “Sobre un punto de vista heurístico concerniente a la naturaleza del espacio en mecánica cuántica.” En ''Epistemología e Historia de la Ciencia 2008'', editado por D. Letzen y P. Lodeyro, 198–204. Córdoba: Centro de Investigaciones de la Facultad de Filosofía y Humanidades de la Universidad Nacional de Córdoba.
 
Franco, M. y Calzetta, E. 2011. “Decoherence in the cosmic background radiation” ''Classical and Quantum Gravity'' 28: 145024.
 
Frasca, M. 2003. “General theorems on decoherence in the thermodynamic limit” ''Physics Letters A'' 308: 135–139.
 
Gambini, R. y Pulin, J. 2007. “Relational physics with real rods and clocks and the measurement problem of quantum mechanics” ''Foundations of Physics'' 37: 1074–1092.
 
Gambini, R. y Pulin, J. 2010. “Modern space-time and undecidability.” En ''Fundamental Theories of Physics (Minkowski Spacetime: A Hundred Years Later)'', editado por V. Petkov (ed.), 149–161. Heidelberg: Springer.
 
Gambini, R., Porto, R. A. y Pulin, J. 2007. “Fundamental decoherence from quantum gravity: a pedagogical review” ''General Relativity and Gravitation'' 39: 1143–1156.
 
Harris, R. A. y Stodolsky, L 1981. “Time dependence of optical activity” ''The Journal of Chemical Physics'' 74: 2145–2155.
 
Healey, R. A. 1995. “Dissipating the quantum measurement problem” ''Topoi'' 14: 55–65.
 
Holik, F. y Plastino, A. 2011. “Convex polytopes and quantum separability” ''Physical Review A'' 84: 062327.
 
Holik, F., Massri, C. y Ciancaglini, N. 2012. “Convex quantum logic” ''International Journal of Theoretical Physics'' 51: 1600–1620.
 
Hund. F. 1927. “Zur Deutung der Molekelspektren. III” ''Zeitschrift für Physik'' 43: 805–826.
 
Joos, E., Zeh, H. D., Kiefer, C., Giulini, D., Kupsch, J. y Stamatescu, I. O. 2003. ''Decoherence and the Appearance of a Classical World in Quantum Theory''. Berlin: Springer Verlag.
 
Kiefer, C. y Polarski, D. 1998. “Emergence of classicality for primordial fluctuations: concepts and analogies” ''Annalen der Physik'' 7: 137–158.
 
Kiefer, C. y Polarski, D. 2009. “Why do cosmological perturbations look classical to us?” ''Advanced Science Letters'' 2: 164–173.
 
Knill, E., Laflamme, R., Barnum, H., Dalvit, D., Dziarmaga, J., Gubernatis, J., Gurvits, L., Ortiz, G., Viola L. y Zurek, W. H. 2002. “Information, science, and technology in a quantum world” ''Los Alamos Science'' 27: 86–110.
 
Kolb, E. y Turner, M. 1990. ''The early Universe'', Reading MA: Addison-Wesley.
 
Kontsevich, M. 2003. “Deformation quantization of Poisson manifolds” ''Letters in Mathematical Physics'' 66: 157–216.
 
Krips, Henry. 2016. “Medición en mecánica cuántica.” En ''Diccionario Interdisciplinar Austral'', editado por Claudia E. Vanney, Ignacio Silva y Juan F. Franck. URL=[http://dia.austral.edu.ar/Medición_en_mecánica_cuántica http://dia.austral.edu.ar/Medición_en_mecánica_cuántica]
 
Landau, L. D. y Lifshitz, E. M. 1972. ''Mecánica Cuántica No-Relativista''. Barcelona: Reverté.
 
Laura, R. y Castagnino, M. 1998a. “Minimal irreversible quantum mechanics: The mixed states and the diagonal singularity” ''Physical Review A'' 57: 4140–4152.
 
Laura, R. y Castagnino, M. 1998b. “Functional approach for quantum systems with continuous spectrum” ''Physical Review E'' 57: 3948–3961.
 
Lee, H., Cheng, Y-C y Fleming, GR. 2007. “Dynamics in Photosynthesis: Protein Protection of Excitonic Coherence” Science 316: 1462–1465.
 
Leggett, A. J. 1987. “Reflections on the quantum measurement paradox.” En ''Quantum Implications'', editado por B. J. Hiley y F. D. Peat, 85–104, London: Routledge and Kegan Paul.
 
Lombardi, O., Fortin, S. y Castagnino, M. 2012. “The problem of identifying the system and the environment in the phenomenon of decoherence.” En Philosophical Issues in the Sciences Volume 3, editado por H. W. de Regt, S. Hartmann y S. Okasha, 161–174, Berlin: Springer.
 
Lombardo, F. C. y Mazzitelli, D. 1997. “Einstein-Langevin equations from running coupling constants” ''Physical Review D'' 55: 3889.
 
Lombardo, F. C. y Villar, P. I. 2008. “Environmentally induced corrections to the geometric phase in a two-level system” ''International Journal of Quantum Information'' 6: 707.
 
Milburn, G. J. 1991. “Intrinsic decoherence in quantum mechanics” ''Physical Review A'' 44: 5401–5406.
 
Mohseni, M., Rebentrost, P., Lloyd, S. y Aspuru-Guzik, A. 2008. “Enviroment-assisted quantum walks in photosynthetic energy transfer” ''The Journal of Chemical Physics'' 129: 174106.
 
Mukahnov, V. 2005. ''Physical foundations of Cosmology''. Cambridge: Cambridge University Press.
 
Olaya-Castro, A., Lee, C.F., Olsen, F.F. y Johnson, N.F. 2008. “Efficiency of energy transfer in a light-harvesting system under quantum coherence” ''Physical Review B'' 78: 085115.
 
Omnès, R. 2005. “Results and problems in decoherence theory” ''Brazilian Journal of Physics'' 35: 207–210.
 
Paganelli, S., de Pasquale, F. y Giampaolo, S. M. 2002. “Decoherence slowing down in a symmetry-broken environment” ''Physical Review A'' 66: 052317.
 
Peacock, J. 1999. ''Cosmological Physics''. Cambridge: Cambridge University Press.
 
Penrose, R. 1995. ''Shadows of the Mind''. Oxford: Oxford University Press.
 
Plenio, M. y Huelga, M. 2008. “Dephasing-assisted transport: quantum networks and biomolecules” ''New Journal of Physics'' 10: 113019.
 
Polarski, D. y Starobinsky, A. A. 1996. “Semiclassicality and decoherence of cosmological perturbations” ''Classical and Quantum Gravity'' 13: 377–393.
 
Quan, H. T., Song, Z., Liu, X. F., Zanardi, P. y Sun, C. P. 2006. “Decay of loschmidt echo enhanced by quantum criticality” ''Physical Review Letters'' 96: 140604.
 
Rossini, D., Calarco, T., Giovannetti, V., Montangero, S. y Fazio, R. 2007. “Decoherence induced by interacting quantum spin baths” ''Physical Review A'' 75: 032333.
 
Sakurai, J. J. 1994. ''Modern Quantum Mechanics''. New York: Addison-Wesley.
 
Scerri, E. R. 2011. “Editorial 37” ''Foundations of Chemistry'' 13: 1–7.
 
Schlosshauer, M. 2004. “Decoherence, the measurement problem, y interpretations of quantum mechanics” ''Reviews of Modern Physics'' 76: 1267–1305.
 
Schlosshauer, M. 2007. ''Decoherence and the Quantum-to-Classical Transition''. Berlin: Springer.
 
Schrödinger, E. 1944. ''What Is Life? : The Physical Aspect of the Living Cell''. Cambridge: Cambridge University Press.
 
Sicardi Shifino, A. C., Abal, G., Siri, R., Romanelli, A. y Donangelo, R. 2003. “Intrinsic decoherence and irreversibility in a quasiperiodic kicked rotor”, arXiv:quant-ph/0308162.
 
Starobinsky, A. 1986. “Stochastic de sitter (inflationary) stage in the early universe”. En ''Field Theory, Quantum Gravity and Strings'', volumen 246 de la serie ''Lecture Notes in Physics'', editado por  H. J. de Vega y N. Sánchez, 107–126, Berlin: Springer.
 
Sternheimer, D. 1998. “Deformation quantization: Twenty years after”, arXiv:math/9809056v1.
 
Tessieri, L. y Wilkie, J. 2003. “Decoherence in a spin–spin-bath model with environmental self-interaction” ''Journal of Physics A: Mathematical and General'' 36: 12305.
 
van Hove, L. 1957. “The approach to equilibrium in quantum statistics: A perturbation treatment to general order” ''Physica'' 23, 441–480.
 
van Hove, L. 1959. “The ergodic behaviour of quantum many-body systems” ''Physica'' 25: 268–276.
 
van Kampen, N. G. 1954. “Quantum statistics of irreversible processes” ''Physica'' 20, 603–622.
 
von Neumann, J. 1932. ''Mathematische Grundlagen der Quantenmechanik'', Berlin: Springer (Versión castellana: Fundamentos Matemáticos de la Mecánica Cuántica, Madrid: Publicaciones del Instituto de Matemáticas “Jorge Juan”, 1949).
 
Wallace, D. 2002. “Worlds in Everett interpretation”, ''Studies in History and Philosophy of Modern Physics'' 33: 637-661.
 
Wallace, D., 2003. “Everett and structure”, ''Studies in History and Philosophy of Modern Physic'' 34: 87-105.
 
Weinberg, S. 1972. ''Gravitation and Cosmology''. New York: John Wiley and Sons.
 
Wigner, E. 1932. “On the Quantum Correction for Thermodynamic Equilibrium” ''Physical Review'' 40: 749.
 
Yuan, X. Z., Goan, H-S y Zhu, K. D. 2007. “Non-Markovian reduced dynamics and entanglement evolution of two coupled spins in a quantum spin environment” ''Physical Review B'' 75: 045331.
 
Zeh, H. D. 1970. “On the interpretation of measurement in quantum theory” ''Foundations of Physics'' 1: 69–76.
 
Zeh, H. D. 1971. “On the irreversibility of time and observation in quantum theory.” En ''Foundations of Quantum Mechanics'', editado por B. d'Espagnat, 69–76, New York: Academic Press.
 
Zeh, H. D. 1973. “Toward a quantum theory of observation, ''Foundations of Physics'' 3: 109–116.
 
Zurek, W. H. 1982. “Environment-induced superselection rules” ''Physical Review D'' 26: 1862–1880.
 
Zurek, W. H. 1993. “Preferred states, predictability, classicality and the environment-induced decoherence” ''Progress of Theoretical Physics'' 89: 281–312.
 
Zurek, W. H. 2003. “Decoherence, einselection, and the quantum origins of the classical” ''Reviews of Modern Physics'' 75: 715–776.
 
Zurek, W. H. 1994. “Preferred sets of states, predictability, classicality and environment-induced decoherence.” En ''Physical Origins of Time Asymmetry'', editado por J. J. Halliwell, J. Pérez-Mercader y W. H. Zurek, 175–212. Cambridge: Cambridge University Press.
 
Zurek, W. H. 1998. “Decoherence, Einselection, and the existential interpretation: The Rough guide” ''Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences'' 356: 1793–1820.
 
Zurek, W. H. 2003. “Decoherence, einselection, and the quantum origins of the classical” ''Reviews of Modern Physics'', 75: 715-776.
 
 
{{Citar|url = http://dia.austral.edu.ar/Decoherencia_cuántica|cabecera = Fortin, Sebastián. 2016. "Decoherencia cuántica"}}
 
 
==Derechos de autor==
 
DERECHOS RESERVADOS Diccionario Interdisciplinar Austral © Instituto de Filosofía - Universidad Austral - Claudia E. Vanney - 2016.
 
ISSN: 2524-941X
 
 
==Herramientas académicas==
 
''Otros recursos en línea''
 
Página web de Erich Joos sobre decoherencia: [http://www.decoherence.de/ http://www.decoherence.de/].
 
Entrada sobre decoherencia de la ''Stanford Encyclopedia of Philosophy'': [http://plato.stanford.edu/search/searcher.py?query=decoherence http://plato.stanford.edu/search/searcher.py?query=decoherence]
 
Entrada sobre decoherencia en ''Wikipedia'': [https://en.wikipedia.org/wiki/Quantum_decoherence https://en.wikipedia.org/wiki/Quantum_decoherence]
 
 
==Agradecimientos==
 
Agradezco a las instituciones que permitieron mi formación y ulterior trabajo de investigación en el área de la decoherencia: la Universidad de Buenos Aires, el Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET) y el Ministerio de Ciencia, Tecnología e Innovación Productiva.
 
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