1. [Lo-Shimony 81]: T. K. Lo, & A. Shimony, "Proposed molecular test of local hidden-variables theories", Phys. Rev. A 23, 6, 3003-3012 (1981). Comment: [Santos 84 b]. See [Shimony 84 b].
  2. [Lo 95]: H.-K. Lo, "Quantum coding theorem for mixed states", quant-ph/9504004.
  3. [Lo-Chau 95]: H.-K. Lo, & H. F. Chau, "Quantum cryptography in noisy channels", quant-ph/9511025.
  4. [Lo-Chau 96]: H.-K. Lo, & H. F. Chau, "Why quantum bit commitment and ideal quantum coin tossing are impossible", quant-ph/9605026. Enlarged version: [Lo-Chau 98 a].
  5. [Lo 97]: H.-K. Lo, "Insecurity of quantum secure computations", Phys. Rev. A 56, 2, 1154-1162 (1997).
  6. [Lo-Chau 97]: H.-K. Lo, & H. F. Chau, "Is quantum bit commitment really possible?", Phys. Rev. Lett. 78, 17, 3410-3413 (1997).
  7. [Lo-Chau 98 a]: H.-K. Lo, & H. F. Chau, "Why quantum bit commitment and ideal quantum coin tossing are impossible", Physica D 120, 177-187 (1998); quant-ph/9711065. Enlarged version of [Lo-Chau 96].
  8. [Lo 98]: H.-K. Lo, "Quantum cryptology", in [Lo-Spiller-Popescu 98], pp. 76-119.
  9. [Lo-Spiller-Popescu 98]: H.-K. Lo, S. Popescu, & T. Spiller (eds.), Introduction to quantum computation and information, World Scientific, Singapore, 1998. Review: [DiVincenzo 99 b].
  10. [Lo-Chau 98 b]: H.-K. Lo, & H. F. Chau, "Security of quantum key distribution", quant-ph/9803006. Extended version of [Lo-Chau 99].
  11. [Lo-Chau 98 c]: H.-K. Lo, & H. F. Chau, "Quantum cryptographic system with reduced data loss", patent US5732139, 1998. See [Ardehali-Chau-Lo 98], [Lo-Chau-Ardehali 00].
  12. [Lo-Chau 98 d]: H.-K. Lo, & H. F. Chau, "Why quantum bit commitment and ideal quantum coin tossing are impossible", Physica D 120, ?, 177-? (1998).
  13. [Lo-Chau 99]: H.-K. Lo, & H. F. Chau, "Unconditional security of quantum key distribution over arbitrarily long distances", Science 283, 5410, 2050-2056 (1999). See [Lo-Chau 98 a].
  14. [Lo-Popescu 99]: H.-K. Lo, & S. Popescu, "Classical communication cost of entanglement manipulation: Is entanglement an interconvertible resource?", Phys. Rev. Lett. 83, 7, 1459-1462 (1999).
  15. [Lo 00 a]: H.-K. Lo, "Classical-communication cost in distributed quantum-information processing: A generalization of quantum-communication complexity", Phys. Rev. A 62, 1, 012313 (2000); quant-ph/9912009.
  16. [Lo 00 b]: H.-K. Lo, "Will quantum cryptography ever become a successful technology in the marketplace?", Phys. World 13, 6, 17-? (2000). Extended version: quant-ph/9912011.
  17. [Lo-Chau-Ardehali 00]: H.-K. Lo, H. F. Chau, & M. Ardehali, "Efficient quantum key distribution scheme and proof of its unconditional security", quant-ph/0011056. See [Lo-Chau 98 b], [Ardehali-Chau-Lo 98].
  18. [Lo-Popescu 01]: H.-K. Lo, & S. Popescu, "Concentrating entanglement by local actions: Beyond mean values", Phys. Rev. A 63, 2, 022301 (2001); quant-ph/9707038.
  19. [Lo 01 a]: H.-K. Lo, "A simple proof of the unconditional security of quantum key distribution", in S. Popescu, N. Linden, & R. Jozsa (eds.), J. Phys. A 34, 35 (Special issue: Quantum information and computation), 6957-6968 (2001).
  20. [Lo 01 b]: H.-K. Lo, "Proof of unconditional security of six-state quantum key distribution scheme", quant-ph/0102138.
  21. [Lo 02]: H.-K. Lo, "Method for decoupling error correction from privacy amplification", quant-ph/0201030.
  22. [Lo-Ko 03]: H.-K. Lo, & T.-M. Ko, "Some attacks on quantum-based cryptographic protocols", quant-ph/0309127.
  23. [Lo 03]: H.-K. Lo, "Why quantum information processing", quant-ph/0309128.
  24. [Lochak 84]: G. Lochak, "The evolution of the ideas of Louis de Broglie on the interpretation of wave mechanics", in [Barut-van der Merwe-Vigier 84], pp. 11-33. See [van der Merwe 84].
  25. [Lockhart 99]: R. B. Lockhart, "Optimal ensemble length of mixed separable states", quant-ph/9908050.
  26. [Lockhart-Steiner-Gerlach 00]: R. B. Lockhart, M. Steiner, & K. Gerlach, "Geometry and product states", quant-ph/0010013. See [Sanpera-Tarrach-Vidal 98 a].
  27. [Lockhart 01]: R. B. Lockhart, "Non-maximal rank separable states are a set of measure 0 within the set of non-maximal rank states", quant-ph/0111022.
  28. [Lockhart-Steiner 02]: R. B. Lockhart, & M. J. Steiner, "Preserving entanglement under perturbation and sandwiching all separable states", Phys. Rev. A 65, 2, 022107 (2002); quant-ph/0009090.
  29. [Lockhart 02]: R. Lockhart, "Low-rank separable states are a set of measure zero within the set of low-rank states", Phys. Rev. A 65, 6, 064304 (2002); quant-ph/0111051.
  30. [Lockwood 96]: M. Lockwood, "`Many minds" interpretations of quantum mechanics', Brit. J. Philos. Sci. 47, 2, 159-188 (1996). Comment: [Deutsch 96].
  31. [Lodahl 03]: P. Lodahl, "Einstein-Podolsky-Rosen correlations in second-harmonic generation", Phys. Rev. A 68, 2, 023806 (2003).
  32. [Loeber 99]: P. Loeber, "Quantum channels and simultaneous ID coding", quant-ph/9907019.
  33. [Lokajicek 98 a]: M. V. Lokajicek, "Are quantum teleportation and cryptography predicted by quantum mechanics?", quant-ph/9808019.
  34. [Lokajicek 98 b]: M. V. Lokajicek, "Realistic theory of microscopic phenomena; a new solution of hidden-variable problem", quant-ph/9811030.
  35. [Lombardi-Sciarrino-Popescu-De Martini 02]: E. Lombardi, F. Sciarrino, S. Popescu, & F. De Martini, "Teleportation of entangled states of a vacuum-one photon qubit", Phys. Rev. Lett. 88, 7, 070402 (2002); quant-ph/0109160.
  36. [Lomonaco 98]: S. J. Lomonaco, Jr., "A quick glance at quantum cryptography", Cryptologia, quant-ph/9811056.
  37. [Lomonaco 02 a]: S. J. Lomonaco, Jr. (ed.), Quantum computation: A grand mathematical challenge for the twenty-first century and the millennium, American Mathematical Society, Providence, Rhode Island, 2002.
  38. [Lomonaco 02 b]: S. J. Lomonaco, Jr., "A Rosetta stone for quantum mechanics with an introduction to quantum computation", in [Lomonaco 02 a], pp. 3-65; quant-ph/0007045.
  39. [Lomonaco 02 c]: S. J. Lomonaco, Jr., "Shor's quantum factoring algorithm", in [Lomonaco 02 a], pp. 161-179; quant-ph/0010034.
  40. [Lomonaco 02 d]: S. J. Lomonaco, Jr., "Grover's quantum search algorithm", in [Lomonaco 02 a], pp. 181-192.
  41. [Lomonaco 02 e]: S. J. Lomonaco, Jr., "A talk on quantum cryptography: Or how Alice outwits Eve", revised version of a paper published in D. Joyner (ed.), Coding theory, and cryptography: From Geheimscheimschreiber and enigma to quantum theory, Springer-Verlag, New York, 1999, pp. 144-174, in [Lomonaco 02 a], pp. 237-264; quant-ph/0102016.
  42. [Lomonaco 02 f]: S. J. Lomonaco, Jr., "An entangled tale of quantum entanglement", in [Lomonaco 02 a], pp. 305-349; quant-ph/0101120.
  43. [Lomonaco-Brandt 02]: S. J. Lomonaco, Jr., & H. E. Brandt (eds.), Quantum computation and information, American Mathematical Society, Providence, Rhode Island, 2002.
  44. [Lomonaco-Kauffman 03]: S. J. Lomonaco, Jr., & L. H. Kauffman, "Countinuous quantum hidden subgroup algorithms", quant-ph/0304084.
  45. [Long-Li-Zhang-Niu 99]: G. L. Long, Y. S. Li, W. L. Zhang, & L. Niu, "Phase matching in quantum searching", Phys. Lett. A 262, 1, 27-34 (1999); quant-ph/9906020.
  46. [Long-Li-Zhang-Tu 99]: G. L. Long, Y. S. Li, W. L. Zhang, & C. C. Tu, "An intrinsic limitation on the size of quantum database", quant-ph/9910076.
  47. [Long-Tu-Li-Zhang-(+2) 99]: G. L. Long, C. C. Tu, Y. S. Li, W. L. Zhang, & H. Y. Yan, "A novel SO(3) picture for quantum searching", quant-ph/9911004.
  48. [Long-Li-Zhang-Tu 00]: G. L. Long, Y. S. Li, W. L. Zhang, & C. C. Tu, "Dominant gate imperfection in Grover's quantum search algorithm", Phys. Rev. A 61, 4, 042305 (2000).
  49. [Long-Yan-Li-(+6) 00]: G. L. Long, H. Y. Yan, Y. S. Li, C. C. Tu, S. J. Zhu, D. Ruan, Y. Sun, J. X. Tao, & H. M. Chen, "On the quantum mechanical nature in liquid NMR quantum computing", quant-ph/0007077.
  50. [Long-Liu 02]: G. L. Long, & X. S. Liu, "Theoretically efficient high-capacity quantum-key-distribution scheme", Phys. Rev. A 65, 3, 032302 (2002); quant-ph/0012056.
  51. [Long-Sun 01]: G. L. Long, & Y. Sun, "Efficient scheme for initializing a quantum register with an arbitrary superposed state", Phys. Rev. A 64, 1, 014303 (2001); quant-ph/0104030.
  52. [Long 01]: G. L. Long, "Grover algorithm with zero theoretical failure rate", Phys. Rev. A 64, 2, 022307 (2001); quant-ph/0106071.
  53. [Long-Yan-Li-(+8) 01]: G. L. Long, H. Y. Yan, Y. S. Li, C. C. Tu, J. X. Tao, H. M. Chen, M. L. Liu, X. Zhang, J. Luo, L. Xiao, & X. Z. Zheng, "Experimental NMR realization of a generalized quantum search algorithm", Phys. Lett. A 286, 2-3, 121-126 (2001); quant-ph/0009059.
  54. [Long-Yan-Sun 01]: G. L. Long, H. Y. Yan, & Y. Sun, "Analysis of density matrix reconstruction in NMR quantum computing", J. Opt. B: Quantum Semiclass. Opt. 3, 6, 376-381 (2001); quant-ph/0012047.
  55. [Long-Li-Sun 01]: G. L. Long, X. Li, & Y. Sun, "Phase matching condition for quantum search with a generalized initial state", Phys. Lett. A 294, 3-4, 143-152 (2002); quant-ph/0107013.
  56. [Long-Xiao 03]: G. L. Long, & L. Xiao, "Experimental realization of a fetching algorithm in a 7-qubit NMR spin Liouville space computer", J. Chem. Phys. 119, 8473-? (2003).
  57. [López-Paz 03]: C. C. López, & J. P. Paz, "Phase-space approach to the study of decoherence in quantum walks", Phys. Rev. A 68, 5, 052305 (2003); quant-ph/0308104.
  58. [Lorenz-Silberhorn-Korolkova-(+2) 01]: S. Lorenz, C. Silberhorn, N. Korolkova, R. S. Windeler, & G. Leuchs, submitted to Appl. Phys. B "Squeezed light from microstructured fibres: Towards free space quantum cryptography", quant-ph/0109018.
  59. [Loss-DiVincenzo 98]: D. Loss, & D. P. DiVincenzo, "Quantum computation with quantum dots", Phys. Rev. A 57, 1, 120-126 (1998); cond-mat/9701055. Reprinted in [Macchiavello-Palma-Zeilinger 00], pp. 433-439.
  60. [Loss-Burkard-Sukhorukov 99]: D. Loss, G. Burkard, & E. V. Sukhorukov, "Quantum computing and quantum communication with electrons in nanostructures", to be published in the Proc. of the XXXIVth Rencontres de Moriond "Quantum Physics at Mesoscopic Scale" (Les Arcs, Savoie, France, 1999); cond-mat/9907133.
  61. [Loss-Sukhorukov 00]: D. Loss, & E. V. Sukhorukov, "Probing entanglement and nonlocality of electrons in a double-dot via transport and noise", Phys. Rev. Lett. 84, 5, 1035-1038 (2000); cond-mat/9907129.
  62. [Loss 00]: D. Loss, "Quantum computation and quantum communication with electrons", [Macchiavello-Palma-Zeilinger 00], pp. 427-432.
  63. [Loubenets 01]: E. R. Loubenets, "Quantum stochastic approach to the description of quantum measurements", J. Phys. A 34, 37, 7639-7675 (2001); quant-ph/0109094.
  64. [Loubenets 03]: E. R. Loubenets, "`Local realism", Bell's theorem and quantum "locally realistic" inequalities', quant-ph/0309111.
  65. [Lougovski-Solano-Walther 03]: P. Lougovski, E. Solano, & H. Walther, "Generation and purification of maximally-entangled atomic states in optical cavities", quant-ph/0308059.
  66. [Lovett-Reina-Nazir-Briggs 03]: B. Lovett, J. H. Reina, A. Nazir, & A. Briggs, "Optical schemes for quantum computation in quantum dot molecules", quant-ph/0307021.
  67. [Lu-Guo 00]: H. Lu, & G.-C. Guo, "Teleportation of a two-particle entangled state via entanglement swapping", Phys. Lett. A 276, 5-6, 209-212 (2000).
  68. [Lu-Chen-Pan-Zhan 02]: H.-X. Lu, Z.-B. Chen, J.-W. Pan, & Y.-D. Zhang, "Calculation of entanglement for continious variable states", quant-ph/0204098.
  69. [Lucarelli 02 a]: D. Lucarelli, "Chow's theorem and universal holonomic quantum computation", J. Phys. A 35, 24, 5107-5114 (2002); quant-ph/0111078. See [Lucarelli 02 b].
  70. [Lucarelli 02 b]: D. Lucarelli, "Control algebra for holonomic quantum computation with squeezed coherent states", quant-ph/0202055. Some overlap with [Lucarelli 02 a].
  71. [Lüders 51]: Lüders, "Über die Zustandsänderung durch den messprozss", Annalen der Physik 8, ?, 322-328 (1951).
  72. [Ludwig 64]: G. Ludwig, "Versuch einer axiomatischen Grundlegung der Quantenmechanik und allgemeinerer physicalichen Theorien", Z. Physik 181, 233-260 (1964). See [Ludwig 67 c] (II), [Ludwig 68 a] (III).
  73. [Ludwig 67 a]: G. Ludwig, "Hauptsätze über das Messen als Grundlage der Hilbert-Raumstruktur der Quantenmechanik", Z. Naturforsch. 22 a, ?, 1303-1323 (1967).
  74. [Ludwig 67 b]: G. Ludwig, "Ein weiterer Hauptsatz über das Messen als Grundlage der Hilbert-Raumstruktur der Quantenmechanik", Z. Naturforsch. 22 a, ?, 1324-1327 (1967).
  75. [Ludwig 67 c]: G. Ludwig, "Attempt for an axiomatic foundation of quantum mechanics and more general theories. II", Comm. Math. Phys. 4, ?, 331-348 (1967). See [Ludwig 64] (I), [Ludwig 68 a] (III).
  76. [Ludwig 68 a]: G. Ludwig, "Attempt for an axiomatic foundation of quantum mechanics and more general theories. III", Comm. Math. Phys. 9, 1, 1-12 (1967). See [Ludwig 64] (I), [Ludwig 67 c] (II).
  77. [Ludwig 68 b]: G. Ludwig, Wave mechanics, Oxford University Press, Oxford, 1968.
  78. [Ludwig 76]: G. Ludwig, Einführung in die Grundlagen der Theoretischen Physik, Vieweg, Braunschweig, 1976.
  79. [Ludwig 83]: G. Ludwig, Foundations of quantum mechanics, Springer-Verlag, New York, 1983.
  80. [Ludwin-Ben Aryeh 01]: D. Ludwin, & Y. Ben-Aryeh, "The role of momentum transfer in welcher-Weg experiments", Found. Phys. Lett. 14, 6, 519-528 (2001).
  81. [Luecke 97]: W. Luecke, "Gisin nonlocality of the Doebner-Goldin 2-particle equation", quant-ph/9710033.
  82. [Luis-Sánchez Soto 98 a]: A. Luis, & L. L. Sánchez-Soto, "Anti-Zeno effect in parametric down-conversion", Phys. Rev. A 57, 2, 781-787 (1998).
  83. [Luis-Sánchez Soto 98 b]: A. Luis, & L. L. Sánchez-Soto, "Dynamical analysis of seemingly interaction-free measurements", Phys. Rev. A 58, 2, 836-839 (1998).
  84. [Luis-Sánchez Soto 98 c]: A. Luis, & L. L. Sánchez-Soto, "Complementarity enforced by random classical phase kicks", Phys. Rev. Lett. 81, 19, 4031-4035 (1998).
  85. [Luis-Sánchez Soto 99 a]: A. Luis, & L. L. Sánchez-Soto, "Dynamics of a two-level atom observed via an interaction-free measurement", Phys. Rev. A 60, 1, 56-62 (1999).
  86. [Luis-Sánchez Soto 99 b]: A. Luis, & L. L. Sánchez-Soto, "?", Phys. Lett. A 252, ?, 130-? (1999).
  87. [Luis-Sánchez Soto 99 c]: A. Luis, & L. L. Sánchez-Soto, "Measuring quantum input-output processes: Phase-space representation of transformations", Phys. Lett. A 261, 1-2, 12-16 (1999).
  88. [Luis-Sánchez Soto 99 d]: A. Luis, & L. L. Sánchez-Soto, "Complete characterization of arbitrary quantum measurement processes", Phys. Rev. Lett. 83, 18, 3573-3576 (1999).
  89. [Luis 00]: A. Luis, "Quantum tomography of input-output processes", Phys. Rev. A 62, 5, 054302 (2000).
  90. [Luis 01 a]: A. Luis, "Quantum-state preparation and control via the Zeno effect", Phys. Rev. A 63, 5, 052112 (2001).
  91. [Luis 01 b]: A. Luis, "Complementarity and certainty relations for two-dimensional systems", Phys. Rev. A 64, 1, 012103 (2001).
  92. [Luis 01 c]: A. Luis, "Complementarity in multiple beam interference", J. Phys. A 34, 41, 8597-8600 (2001).
  93. [Luis 01 d]: A. Luis, "Equivalence between macroscopic quantum superpositions and maximally entangled states: Application to phase-shift detection", Phys. Rev. A 64, 5, 054102 (2001).
  94. [Luis 02]: A. Luis, "Generation of maximally entangled states via dispersive interactions", Phys. Rev. A 65, 3, 034102 (2002).
  95. [Luis 03]: A. Luis, "Visibility for multi-particle interference", Phys. Lett. A 314, 3, 197-202 (2003).
  96. [Lukin-Matsko-Fleischhauer-Scully 98]: M. D. Lukin, A. B. Matsko, M. Fleischhauer, & M. O. Scully, "Quantum noise and correlations in resonantly enhanced wave mixing based on atomic coherence", quant-ph/9811028.
  97. [Lukin-Hemmer 99]: M. D. Lukin, & P. R. Hemmer, "Coherent control of atom-atom interactions and entanglement using optical fields", quant-ph/9905025.
  98. [Lukin-Imamoglu 00]: M. D. Lukin, & A. Imamoglu, "Nonlinear optics and quantum entanglement of ultraslow single photons", Phys. Rev. Lett. 84, 7, 1419-1422 (2000).
  99. [Lukin-Yelin-Fleischhauer 00]: M. D. Lukin, S. F. Yelin, & M. Fleischhauer, "Entanglement of atomic ensembles by trapping correlated photon states", Phys. Rev. Lett. 84, 18, 4232-4235 (2000).
  100. [Lukin-Fleischhauer-Cote-(+4) 01]: M. D. Lukin, M. Fleischhauer, R. Cote, L. M. Duan, D. Jaksch, J. I. Cirac, & P. Zoller, "Dipole blockade and quantum information processing in mesoscopic atomic ensembles", Phys. Rev. Lett. 87, 3, 037901 (2001); quant-ph/0011028.
  101. [Lund-Ralph 02]: A. P. Lund, & T. C. Ralph, "Nondeterministic gates for photonic single-rail quantum logic", Phys. Rev. A 66, 3, 032307 (2002).
  102. [Lund-Bell-Ralph 03]: A. P. Lund, T. B. Bell, & T. C. Ralph, "Comparison of linear optics quantum-computation control-sign gates with ancilla inefficiency and an improvement to functionality under these conditions", Phys. Rev. A 68, 2, 022313 (2003); quant-ph/0308071.
  103. [Luo-Zeng 98]: J. Luo, & X. Zeng, "NMR quantum computation with a hyperpolarized nuclear spin bulk", quant-ph/9811044.
  104. [Luo-Zhang 03]: S. Luo, & Z. Zhang, "Entanglement and interference", Phys. Lett. A 315, 3-4, 189-193 (2003).
  105. [Luo-Krüger-Brugger-(+7) 03]: X. Luo, P. Krüger, K. Brugger, S. Wildermuth, H. Gimpel, M. W. Klein, S. Groth, R. Folman, I. Bar-Joseph, & J. Schmiedmayer, "An atom fiber for guiding cold neutral atoms", quant-ph/0311174.
  106. [Luque-Thibon 03]: J.-G. Luque, & J.-Y. Thibon, "Polynomial invariants of four qubits", Phys. Rev. A 67, 4, 042303 (2003); quant-ph/0212069.
  107. [Lütkenhaus 96]: N. Lütkenhaus, "Security against eavesdropping in quantum cryptography", Phys. Rev. A 54, 1, 97-111 (1996).
  108. [Lütkenhaus-Barnett 97]: N. Lütkenhaus, & S. M. Barnett, "Security against eavesdropping in quantum cryptography", Int. workshop on quantum communication, computing, and measurement (Shizuoka, Japan, 1996), Plenum Press, New York (1997), quant-ph/9711033.
  109. [Lütkenhaus-Cirac-Zoller 98]: N. Lütkenhaus, J. I. Cirac, & P. Zoller, "Mimicking a squeezed-bath interaction: Quantum-reservoir engineering with atoms", Phys. Rev. A 57, 11, 548-558 (1998).
  110. [Lütkenhaus-Calsamiglia-Suominen 99]: N. Lütkenhaus, J. Calsamiglia, & K.-A. Suominen, "Bell measurements for teleportation", Phys. Rev. A 59, 5, 3295-3300 (1999); quant-ph/9809063. See [Vaidman-Yoran 99].
  111. [Lütkenhaus 99]: N. Lütkenhaus, "Estimates for practical quantum cryptography", Phys. Rev. A 59, 5, 3301-3319 (1999); quant-ph/9806008.
  112. [Lütkenhaus 00]: N. Lütkenhaus, "Security against individual attacks for realistic quantum key distribution", Phys. Rev. A 61, 5, 052304 (2000); quant-ph/9910093.
  113. [Lütkenhaus-Jahma 02]: N. Lütkenhaus, & M. Jahma, "Quantum key distribution with realistic states: Photon-number statistics in the photon-number splitting attack", New J. Phys 4, 44.1-44.9 (2002); quant-ph/0112147.
  114. [Luzuriaga 02]: J. Luzuriaga, `Comment on "Super classical quantum mechanics: The best interpretation of nonrelativistic quantum mechanics," by W. E. Lamb [Am. J. Phys. 69, 413-422 (2001)]', Am. J. Phys. 70, 1, 10 (2002). Comment on [Lamb 01 a].
  115. [Lvovsky-Shapiro 01]: A. I. Lvovsky, & J. H. Shapiro, Submitted to Phys. Rev. A; "Nonclassical character of statistical mixtures of the single-photon and vacuum optical states", quant-ph/0109057.
  116. [Lvovsky 02]: A. I. Lvovsky, "Cabello's nonlocality and linear optics", Phys. Rev. Lett. 88, 9, 098901 (2002). Comment to [Cabello 01 d].
  117. [Lvovsky-Babichev 02]: A. I. Lvovsky, & S. A. Babichev, "Synthesis and tomographic characterization of the displaced Fock state of light", quant-ph/0202163.
  118. [Lvovsky-Mlynek 02]: A. I. Lvovsky, & J. Mlynek, "Quantum-optical catalysis: Generating nonclassical states of light by means of linear optics", Phys. Rev. Lett. 88, 25, 250401 (2002); quant-ph/0202164.
  119. [Lvovsky 03]: A. I. Lvovsky, "Iterative maximum-likelihood reconstruction in quantum homodyne tomography", quant-ph/0311097.
  120. [Lyubomirsky-Shirasaki-Kärtner-Haus 93]: I. Lyubomirsky, M. Shirasaki, F. X. Kärtner, & H. A. Haus, "Test of Bell's inequality with squeezed light from a Sagnac fibre ring", Quantum Opt. 5, 4, 241-250 (1993).
  121. [Lyre 97]: H. Lyre, "Against measurement?-On the concept of information", in 10th Max Born Symp. "Quantum Future" (Wroclaw, Poland, 1997); quant-ph/9709059. See [Bell 90].

  122. |Домой|