1. [Kracklauer 98 a]: A. F. Kracklauer, "Skirting hidden-variable no-go theorems", quant-ph/9804059.
  2. [Kracklauer 98 b]: A. F. Kracklauer, "The error in Bell's theorem", quant-ph/9810081.
  3. [Kracklauer 98 c]: A. F. Kracklauer, "EPR correlations as an angular Hanbury-Brown-twiss effect", quant-ph/9812072.
  4. [Kracklauer 00 a]: A. F. Kracklauer, "La `théorie' de Bell, est-elle la plus grande méprise de l'histoire de la physique?" ["Is Bell's `theory' the biggest mistake in the history of physics?"] Ann. Fond. Louis de Broglie 25, 2, 193-207 (2000).
  5. [Kracklauer 00 b]: A. F. Kracklauer, "Bell's inequalities III. Logical loophole in their formulation", quant-ph/0005001.
  6. [Kracklauer-Kracklauer 00]: A. F. Kracklauer, & N. A. Kracklauer, "`Quantum mysteries for anyone", or classical verities for everyone?', quant-ph/0007101.
  7. [Kracklauer 01]: A. F. Kracklauer, "Four-photon entanglement as stochastic-signal correlation", quant-ph/0105034.
  8. [Kracklauer 02 a]: A. F. Kracklauer, `Is "entanglement" always entangled?', in Y. S. Kim, M. A. Man'ko, & A. Sergienko (eds.), Seventh International Conference on Squeezed States and Uncertainty Relations (Boston, 2001), J. Opt. B: Quantum Semiclass. Opt. 4, 3, S121-S126 (2002); quant-ph/0108057.
  9. [Kracklauer 02 b]: A. F. Kracklauer, "One less quantum mystery", in R. Bonifacio, & D. Vitali (eds.), Mysteries, Puzzles and Paradoxes in Quantum Mechanics IV: Quantum Interference Phenomena (Gargnano, Italy, 2001), J. Opt. B: Quantum Semiclass. Opt. 4, 4, S469-S472 (2002).
  10. [Kracklauer 03]: A. F. Kracklauer, "Betting on Bell", quant-ph/0302113.
  11. [Kragh 90]: H. S. Kragh, Dirac: A scientific biography, Cambridge University Press, New York, 1990.
  12. [Kragh 02]: H. S. Kragh, "Book review. The historical development of quantum theory, volume 6: The completion of quantum mechanics 1926-1941", Found. Phys. 32, 1, 187-189 (2002). Review of [Mehra-Rechenberg 00 a, b].
  13. [Kraichnan 85]: R. H. Kraichnan, "Comment on `Quantum mechanics versus macroscopic realism: Is the flux there when nobody looks?' ", Phys. Rev. Lett. 54, 25, 2723 (1985). Comment on [Leggett-Garg 85 a]. Reply: [Leggett-Garg 85 b].
  14. [Kramer-Savari 01]: G. Kramer, & S. A. Savari, "Quantum data compression of ensembles of mixed states with commuting density operators", quant-ph/0101119.
  15. [Krasnoholovets 01]: V. Krasnoholovets, "Submicroscopic deterministic quantum mechanics", 5th Int. Conf. on Computing Anticipatory Systems (Liege, Belgium, 2001); quant-ph/0109012.
  16. [Kraus-Cirac-Karnas-Lewenstein 00]: B. Kraus, J. I. Cirac, S. Karnas, & M. Lewenstein, "Separability in 2 ×N composite quantum systems", Phys. Rev. A 61, 6, 062302 (2000); quant-ph/9912010.
  17. [Kraus-Cirac 01]: B. Kraus, & J. I. Cirac, "Optimal creation of entanglement using a two-qubit gate", Phys. Rev. A 63, 6, 062309 (2001); quant-ph/0011050.
  18. [Kraus-Lewenstein-Cirac 02]: B. Kraus, M. Lewenstein, & J. I. Cirac, "Characterization of distillable and activatable states using entanglement witnesses", Phys. Rev. A 65, 4, 042327 (2002); quant-ph/0110174.
  19. [Kraus-Dür-Vidal 02]: B. Kraus, W. Dür, G. Vidal, J. I. Cirac, M. Lewenstein, N. Linden, & S. Popescu, "Entanglement capability of two-qubit unitary operations", Fortschr. Phys..
  20. [Kraus-Hammerer-Giedke-Cirac 03]: B. Kraus, K. Hammerer, G. Giedke, & J. I. Cirac, "Entanglement generation and Hamiltonian simulation in continuous-variable systems", Phys. Rev. A 67, 4, 042314 (2003).
  21. [Kraus-Cirac 03]: B. Kraus, & J. I. Cirac, "Discrete entanglement distribution with squeezed light", quant-ph/0307158.
  22. [Kraus 83]: K. Kraus, States, effects and operations, Springer-Verlag, Berlin, 1983.
  23. [Kraus 89]: K. Kraus, "Quantum theory does not require action at a distance", Found. Phys. Lett. 2, 1, 1-6 (1989). Comment: [Stapp 89 b].
  24. [Krco-Paul 02]: M. Krco, & P. Paul, "Quantum clock synchronization: Multiparty protocol", Phys. Rev. A 66, 2, 024305 (2002); quant-ph/0112111.
  25. [Kreidl-Grübl-Embacher 03]: S. Kreidl, G. Grübl, & H. G. Embacher, "Bohmian arrival time without trajectories", J. Phys. A 36, 33, 8851-8865 (2003); quant-ph/0305163.
  26. [Krenn-Summhammer-Svozil 96]: G. Krenn, J. Summhammer, & K. Svozil, "Interaction-free preparation", Phys. Rev. A 53, 3, 1228-1231 (1996).
  27. [Krenn-Zeilinger 95]: G. Krenn, & A. Zeilinger, "Entangled entanglement", in D. M. Greenberger, & A. Zeilinger (eds.), Fundamental problems in quantum theory: A conference held in honor of professor John A. Wheeler, Ann. N. Y. Acad. Sci. 755, 873-876 (1995). Almost the same as [Krenn-Zeilinger 96].
  28. [Krenn-Zeilinger 96]: G. Krenn, & A. Zeilinger, "Entangled entanglement", Phys. Rev. A 54, 3, 1793-1797 (1996). Almost the same as [Krenn-Zeilinger 95]. Erratum: Phys. Rev. A 55, 5, 3970 (1997). See [Cereceda 97 c], [Schafir 97].
  29. [Krenn-Zeilinger 97]: G. Krenn, & A. Zeilinger, "Reply to `Comment on "Entangled entanglement" ' ", Phys. Rev. A 56, 5, 4336 (1997). Reply to [Schafir 97]. See [Krenn-Zeilinger 95, 96], [Cereceda 97 c].
  30. [Krenn-Svozil 98]: G. Krenn, & K. Svozil, "Stronger-than-quantum correlations", Found. Phys. 28, 6, 971-984 (1998).
  31. [Krenn-Summhammer-Svozil 00]: G. Krenn, J. Summhammer, & K. Svozil, "Interferometric information gain versus interaction-free measurement", Phys. Rev. A 61, 5, 052102 (2000).
  32. [Kretschmann-Werner 03]: D. Kretschmann, & R. F. Werner, "Tema con variazioni: Quantum channel capacity", quant-ph/0311037.
  33. [Krips 71]: H. P. Krips, "Defence of a measurement theory", Nuovo Cimento B 1, 1, 23-33 (1971).
  34. [Krips 74]: H. Krips, "Foundations of quantum theory. Part I", Found. Phys. 4, 2, 181-193 (1974).
  35. [Krips 77]: H. Krips, "Quantum theory and measures on Hilbert space", J. Math. Phys. 18, 5, 1015-1021 (1977).
  36. [Krips 87]: H. Krips, The metaphysics of quantum theory, Clarendon Press, Oxford, 1987.
  37. [Krips 94]: H. Krips, "A critique of local realism", in [Faye-Folse 94], pp. 269-277.
  38. [Krishnan 01]: V. V. Krishnan, "Estimating the efficiency of ensemble quantum computing", Phys. Lett. A 291, 1, 27-33 (2001).
  39. [Kronz 01 a]: F. M. Kronz, "Range of violations of Bell's inequality by entangled photon pairs", Phys. Lett. A 279, 5-6, 287-290 (2001); PITT-PHIL-SCI00000264.
  40. [Kronz 01 b]: F. M. Kronz, "Bohm's ontological interpretation and its relations to three formulations of quantum mechanics" (2001), PITT-PHIL-SCI00000265.
  41. [Krüger 00]: T. Krüger, "Towards a deeper understanding of the Einstein-Podolsky-Rosen problem", Found. Phys. 30, 11, 1869-1890 (2000).
  42. [Kryukov 03]: A. A. Kryukov, "Coordinate Formalism on Abstract Hilbert Space: Kinematics of a Quantum Measurement", Found. Phys. 33, 3, 407-443 (2003).
  43. [Kuang-Zhou 03]: L.-M. Kuang, & L. Zhou, "Generation of atom-photon entangled states in atomic Bose-Einstein condensate via electromagnetically induced transparency", Phys. Rev. A 68, 4, 043606 (2003).
  44. [Kudaka-Matsumoto 99 a]: S. Kudaka, & S. Matsumoto, "Uncertainty principle for proper time and mass", J. Math. Phys.; quant-ph/9901019. See [Kudaka-Matsumoto 99 b] (II).
  45. [Kudaka-Matsumoto 99 b]: S. Kudaka, & S. Matsumoto, "Uncertainty principle for proper time and mass II", quant-ph/9901031. See [Kudaka-Matsumoto 99 a] (I).
  46. [Kudryavtev-Knight 93]: I. K. Kudryavtev, & P. L. Knight, "Atomic entanglement and Bell's inequality violation", J. Mod. Opt. 40, 9, 1673-1679 (1993).
  47. [Kuhn-Hennrich-Rempe 02]: A. Kuhn, M. Hennrich, & G. Rempe, "Deterministic single-photon source for distributed quantum networking", Phys. Rev. Lett. 89, 6, 067901 (2002); quant-ph/0204147. Comment: [Kimble 03]. Reply: [Kuhn-Hennrich-Rempe 03].
  48. [Kuhn-Hennrich-Rempe 03]: A. Kuhn, M. Hennrich, & G. Rempe, "Kuhn, Hennrich, and Rempe reply", Phys. Rev. Lett. 90, 24, 249802 (2003). Reply to [Kimble 03]. See [Kuhn-Hennrich-Rempe 02].
  49. [Kuhn 03]: D. R. Kuhn, "A hybrid authentication protocol using quantum entanglement and symmetric cryptography", quant-ph/0301150.
  50. [Kuhn-Heilbron-Forman-Allen 67]: T. S. Kuhn, J. L. Heilbron, P. L. Forman, & L. Allen, Sources for history of quantum physics: An inventory and report, Philadelphia, 1967.
  51. [Kuhn 77]: T. S. Kuhn, The essential tension. Selected studies in scientific tradition and change, University of Chicago Press, Chicago, 1977. Spanish version: La tensión esencial. Estudios selectos sobre la tradición y el cambio en el ámbito de la ciencia, Fondo de Cultura Económica, México, 1982.
  52. [Kumar-Pandey 03]: D. Kumar, & P. N. Pandey, "Effect of noise on quantum teleportation", Phys. Rev. A 68, 1, 012317 (2003).
  53. [Kummer 01]: H. J. Kummer, "Theory of pair of quantum bits", Int. J. Theor. Phys. 40, 6, 1071-1112 (2001).
  54. [Kuna 98]: M. Kuna, "Entanglement and pseudomixtures", Acta Phys. Slov. june 1998 (Special issue on quantum optics and quantum information); quant-ph/9806011.
  55. [Kunstatter-Trainor 84 a]: G. Kunstatter, & L. E. H. Trainor, "Do intelligent observers exist in quantum mechanics?", Phys. Lett. A 103, 1-2, 32-34 (1984). Comment on [Page 82]. See [Todorov 83].
  56. [Kunstatter-Trainor 84 b]: G. Kunstatter, & L. E. H. Trainor, "For whom the bell tolls", Am. J. Phys. 52, 7, 598-602 (1984).
  57. [Kupriyanov-Sokolov-Slavgorodskii 03]: D. V. Kupriyanov, I. M. Sokolov, & A. V. Slavgorodskii, "Entangled states in spin subsystems of polyatomic ensembles", Opt. Spectrosc. 94, 717 (2003).
  58. [Kupsch 98]: J. Kupsch, "Exactly soluble models of decoherence", quant-ph/9811010.
  59. [Kurtsiefer-Mayer-Zarda-Weinfurter 00]: C. Kurtsiefer, S. Mayer, P. Zarda, & H. Weinfurter, "Stable solid-state source of single photons", Phys. Rev. Lett. 85, 2, 290-293 (2000). See [Osborne 00 c].
  60. [Kurtsiefer-Oberparleiter-Weinfurter 01]: C. Kurtsiefer, M. Oberparleiter, & H. Weinfurter, "High efficiency entangled photon pair collection in type II parametric fluorescence", quant-ph/0101074.
  61. [Kurtsiefer-Zarda-Mayer-Weinfurter 01]: C. Kurtsiefer, P. Zarda, S. Mayer, & H. Weinfurter, "The breakdown flash of silicon avalance photodiodes - backdoor for eavesdropper attacks?", submitted to J. Mod. Opt.; quant-ph/0104103.
  62. [Kurtsiefer-Zarda-Halder-(+4) 02]: C. Kurtsiefer, P. Zarda, M. Halder, H. Weinfurter, P. M. Gorman, P. R. Tapster, & J. G. Rarity, "Quantum cryptography: A step towards global key distribution", Nature 419, 6906, 450 (2002).
  63. [Kurucz-Koniorczyk-Janszky 01]: Z. Kurucz, M. Koniorczyk, & J. Janszky, "Teleportation with partially entangled states", Fortschr. Phys. 49, 1019-1025 (2001); quant-ph/0308020.
  64. [Kurzeja-Parkins 02]: S. I. J. Kurzeja, & A. S. Parkins, "Continuous variable quantum teleportation with a finite-basis entanglement resource", quant-ph/0201094.
  65. [Ku\'s-\.Zyczkowski 01]: M. Ku\'s, & K. \.Zyczkowski, "Geometry of entangled states", Phys. Rev. A 63, 3, 032307 (2001); quant-ph/0006068.
  66. [Kuvshinov-Kuzmin 03]: V. I. Kuvshinov, & A. V. Kuzmin, "Stability of holonomic quantum computations", Phys. Lett. A 316, 6, 391-394 (2003); quant-ph/0310069.
  67. [Kuzmenko 00]: M. V. Kuzmenko, "Two-particle model with noncommuting operators of coordinates and momenta", quant-ph/0009036.
  68. [Kuzmich-Branning-Mandel 98]: A. Kuzmich, D. Branning, & L. Mandel, "?", J. Mod. Opt. 45, 11, 2233-2243 (1998).
  69. [Kuzmich-Walmsley-Mandel 00]: A. Kuzmich, I. A. Walmsley, & L. Mandel, "Violation of Bell's inequality by a generalized Einstein-Podolsky-Rosen state using homodyne detection", Phys. Rev. Lett. 85, 7, 1349-1353 (2000).
  70. [Kuzmich-Polzik 00]: A. Kuzmich, & E. S. Polzik, "Atomic quantum state teleportation and swapping", Phys. Rev. Lett. 85, 26, 5639-5642 (2000); quant-ph/0003015
  71. [Kuzmich-Walmsley-Mandel 01]: A. Kuzmich, I. A. Walmsley, & L. Mandel, "Violation of a Bell-type inequality in the homodyne measurement of light in an Einstein-Podolsky-Rosen state", Phys. Rev. A 64, 6, 063804 (2001).
  72. [Kuzmich-Bowen-Boozer-(+4) 01]: A. Kuzmich, W. P. Bowen, A. D. Boozer, A. Boca, C. W. Chou, L.-M. Duan, & H. J. Kimble, "Generation of nonclassical photon pairs for scalable quantum communication with atomic ensembles", Nature 423, 6941, 731-734 (2003).
  73. [Kuzovlev 03]: Y. E. Kuzovlev, "Quantum interactions in a stochastic representation and two-level systems", JETP Lett. 78, 92-? (2003).
  74. [Kwek-Oh-Singh-Wang 00]: L. C. Kwek, C. H. Oh, K. Singh, & X.-B. Wang, "Diagonalization of diffusion matrix in Grover's algorithm", Phys. Lett. A 267, 1, 24-30 (2000).
  75. [Kwek-Oh-Wang-Yeo 00]: L. C. Kwek, C. H. Oh, X.-B. Wang, & Y. Yeo, "Buzek-Hillery cloning revisited using the bures metric and trace norm", Phys. Rev. A 62, 5, 052313 (2000).
  76. [Kwiat-Vareka-Hong-(+2) 90]: P. G. Kwiat, W. A. Vareka, C. K. Hong, H. Nathel, & R. Y. Chiao, "Correlated two-photon interference in a dual-beam Michelson interferometer", Phys. Rev. A 41, 5, 2910-2913 (1990).
  77. [Kwiat-Steinberg-Chiao 92]: P. G. Kwiat, A. M. Steinberg, & R. Y. Chiao, `Observation of a "quantum eraser": A revival of coherence in a two-photon interference experiment', Phys. Rev. A 45, 11, 7729-7739 (1992). See [Casado-Fernández Rueda-Marshall-(+2) 97].
  78. [Kwiat 93]: P. G. Kwiat, "?", Ph. D. thesis, University of California at Berkeley, 1993.
  79. [Kwiat-Steinberg-Chiao 94]: P. G. Kwiat, A. M. Steinberg, & R. Y. Chiao, "Three proposed `quantum erasers' ", Phys. Rev. A 49, 1, 61-68 (1994).
  80. [Kwiat-Eberhard-Steinberg-Chiao 94]: P. G. Kwiat, P. H. Eberhard, A. M. Steinberg, & R. Y. Chiao, "Proporsal for a loophole-free Bell inequality experiment", Phys. Rev. A 49, 5, Part A, 3209-3220 (1994).
  81. [Kwiat 95]: P. G. Kwiat, "Comment on `Reliability of Bell-inequality measurements using polarization correlations in parametric-down-conversion photon sources' ", Phys. Rev. A 52, 4, 3380-3381 (1995). Comment on [De Caro-Garuccio 95].
  82. [Kwiat-Weinfurter-Herzog-(+2) 95 a]: P. G. Kwiat, H. Weinfurter, T. Herzog, A. Zeilinger, & M. A. Kasevich, "Experimental realization of interaction-free measurements", in D. M. Greenberger, & A. Zeilinger (eds.), Fundamental problems in quantum theory: A conference held in honor of professor John A. Wheeler, Ann. N. Y. Acad. Sci. 755, 383-393 (1995). See [Kwiat-Weinfurter-Herzog-(+2) 95 b].
  83. [Kwiat-Weinfurter-Herzog-(+2) 95 b]: P. G. Kwiat, H. Weinfurter, T. Herzog, A. Zeilinger, & M. A. Kasevich, "Interaction-free measurement", Phys. Rev. Lett. 74, 24, 4763-4766 (1995). See [Kwiat-Weinfurter-Herzog-(+2) 95 a].
  84. [Kwiat-Mattle-Weinfurter-(+3) 95]: P. G. Kwiat, K. Mattle, H. Weinfurter, A. Zeilinger, A. V. Sergienko, & Y. H. Shih, "New high-intensity source of polarization-entangled photon pairs", Phys. Rev. Lett. 75, 24, 4337-4341 (1995).
  85. [Kwiat-Weinfurter-Zeilinger 96 a]: P. G. Kwiat, H. Weinfurter, & A. Zeilinger, "Quantum seeing in the dark", Sci. Am. 275, 5, 72-78. Spanish version: "Visión cuántica de la obscuridad", Investigación y Ciencia 244, 54-60 (1997). Reprinted in [Cabello 97 c], pp. 91-97.
  86. [Kwiat-Weinfurter-Zeilinger 96 b]: P. G. Kwiat, H. Weinfurter, & A. Zeilinger, "Interaction-free measurements of a quantum object: On the breeding of `Schrödinger's cats' ", in ? Eberly et al. (eds.), Coherence and quantum optics VII, Plenum Press, New York, 1996, pp. 673-674.
  87. [Kwiat 97 a]: P. G. Kwiat, "Production and uses of hyper-entangled states", in M. Ferrero, & A. van der Merwe (eds.), New developments on fundamental problems in quantum physics (Oviedo, Spain, 1996), Kluwer Academic, Dordrecht, Holland, 1997, pp. 189-202. See [Kwiat-Mattle-Weinfurter-(+3) 95].
  88. [Kwiat 97 b]: P. G. Kwiat, "Hyper-entangled states", J. Mod. Opt. 44, 11-12 (Special issue: Quantum state preparation and measurement), 2173-2184 (1997).
  89. [Kwiat 98]: P. G. Kwiat, "Experimental and theoretical progress in interaction-free measurements", in E. B. Karlsson, & E. Brändas (eds.), Proc. of the 104th Nobel Symp. "Modern Studies of Basic Quantum Concepts and Phenomena" (Gimo, 1997), Physica Scripta T76, 115-121 (1998).
  90. [Kwiat-Weinfurter 98]: P. G. Kwiat, & H. Weinfurter, "Embedded Bell-state analysis", Phys. Rev. A 58, 4, R2623-R2626 (1998).
  91. [Kwiat-Schwindt-Englert 99]: P. G. Kwiat, P. D. D. Schwindt, & B.-G. Englert, "What does a quantum eraser really erase?", in R. Bonifacio (ed.), Mysteries, Puzzles, and Paradoxes in Quantum Mechanics (Gargnano, Italy, 1998), American Institute of Physics, Woodbury, New York, 1999, pp. 69-80.
  92. [Kwiat-Waks-White-(+2) 99]: P. G. Kwiat, E. Waks, A. G. White, I. Appelbaum, & P. H. Eberhard, "Ultrabright source of polarization-entangled photons", Phys. Rev. A 60, 2, R773-R776 (1999); quant-ph/9810003.
  93. [Kwiat-Mitchell-Schwindt-White 99]: P. G. Kwiat, J. R. Mitchell, P. D. D. Schwindt, & A. G. White, "Grover's search algorithm: An optical approach", J. Mod. Opt.; quant-ph/9905086.
  94. [Kwiat-White-Mitchell-(+4) 99]: P. G. Kwiat, A. G. White, J. R. Mitchell, O. Nairz, G. Weihs, H. Weinfurter, & A. Zeilinger, "High-efficiency quantum interrogation measurements via the quantum Zeno effect", Phys. Rev. Lett. 83, 23, 4725-4728 (1999); quant-ph/9909083.
  95. [Kwiat-Hardy 00]: P. G. Kwiat, & L. Hardy, "The mystery of the quantum cakes", Am. J. Phys. 68, 1, 33-36 (2000).
  96. [Kwiat-Mitchel-Schwindt-White 00]: P. G. Kwiat, J. R. Mitchel, P. D. D. Schwindt, & A. G. White, "?", J. Mod. Opt. 47, ?, 257-? (2000).
  97. [Kwiat 00]: P. G. Kwiat, "Grover's search algorithm: An optical approach", in V. Buzzek, & D. P. DiVincenzo (eds.), J. Mod. Opt. 47, 2-3 (Special issue: Physics of quantum information), 257-266 (2000).
  98. [Kwiat-Hughes 00]: P. G. Kwiat, & R. J. Hughes, "Does Rydberg state manipulation equal quantum computation?", Science 289, 5484, 1431a (2000). Comment on [Ahn-Weinacht-Bucksbaum 00]. Reply: [Bucksbaum-Ahn-Weinacht 00]. See [Meyer 00 c].
  99. [Kwiat-Berglund-Altepeter-White 00]: P. G. Kwiat, A. J. Berglund, J. B. Altepeter, & A. G. White, "Experimental verification of decoherence-free subspaces", Science 290, 5491, 498-501 (2000).
  100. [Kwiat-Barraza López-Stefanov-Gisin 01]: P. G. Kwiat, S. Barraza López, A. Stefanov, & N. Gisin, "Experimental entanglement distillation and `hidden' non-locality", Nature 409, 6823, 1014-1017 (2001).
  101. [Kwiat 01]: P. G. Kwiat, "Quantum optics: Photons yield to peer pressure", Nature 412, 6850, 866-867 (2001). See [Lamas Linares-Howell-Bouwmeester 01].

  102. |Домой|