1. [Klappenecker-Roetteler 01 a]: A. Klappenecker, & M. Roetteler, "Discrete cosine transforms on quantum computers", IEEE ISPA01 (Pula, Croatia, 2001). quant-ph/0111038.
  2. [Klappenecker-Roetteler 01 b]: A. Klappenecker, & M. Roetteler, "On the irresistible efficiency of signal processing methods in quantum computing", SPECLOG 2000 (Tampere, Finland, 2000); quant-ph/0111039.
  3. [Klappenecker-Roetteler 03 a]: A. Klappenecker, & M. Rotteler, "Engineering functional quantum algorithms", Phys. Rev. A 67, 1, 010302 (2003).
  4. [Klappenecker-Roetteler 03 b]: A. Klappenecker, & M. Rotteler, "Constructions of mutually unbiased bases", quant-ph/0309120.
  5. [Klappenecker-Roetteler 03 b]: A. Klappenecker, & M. Rotteler, "Quantum software reusability", quant-ph/0309121.
  6. [Klarreich 01]: E. Klarreich, "Playing by quantum rules", Nature 414, 6861, 244-245 (2001).
  7. [Klarreich 02]: E. Klarreich, "Quantum cryptography: Can you keep a secret?", Nature 418, 6895, 270-272 (2002).
  8. [Klauck 00 a]: H. Klauck, "On rounds in quantum communication", quant-ph/0004100.
  9. [Klauck 00 b]: H. Klauck, "Quantum communication complexity", to be published in Workshop Proc. of the 27th Int. Colloquium on Automata, Languages and Programming 2000, Workshop on Boolean Functions and Applications, quant-ph/0005032.
  10. [Klauck 01 a]: H. Klauck, "Lower bounds for quantum communication complexity", quant-ph/0106160.
  11. [Klauck 01 b]: H. Klauck, "On quantum and approximate privacy", quant-ph/0110038.
  12. [Kleckner-Ron 01]: M. Kleckner, & A. Ron, "Decoherence of a pointer by a gas reservoir", Phys. Rev. A 63, 2, 022110 (2001); quant-ph/0011087.
  13. [Klein-Nystrand 03]: S. R. Klein, & J. Nystrand, "Does particle decay cause wave function collapse: an experimental test", Phys. Lett. A 308, 5-6, 323-328 (2003).
  14. [Kleppner-Jackiw 00]: D. Kleppner, & R. Jackiw, "One hundred years of quantum physics", Science 289, 5481, 893-898 (2000). Corrections and clarifications: Science 289, ?, 2052 (2000).
  15. [Klimov-Guzman-Retamal-Saavedra 03]: A. B. Klimov, R. Guzman, J. C. Retamal, & C. Saavedra, "Qutrit quantum computer with trapped ions", Phys. Rev. A 67, 6, 062313 (2003).
  16. [Klimov-de Guise-Sánchez Soto 03]: A. B. Klimov, H. de Guise, & L. L. Sánchez-Soto, "Inequivalent classes of closed three-level systems", quant-ph/0310122.
  17. [Klimov-Sánchez Soto-de Guise-Bjørk 03]: A. B. Klimov, L. L. Sánchez-Soto, H. de Guise, & G. Bjørk, "Quantum phases of a qutrit", quant-ph/0312127.
  18. [Klose-Smith-Jessen 01]: G. Klose, G. Smith, & P. S. Jessen, "Measuring the quantum state of a large angular momentum", quant-ph/0101017.
  19. [Klyachko-Shumovsky 02]: A. A. Klyachko, & A. S. Shumovsky, "Entangled states and local measurements", quant-ph/0203099.
  20. [Klyachko-Shumovsky 03]: A. A. Klyachko, & A. S. Shumovsky, "Entanglement, local measurements, and symmetry", J. Opt. B: Quantum Semiclass. Opt.; quant-ph/0302008.
  21. [Klyshko 93]: D. N. Klyshko, "The Bell and GHZ theorems: A possible three-photon interference experiment and the question of nonlocality", Phys. Lett. A 172, 6, 399-403 (1993). See [Belinsky-Klyshko 93 b].
  22. [Klyshko 96]: D. N. Klyshko, "The Bell theorem and the problem of moments", Phys. Lett. A 218, 3-6, 119-127 (1996).
  23. [Klyshko 97]: D. N. Klyshko, "Quantum cryptography using multicolored or multidirectional photons", Phys. Lett. A 227, 1-2, 1-4 (1997).
  24. [Klyshko 98 a]: D. N. Klyshko, "Reduction of the wave function: An operational approach", Phys. Lett. A 243, 4, 179-186 (1998).
  25. [Klyshko 98 b]: D. N. Klyshko, "Reduction of the wave-function: An operational approach", Fortschr. Phys. 46, 6-8, 605-614 (1998).
  26. [Klyshko 98 c]: D. N. Klyshko, "On the realization and interpretation of `quantum teleportation' ", Phys. Lett. A 247, 4-5, 261-266 (1998).
  27. [Knight-Vaidman 90]: J. M. Knight, & L. Vaidman, "Weak measurement of photon polarization", Phys. Lett. A 143, 8, 357-361 (1990).
  28. [Knight 94 a]: P. L. Knight, "The quantum theory of motion", J. Mod. Opt. 41, 1, 168-169 (1994). Review of [Holland 93].
  29. [Knight 94 b]: P. L. Knight, "?", Contemp. Phys. 35, 3, ?-? (1994). Review of [Peres 93 a].
  30. [Knight 96]: P. L. Knight, "Schrödinger's kittens transmission and the search for reality", J. Mod. Opt. 43, 4, 865 (1996). Review of [Gribbin 95].
  31. [Knight 97]: P. L. Knight, "Einstein, Bohr and the quantum dilemma", J. Mod. Opt. 44, 8, 1596-1597 (1997). Review of [Whitaker 95].
  32. [Knight-Plenio-Vedral 97]: P. L. Knight, M. B. Plenio, & V. Vedral, "Decoherence and quantum error correction", in P. L. Knight, B. Stoicheff, & D. Walls (eds.), Highlight in Quantum Optics, Philos. Trans. R. Soc. Lond. A 355, 1733, 2381-2385 (1997).
  33. [Knight 98]: P. L. Knight, "Quantum mechanics: Where the weirdness comes from", Nature 395, 6697, 12-13 (1998). See [Dürr-Nonn-Rempe 98].
  34. [Knight-Murao-Plenio-Vedral 99]: P. L. Knight, M. Murao, M. B. Plenio, & V. Vedral, "Ion trap quantum gates, decoherence and error correction", Chaos Solitons & Fractals 10, 10, 1621-1635 (1999).
  35. [Knight 00]: P. L. Knight, "Quantum computing: Enhanced: Quantum information processing without entanglement", Science 287, 5452, 441-442 (2000). See [Ahn-Weinacht-Bucksbaum 00].
  36. [Knight-Roldan-Sipe 03]: P. L. Knight, E. Roldan, & J. E. Sipe, "Optical cavity implementations of the quantum walk", quant-ph/0305165.
  37. [Knill-Laflamme 97]: E. Knill, & R. Laflamme, "Theory of quantum error-correcting codes", Phys. Rev. A 55, 2, 900-911 (1997).
  38. [Knill-Laflamme-Zurek 98 a]: E. Knill, R. Laflamme, & W. H. Zurek, "Resilient quantum computation: Error models and thresholds", in D. P. DiVincenzo. E. Knill, R. Laflamme, & W. H. Zurek (eds.), Quantum Coherence and Decoherence. Proc. of the ITP Conf. (Santa Barbara, California, 1996), Proc. R. Soc. Lond. A 454, 1969, 365-384 (1998).
  39. [Knill-Laflamme-Zurek 98 b]: E. Knill, R. Laflamme, & W. H. Zurek, "Resilient quantum computation", Science 279, 5349, 342-345 (1998).
  40. [Knill-Chuang-Laflamme 98]: E. Knill, I. Chuang, & R. Laflamme, "Effective pure states for bulk quantum computation", Phys. Rev. A 57, 5, 3348-3363 (1998).
  41. [Knill-Laflamme 98]: E. Knill, & R. Laflamme, "On the power of one bit of quantum information", quant-ph/9802037.
  42. [Knill-Laflamme-Viola 00]: E. Knill, R. Laflamme, & L. Viola, "Theory of quantum error correction for general noise", Phys. Rev. Lett. 84, 11, 2525-2528 (2000); quant-ph/9908066.
  43. [Knill-Laflamme 99]: E. Knill, & R. Laflamme, "Quantum computation and quadratically signed weight enumerators", quant-ph/9909094.
  44. [Knill-Laflamme-Martinez-Tseng 00]: E. Knill, R. Laflamme, R. Martinez, & C.-H. Tseng, "An algorithmic benchmark for quantum information processing", Nature 404, 6776, 368-370 (2000); quant-ph/9908051.
  45. [Knill-Laflamme-Milburn 00]: E. Knill, R. Laflamme, & G. Milburn, "Thresholds for linear optics quantum computation", quant-ph/0006120.
  46. [Knill-Nielsen 01 a]: E. H. Knill, & M. A. Nielsen, "Theory of quantum computation", in Encyclopaedia of Mathematics. Suplement III, 2001; quant-ph/0010057.
  47. [Knill-Nielsen 01 b]: E. H. Knill, & M. A. Nielsen, "Quantum information processing", in Encyclopaedia of Mathematics. Suplement III, 2001; quant-ph/0010058.
  48. [Knill-Laflamme-Milburn 01]: E. Knill, R. Laflamme, & G. J. Milburn, "A scheme for efficient quantum computation with linear optics", Nature 409, 6816, 46-52 (2001); quant-ph/0006088.
  49. [Knill-Laflamme-Martinez-Negrevergne 01]: E. Knill, R. Laflamme, R. Martinez, & C. Negrevergne, "Benchmarking quantum computers: The five-qubit error correcting code", Phys. Rev. Lett. 86, 25, 5811-5814 (2001); quant-ph/0101034.
  50. [Knill 02]: E. Knill, "Quantum gates using linear optics and postselection", Phys. Rev. A 66, 5, 052306 (2002); quant-ph/0110144.
  51. [Knill 03]: E. Knill, "Scalable quantum computation in the presence of large detected-error rates", quant-ph/0312190.
  52. [Koashi-Imoto 96]: M. Koashi, & N. Imoto, "Quantum cryptography based on two mixed states", Phys. Rev. Lett. 77, 10, 2137-2140 (1996).
  53. [Koashi-Imoto 97]: M. Koashi, & N. Imoto, "Quantum cryptography based on split transmission of one-bit information in two steps", Phys. Rev. Lett. 79, 12, 2383-2386 (1997).
  54. [Koashi-Imoto 98 a]: M. Koashi, & N. Imoto, "No-cloning theorem of entangled states", Phys. Rev. Lett. 81, 19, 4264-4266 (1998).
  55. [Koashi-Imoto 98 b]: M. Koashi, & N. Imoto, "Maximum amount of information obtainable from a single quantum query of a database", Phys. Rev. Lett. 81, 23, 5233-5236 (1998).
  56. [Koashi-Ueda 99]: M. Koashi, & M. Ueda, "Reversing measurement and probabilistic quantum error correction", Phys. Rev. Lett. 82, 12, 2598-2601 (1999).
  57. [Koashi-Buzek-Imoto 00]: M. Koashi, V. Buzek, & N. Imoto, "Entangled webs: Tight bound for symmetric sharing of entanglement", Phys. Rev. A 62, 5, 050302(R) (2000); quant-ph/0007086.
  58. [Koashi-Yamamoto-Imoto 01]: M. Koashi, T. Yamamoto, & N. Imoto, "Probabilistic manipulation of entangled photons", Phys. Rev. A 63, 3, 030301(R) (2001); quant-ph/0102141.
  59. [Koashi-Imoto 01 a]: M. Koashi, & N. Imoto, "Compressibility of quantum mixed-state signals", Phys. Rev. Lett. 87, 1, 017902 (2001); quant-ph/0103128.
  60. [Koashi-Imoto 01 b]: M. Koashi, & N. Imoto, "Teleportation cost and hybrid compression of quantum signals", quant-ph/0104001.
  61. [Koashi-Imoto 02 a]: M. Koashi, & N. Imoto, "Quantum information is incompressible without errors", Phys. Rev. Lett. 89, 9, 097904 (2002); quant-ph/0203045.
  62. [Koashi-Imoto 02 b]: M. Koashi, & N. Imoto, "Operations that do not disturb partially known quantum states", Phys. Rev. A 66, 2, 022318 (2002), quant-ph/0101144. Comment: [Tucci 03].
  63. [Koashi-Preskill 03]: M. Koashi, & J. Preskill, "Secure quantum key distribution with an uncharacterized source", Phys. Rev. Lett. 90, 5, 057902 (2003).
  64. [Koashi-Winter 03]: M. Koashi, & A. Winter, "Monogamy of entanglement and other correlations", quant-ph/0310037.
  65. [Kobayashi-Matsumoto-Yamakami 01]: H. Kobayashi, K. Matsumoto, & T. Yamakami, "Quantum certificate verification: Single versus multiple quantum certificates", quant-ph/0110006. Extended version: [Kobayashi-Matsumoto-Yamakami 03].
  66. [Kobayashi-Matsumoto-Yamakami 03]: H. Kobayashi, K. Matsumoto, & T. Yamakami, "Quantum Merlin-Arthur proof systems: Are multiple Merlins more helpful to Arthur?", quant-ph/0306051. See: [Kobayashi-Matsumoto-Yamakami 01].
  67. [Kobayashi-Khanna-Mann-(+2) 03]: M. Kobayashi, F. Khanna, A. Mann, M. Revzen, & A. Santana, "Maximal Bell's inequality violation for non maximal entanglement quant-ph/0311125.
  68. [Koç 80]: Y. Koç, "A non-completeness argument for quantum mechanics (analysis of the EPR paper)", Phys. Lett. A 79, 1, 9-12 (1980). See [Koç 81, 82].
  69. [Koç 81]: Y. Koç, "A critical analysis of N. Bohr's reply to the EPR argument", Phys. Lett. A 81, 8, 436-440 (1981). Comment: [Madsen 81]. See [Koç 80, 82].
  70. [Koç 82]: Y. Koç, `Some remarks on the "no-interaction" assumption in the Einstein-Podolsky-Rosen argument', Phys. Lett. A 90, 9, 451-454 (1982). See [Koç 80, 81].
  71. [Koç 93]: Y. Koç, "Wigner's inequality, quantum-mechanical probability functions and hidden-variable theories", Nuovo Cimento B 108, 10, 1115-1126 (1993).
  72. [Kochen-Specker 65 a]: S. Kochen, & E. P. Specker, "Logical structures arising in quantum theory", in J. W. Addison et al. (eds.), Symp. on the Theory of Models, Proc. of the 1963 Int. Symp. at Berkeley, North-Holland, Amsterdam, Holland, 1965, pp. 177-189. Reprinted in [Hooker 75], pp. 263-276. Reprinted in [Specker 90], pp. 209-221.
  73. [Kochen-Specker 65 b]: S. Kochen, & E. P. Specker, "The calculus of partial propositional functions", in Y. Bar-Hillel (ed.), Proc. of the 1964 Int. Congress for Logic, Methodology and Philosophy of Science, Jerusalem, 1965, pp. 45-57. Reprinted in [Hooker 75], pp. 277-292. Reprinted in [Specker 90], pp. 222-234.
  74. [Kochen-Specker 67]: S. Kochen, & E. P. Specker, "The problem of hidden variables in quantum mechanics", J. Math. Mech. 17, 1, 59-87 (1967). Reprinted in [Hooker 75], pp. 293-328. Reprinted in [Specker 90], pp. 235-263.
  75. [Kochen 78]: S. Kochen, "The interpretation of quantum mechanics", address to the Biennial Conf. of the Philosophy of Science Association, 1978, mimeo, Princeton University, Princeton, New Jersey, 1978.
  76. [Kochen 85]: S. Kochen, "A new interpretation of quantum mechanics", in P. Lahti, & P. Mittelstaedt (eds.), Symp. on the Foundations of Modern Physics: 50 Years of the Einstein-Podolsky-Rosen Experiment (Joensuu, Finland, 1985), World Scientific, Singapore, 1985, pp. 151-169.
  77. [Kochen 96]: S. Kochen, "Construction of quantum mechanics via commutative operations", in R. K. Clifton (ed.), Perspectives on quantum reality: Non-relativistic, relativistic, and field-theoretic (London, Western Ontario, Canada, 1994), Kluwer Academic, Dordrecht, Holland, 1996, pp. 237-243.
  78. [Kocher-Commins 67]: C. A. Kocher, & E. D. Commins, "Polarization correlation of photons emitted in an atomic cascade", Phys. Rev. Lett. 18, 15, 575-577 (1967).
  79. [Koenig 00]: R. Koenig, "European science: Teleportation guru stakes out new ground", Science 288, 5470, 1327 (2000).
  80. [Kofman-Kurizki-Opatrný 00]: A. G. Kofman, G. Kurizki, & T. Opatrný, "Zeno and anti-Zeno effects for photon polarization dephasing", quant-ph/0011077.
  81. [Kofman-Kurizki 01]: A. G. Kofman, & G. Kurizki, "Frequent observations accelerate decay: The anti-Zeno effect", submitted to Zeitschrift für Naturforschung A; quant-ph/0102002.
  82. [Kofman 01]: A. G. Kofman, "Relaxation of a two-level system strongly coupled to a reservoir: Anomalously slow decoherence", Phys. Rev. A; quant-ph/0106015.
  83. [Koiller-Hu-Das Sarma 02 a]: B. Koiller, X. Hu, & S. Das Sarma, "Exchange in silicon based quantum computer architecture", Phys. Rev. Lett. 88, 2, 027903 (2002).
  84. [Koiller-Hu-Das Sarma 02 b]: B. Koiller, X. Hu, & S. Das Sarma, "Strain effects on silicon donor exchange: Quantum computer architecture considerations", Phys. Rev. B 66, 11, 115201 (2002).
  85. [Koiller-Hu-Drew-Das Sarma 03]: B. Koiller, X. Hu, H. D. Drew, & S. Das Sarma, "Disentangling the exchange coupling of entangled donors in the Si quantum computer architecture", Phys. Rev. Lett. 90, 6, 067401 (2003).
  86. [Kok-Braunstein 99 a]: P. Kok, & S. L. Braunstein, "Comment on `Experimental entanglement swapping: Entangling photons that never interacted' ", quant-ph/9907016. Comment on [Pan-Bouwmeester-Weinfurter-Zeilinger 98].
  87. [Kok-Braunstein 99 b]: P. Kok, & S. L. Braunstein, "How useful is detector cascading?", quant-ph/9910084.
  88. [Kok-Braunstein 00 a]: P. Kok, & S. L. Braunstein, "Postselected versus nonpostselected quantum teleportation using parametric down-conversion", Phys. Rev. A 61, 4, 042304 (2000).
  89. [Kok-Braunstein 00 b]: P. Kok, & S. L. Braunstein, "Entanglement swapping as event-ready entanglement preparation", Fortschr. Phys. 48, 5-7, 553-557 (2000).
  90. [Kok-Braunstein 00 c]: P. Kok, & S. L. Braunstein, "Limitations on the creation of maximal entanglement", Phys. Rev. A 62, 6, 064301 (2000); quant-ph/0001080.
  91. [Kok 01]: P. Kok, "State preparation in quantum optics", Ph. D. thesis; quant-ph/0102070.
  92. [Kok-Boto-Abrams-(+3) 01]: P. Kok, A. N. Boto, D. S. Abrams, C. P. Williams, S. L. Braunstein, & J. P. Dowling, "Quantum-interferometric optical lithography: Towards arbitrary two-dimensional patterns", Phys. Rev. A 63, 6, 063407 (2001). See [Boto-Kok-Abrams-(+3) 00].
  93. [Kok-Lee-Dowling 02]: P. Kok, H. Lee, & J. P. Dowling, "Creation of large-photon-number path entanglement conditioned on photodetection", Phys. Rev. A 65, 5, 052104 (2002); quant-ph/0112002.
  94. [Kok-Lee-Dowling 02 a]: P. Kok, H. Lee, & J. P. Dowling, "Implementing a single-photon quantum nondemolition device with only linear optics and projective measurements", quant-ph/0202046.
  95. [Kok-Lee-Dowling 02 b]: P. Kok, H. Lee, & J. P. Dowling, "Single-photon quantum-nondemolition detectors constructed with linear optics and projective measurements", Phys. Rev. A 66, 6, 063814 (2002); quant-ph/0202046.
  96. [Kok-Williams-Dowling 03]: P. Kok, C. P. Williams, & J. P. Dowling, "Construction of a quantum repeater with linear optics", Phys. Rev. A 68, 2, 022301 (2003); quant-ph/0203134.
  97. [Kokin 00]: A. A. Kokin, "A model for ensemble NMR quantum computer using antiferromagnetic structure", quant-ph/0002034.
  98. [Kokin-Valiev 02]: A. A. Kokin, & K. A. Valiev, "Problems in realization of large-scale ensemble silicon-based NMR quantum computers", quant-ph/0201083.
  99. [Kokorowski-Cronin-Roberts-Pritchard 01]: D. A. Kokorowski, A. D. Cronin, A. D. Roberts, & D. E. Pritchard, "From single- to multiple-photon decoherence in an atom interferometer", Phys. Rev. Lett. 86, 11, 2191-2195 (2001).
  100. [Komar 62]: A. Komar, "Indeterminate character of the reduction of the wave packet in quantum theory", Phys. Rev. 126, 1, 365-369 (1962).
  101. [Konno 02]: N. Konno, "Quantum random walks in one dimension", Quant. Inf. Processing 1, 5, 345-354 (2002); quant-ph/0206053.
  102. [Konopka-Buzek 99]: M. Konopka, & V. Buzek, "Entangling atoms in photonic crystals", quant-ph/9901069.
  103. [Koniorczyk-Janszky-Kis 99]: M. Koniorczyk, J. Janszky, & Z. Kis, "Photon number teleportation", Phys. Lett. A 256, 5-6, 334-338 (1999).
  104. [Koniorczyk-Kiss-Janszky 01]: M. Koniorczyk, T. Kiss, & J. Janszky, "Teleportation: From probability distributions to quantum states", in S. Popescu, N. Linden, & R. Jozsa (eds.), J. Phys. A 34, 35 (Special issue: Quantum information and computation), 6949-6956 (2001); quant-ph/0011083.
  105. [Koniorczyk-Buzzek-Janszky 01]: M. Koniorczyk, V. Buzzek, & J. Janszky, "Wigner-function description of quantum teleportation in arbitrary dimensions and a continuous limit", Phys. Rev. A 64, 3, 034301 (2001); quant-ph/0106109.
  106. [Korepin-Terilla 02]: V. Korepin, & J. Terilla, "Quantum error correction by means of thermodynamics", quant-ph/0202054.
  107. [Korolkova-Silberhorn-Glöckl-(+3) 02]: N. Korolkova, C. Silberhorn, O. Glöckl, S. Lorenz, C. Marquardt, & G. Leuchs, "Direct experimental test of non-separability and other quantum techniques using continuous variables of light", Eur. Phys. J. D 18, 2 (Special issue: Quantum interference and cryptographic keys: Novel physics and advancing technologies (QUICK) (Corsica, 2001), 229-235 (2002); quant-ph/0109011.
  108. [Korolkova-Leuchs-Loudon-(+2) 02]: N. Korolkova, G. Leuchs, R. Loudon, T. C. Ralph, & C. Silberhorn, "Polarization squeezing and continuous-variable polarization entanglement", Phys. Rev. A 65, 5, 052306 (2002).
  109. [Korotkov 98]: A. Korotkov, "Continuous quantum measurement with observer: Pure wavefunction evolution instead of decoherence", quant-ph/9807051.
  110. [Korotkov 00]: A. N. Korotkov, "Selective quantum evolution of a qubit state due to continuous measurement", cond-mat/0008461.
  111. [Korotkov 01]: A. N. Korotkov, "Correlated quantum measurement of a solid-state qubit", Phys. Rev. B 64, 19, 193407 (2001); cond-mat/0008003.
  112. [Korotkov 02]: A. N. Korotkov, "Continuous measurement of entangled qubits", Phys. Rev. A 65, 5, 052304 (2002).
  113. [Korotkov 03]: A. N. Korotkov, "Nonideal quantum detectors in Bayesian formalism", Phys. Rev. B 67, 23, 235408 (2003).
  114. [Kostenko-Kuznetsov-Miller-(+2) 99]: B. F. Kostenko, V. D. Kuznetsov, M. B. Miller, A. V. Sermyagin, & D. V. Kamanin, "Nuclear teleportation", quant-ph/9912119.
  115. [Kostenko-Kuznetsov-Miller-(+2) 00]: B. F. Kostenko, V. D. Kuznetsov, M. B. Miller, A. V. Sermyagin, & D. V. Kamanin, "Possibility for teleportation of nuclei", quant-ph/0012133.
  116. [Kowalski-Plastino-Proto 02]: A. M. Kowalski, A. Plastino, & A. N. Proto, "Classical limits", Phys. Lett. A 297, 3-4, 162-172 (2002).
  117. [Kox 02]: A. J. Kox, "The genius of science: A portrait gallery of twentieth-century physicists", Eur. J. Phys. 23, 2, 233 (2002). Review of [Pais 00].
  118. [Koziel-Majewski 01]: S. Koziel, & W. A. Majewski, "Evolution of entanglement for spin-flip dynamics", quant-ph/0101033.

  119. |Домой|