- [Wagh 99]:
A. G. Wagh,
"Neutron interferometry was the first to correlate
complementarity and `which-way' information",
Phys. Lett. A 259, 2, 81-82 (1999).
- [Waks-Zeevi-Yamamoto 02]:
E. Waks, A. Zeevi, & Y. Yamamoto,
"Security of quantum key distribution with entangled photons against
individual attacks",
Phys. Rev. A 65, 5, 052310 (2002);
quant-ph/0012078.
- [Waks-Santori-Yamamoto 02]:
E. Waks, C. Santori, & Y. Yamamoto,
"Security aspects of quantum key distribution with sub-Poisson light",
Phys. Rev. A 66, 4, 042315 (2002).
- [Waks-Inoue-Santori-(+4) 02]:
E. Waks, K. Inoue, C. Santori,
D. Fattal, J. Vuckovic, G. S. Solomon, & Y. Yamamoto,
"Secure communication: Quantum cryptography with a photon turnstile",
Nature 420, 6917, 762 (2002).
- [Waks-Diamanti-Sanders-(+2) 03]:
E. Waks, E. Diamanti, B. C. Sanders,
S. D. Bartlett, & Y. Yamamoto,
"Direct observation of non-classical photon statistics in parametric
downconversion",
quant-ph/0307162.
- [Waks-Inoue-Diamanti-Yamamoto 03]:
E. Waks, K. Inoue, E. Diamanti, & Y. Yamamoto,
"High efficiency photon number detection for quantum information
processing",
quant-ph/0308054.
- [Waks-Diamanti-Yamamoto 03]:
E. Waks, E. Diamanti, & Y. Yamamoto,
"Generation of photon number states",
quant-ph/0308055.
- [Walborn-Terra Cunha-Pádua-Monken 02]:
S. P. Walborn, M. O. Terra Cunha, S. Pádua, & C. H. Monken,
"Double-slit quantum eraser",
Phys. Rev. A 65, 3, 033818 (2002);
quant-ph/0106078.
See [Walborn-Terra Cunha-Pádua-Monken 03].
- [Walborn-Terra Cunha-Pádua-Monken 03]:
S. P. Walborn, M. O. Terra Cunha, S. Pádua, & C. H. Monken,
"Quantum erasure",
Am. Scientist 91, 336-343 (2003).
See [Walborn-Terra Cunha-Pádua-Monken 02].
- [Walborn-de Oliveira-Pádua-Monken 03]:
S. P. Walborn, A. N. de Oliveira, S. Pádua, & C. H. Monken,
"Multimode Hong-Ou-Mandel interference",
Phys. Rev. Lett. 90, 14, 143601 (2003).
- [Walborn-Pádua-Monken 03]:
S. P. Walborn, S. Padua, & C. H. Monken,
"Hyperentanglement-assisted Bell-state analysis",
Phys. Rev. A 68, 4, 042313 (2003);
quant-ph/0307212.
- [Walgate-Short-Hardy-Vedral 00]:
J. Walgate, A. J. Short, L. Hardy, & V. Vedral,
"Local distinguishability of multipartite orthogonal quantum states",
Phys. Rev. Lett. 85, 23, 4972-4975 (2000);
quant-ph/0007098.
- [Walgate-Hardy 02]:
J. Walgate, & L. Hardy,
"Nonlocality, asymmetry, and distinguishing bipartite states",
Phys. Rev. Lett. 89, 14, 147901 (2002);
quant-ph/0202034.
- [Wallace 01 a]:
D. Wallace,
"Simple computer model for the quantum Zeno effect",
Phys. Rev. A 63, 2, 022109 (2001).
- [Wallace 01 b]:
D. Wallace,
"Worlds in the Everett interpretation",
to appear in Stud. Hist. Philos. Sci. Part B:
Stud. Hist. Philos. Mod. Phys.;
quant-ph/0103092.
- [Wallace 01 c]:
D. Wallace,
"Everett and structure" (2001),
quant-ph/0107144,
PITT-PHIL-SCI00000681.
- [Wallace 03]:
D. Wallace,
"Quantum probability and decision theory, revisited",
Stud. Hist. Philos. Sci. Part B: Stud. Hist. Philos. Mod. Phys.;
quant-ph/0303050,
PITT-PHIL-SCI00000885, PITT-PHIL-SCI00001030.
- [Wallace 96]:
P. R. Wallace,
Paradox lost. Images of the quantum,
Springer-Verlag, New York, 1996.
- [Wallach 02]:
N. R. Wallach,
"An unentangled Gleason's theorem",
in [Lomonaco-Brandt 02] 291-298;
quant-ph/0002058.
- [Wallentowitz-de Matos Filho-Vogel 97]:
S. Wallentowitz, R. L. de Matos Filho, & W. Vogel,
"Determination of entangled quantum states of a trapped atom",
Phys. Rev. A 56, 2, 1205-1211 (1997).
- [Wallentowitz-Walmsley-Eberly 00]:
S. Wallentowitz, I. A. Walmsley, & J. H. Eberly,
"How big is a quantum computer?",
quant-ph/0009069.
- [Walls-Milburn 95]:
D. F. Walls, & G. J. Milburn,
Quantum optics,
Springer-Verlag, New York, 1995.
- [Walmsley 99]:
I. A. Walmsley,
"Quantum optics by Marlan O. Scully and M. Suhail Zubairy",
Am. J. Phys. 67, 7, 648 (1999).
Review of [Scully-Zubairy 97].
- [Walther 92]:
H. Walther,
"Experiments on cavity quantum electrodynamics",
Phys. Rep. 219, 3-6, 263-281 (1992).
- [Walther 97]:
H. Walther,
"Entanglement and superposition states in the micromaser",
in P. L. Knight, B. Stoicheff, & D. Walls (eds.),
Highlight in Quantum Optics,
Philos. Trans. R. Soc. Lond. A 355, 1733, 2343-2351 (1997).
- [Walther 98]:
H. Walther,
"Single atom experiments in cavities and traps",
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, 431-445 (1998).
- [Walther-Pan-Aspelmeyer-(+3) 03]:
P. Walther, J.-W. Pan, M. Aspelmeyer,
R. Ursin, S. Gasparoni, & A. Zeilinger
"De Broglie wavelength of a nonlocal four-photon",
quant-ph/0312197.
- [Walther-Fry 97]:
T. Walther, & E. S. Fry,
"An experimental realization of Bohm's spin-[1/2] particle EPR
gedanken experiment",
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. 431-439.
- [Walton-Sergienko-Atatüre 01]:
Z. D. Walton, A. V. Sergienko, M. Atatüre,
B. E. A. Saleh, & M. C. Teich,
"Performance of photon-pair quantum key distribution systems",
quant-ph/0103145.
- [Walton-Abouraddy-Sergienko-(+2) 03 a]:
Z. D. Walton, A. F. Abouraddy, A. V. Sergienko,
B. E. A. Saleh, & M. C. Teich,
"One-way entangled-photon autocompensating quantum cryptography",
Phys. Rev. A 67, 6, 062309 (2003);
quant-ph/0207167.
- [Walton-Abouraddy-Sergienko-(+2) 03 b]:
Z. D. Walton, A. F. Abouraddy, A. V. Sergienko,
B. E. A. Saleh, & M. C. Teich,
"Decoherence-free subspaces in quantum key distribution",
Phys. Rev. Lett. 91, 8, 087901 (2003);
quant-ph/0304075.
- [Walton-Booth-Sergienko-(+2) 03]:
Z. D. Walton, M. C. Booth, A. V. Sergienko,
B. E. A. Saleh, & M. C. Teich,
"Controllable frequency entanglement via auto-phase-matched spontaneous
parametric down-conversion",
Phys. Rev. A 67, 5, 053810 (2003).
- [Walton-Sergienko-Levitin-(+2) 03]:
Z. D. Walton, A. V. Sergienko, L. B. Levitin,
B. E. A. Saleh, & M. C. Teich,
"Symmetric autocompensating quantum key distribution",
quant-ph/0309050.
- [Wan 80]:
K.-K. Wan,
"Superselection rules, quantum measurement and the Schrödinger's cat",
Canadian J. Phys. 58, ?, 976-982 (1980).
- [Wan-Bradshaw-Trueman-Harrison 98]:
K.-K. Wan, J. Bradshaw, C. Trueman, & F. E. Harrison,
"Classical systems, standard quantum systems, and
mixed quantum systems in Hilbert space",
Found. Phys. 28, 12, 1739-1784 (1998).
- [Wang 00 a]:
A. M. Wang,
"Improving relative entropy of entanglement",
quant-ph/0001023.
See [Wang 02].
- [Wang 00 b]:
A. M. Wang,
"Eigenvalues, Peres' separable condition and entanglement",
quant-ph/0002073.
See [Peres 96 c].
- [Wang 00 c]:
A. M. Wang,
"New construction of an universal quantum network and its
applications",
quant-ph/0006122.
- [Wang 00 d]:
A. M. Wang,
"Generalization of the entanglement of formation for multi-party
systems",
quant-ph/0011040.
- [Wang 00 e]:
A. M. Wang,
"Bounds on the generalized entanglement of formation for multi-party
systems",
quant-ph/0011091.
- [Wang 00 f]:
A. M. Wang,
" Improved relative entropy of entanglement for multi-party
systems",
quant-ph/0012029.
- [Wang 02]:
A. M. Wang,
"Modification of relative entropy of entanglement",
quant-ph/0203093.
See [Wang 00 a].
- [Wang-Ruda-Bi 01]:
J. Wang, H. E. Ruda, & Q. Bi,
"Decoherence of quantum registers in the weak-coupling limit",
Phys. Lett. A 294, 1, 6-12 (2002).
- [Wang-Li-Zheng 03]:
L. Wang, S.-S. Li, & H.-Z. Zheng,
"Conditions for the local manipulation of tripartite Gaussian states",
Phys. Rev. A 67, 6, 062317 (2003).
- [Wang-Li-Yang-(+3) 03]:
L. Wang, S.-S. Li, F.-H. Yang,
Z.-C. Niu, S.-L. Feng, & H.-Z. Zheng,
"Conditions for the local manipulation of all bipartite Gaussian states",
Phys. Rev. A 68, 2, 020302 (2003).
- [Wang-Zou-Mandel 91 a]:
L. J. Wang, X. Y. Zou, & L. Mandel,
"Experimental test of the de Broglie guided-wave theory for photons",
Phys. Rev. Lett. 66, 9, 1111-1114 (1991).
Comment: [Holland-Vigier 91].
Reply: [Wang-Zou-Mandel 91 b].
- [Wang-Zou-Mandel 91 b]:
L. J. Wang, X. Y. Zou, & L. Mandel,
"Wang. Zou, and Mandel reply",
Phys. Rev. Lett. 67, 3, 402 (1991).
Reply to [Holland-Vigier 91].
See [Wang-Zou-Mandel 91 a].
- [Wang-Hong-Friberg 01]:
L. J. Wang, C. K. Hong, & S. R. Friberg,
"Generation of correlated photons via four-wave mixing in optical fibres",
J. Opt. B: Quantum Semiclass. Opt. 3, 5, 346-352 (2001).
- [Wang-Kwek-Oh 00]:
X.-B. Wang, L. C. Kwek, & C. H. Oh,
"Quantum roulette: An extended quantum strategy",
Phys. Lett. A 278, 1-2, 44-46 (2000).
- [Wang 03]:
X.-B. Wang,
"Security proof for quantum key distribution in decoherence-free subspace",
quant-ph/0308092.
- [Wang-Sørensen-Mølmer 00]:
X. Wang, A. S. Sørensen, & K. Mølmer,
"Multibit gates for quantum computing",
Phys. Rev. Lett. 86, 17, 3907-3910 (2001);
quant-ph/0012055.
- [Wang 01 a]:
X. Wang,
"Effects of anisotropy on thermal entanglement",
Phys. Lett. A 281, 2-3, 101-104 (2001).
- [Wang 01 b]:
X. Wang,
"Quantum teleportation of entangled coherent states",
Phys. Rev. A 64, 2, 022302 (2001);
quant-ph/0102048.
- [Wang-Fu-Solomon 01]:
X. Wang, H. Fu, & A. I. Solomon,
"Thermal entanglement in three-qubit Heisenberg models",
quant-ph/0105075.
- [Wang 01 c]:
X. Wang,
"Continuous-variable and hybrid quantum gates",
J. Phys. A 34, 44, 9577-9584 (2001).
- [Wang 01 d]:
X. Wang,
"Entanglement in the quantum Heisenberg XY model",
quant-ph/0101013.
- [Wang 01 e]:
X. Wang,
"Maximal entanglement of nonorthorgonal states",
quant-ph/0102011.
- [Wang 01 f]:
X. Wang,
"Violation of Bell inequality for thermal states
of interaction qubits via a multi-qubit Heisenberg model",
quant-ph/0111165.
- [Wang-Sanders 02]:
X. Wang, & B. C. Sanders,
"Multipartite entangled coherent states",
Phys. Rev. A 65, 1, 012303 (2002);
quant-ph/0104011.
- [Wang 02 a]:
X. Wang,
"Bipartite entangled non-orthogonal states",
J. Phys. A 35, 1, 165-174 (2002).
- [Wang-Mølmer 02]:
X. Wang, & K. Mølmer,
"Pairwise entanglement in symmetric multi-qubit systems",
Eur. Phys. J. D 18, 3, 385-391 (2002);
quant-ph/0106145.
- [Wang-Zanardi 02 a]:
X. Wang, & P. Zanardi,
"Quantum entanglement and Bell inequalities in Heisenberg spin chains",
Phys. Lett. A 301, 1-2, 1-6 (2002);
quant-ph/0202108.
- [Wang-Zanardi 02 b]:
X. Wang, & P. Zanardi,
"Quantum entanglement of unitary operators on bipartite systems",
Phys. Rev. A 66, 4, 044303 (2002).
- [Wang 02 b]:
X. Wang,
"Thermal and ground-state entanglement in Heisenberg XX qubit rings",
Phys. Rev. A 66, 3, 034302 (2002);
quant-ph/0203141.
- [Wang 02 c]:
X. Wang,
"Violation of the Bell inequality for thermal states
of interaction qubits investigated via a multi-qubit Heisenberg model",
New J. Phys. 4, 11.1-11.9 (2002).
- [Wang 02 d]:
X. Wang,
"Threshold temperature for pairwise and many-particle thermal entanglement in
the isotropic Heisenberg model",
Phys. Rev. A 66, 4, 044305 (2002).
- [Wang-Feng-Sanders 03]:
X. Wang, M. Feng, & B. C. Sanders,
"Multipartite entangled states in coupled quantum dots and cavity QED",
Phys. Rev. A 67, 2, 022302 (2003).
- [Wang-Sanders-Berry 03]:
X. Wang, B. C. Sanders, & D. W. Berry,
"Entangling power and operator entanglement in qudit systems",
Phys. Rev. A 67, 4, 042323 (2003).
- [Wang-Sanders 03 a]:
X. Wang, & B. C. Sanders,
"Entanglement capability of a self-inverse Hamiltonian evolution",
Phys. Rev. A 68, 1, 014301 (2003).
- [Wang-Sanders 03 b]:
X. Wang, & B. C. Sanders,
"Spin squeezing and pairwise entanglement for symmetric multiqubit states",
Phys. Rev. A 68, 1, 012101 (2003).
- [Wang-Sanders 03 c]:
X. Wang, & B. C. Sanders,
"Relations between bosonic quadrature squeezing and atomic spin squeezing",
Phys. Rev. A 68, 3, 033821 (2003).
- [Wang-Ghose-Sanders-Hu 03]:
X. Wang, S. Ghose, B. C. Sanders, & B. Hu,
"Entanglement as a signature of quantum chaos",
quant-ph/0312047.
- [Wang-Zhang-Li-Guo 00]:
Z. Wang, C. Zhang, C.-F. Li, & G.-C. Guo,
"Universal quantum entanglement concentration gate",
quant-ph/0001060.
- [Wang-Feng-Gong-Xu 01]:
Z.-Y. Wang, X.-L. Feng, S.-Q. Gong, & Z.-Z. Xu,
"Atomic-state teleportation by using a quantum switch",
Phys. Rev. A 63, 6, 062308 (2001).
- [Warren-Gershenfeld-Chuang 97]:
W. S. Warren, N. Gershenfeld, & I. L. Chuang,
"The usefulness of NMR quantum computing",
Science 277, ?, 1688-1690 (1997).
- [Warszawski-Wiseman-Mabuchi 02]:
P. Warszawski, H. M. Wiseman, & H. Mabuchi,
"Quantum trajectories for realistic detection",
Phys. Rev. A;
quant-ph/0112129.
- [Watrous 00]:
J. Watrous,
"Quantum algorithms for solvable groups",
quant-ph/0011023.
- [Watson 95]:
A. Watson,
"Quantum physics:
`Eraser' rubs out information to reveal light's dual nature",
Science 270, 5238, 913-914 (1995).
- [Watson 96]:
A. Watson,
"Quantum mechanics:
Physicists trap photons and count them one by one",
Science 272, 5258, 34 (1996).
- [Watson 97 a]:
A. Watson,
"Quantum spookiness wins, Einstein loses in photon test",
Science 277, 5325, 481 (1997).
- [Watson 97 b]:
A. Watson,
"Quantum mechanics: Teleportation beams up a photon's state",
Science 278, 5345, 1881-1882 (1997).
- [Watson 98 a]:
A. Watson,
"Quantum computing: Fighting corruption in the quantum world",
Science 281, 5384, 1781 (1998).
- [Watson 98 b]:
A. Watson,
"Communications: Quantum encryption takes first step to orbit",
Science 282, 5389, 605-606 (1998).
- [Watson 99 a]:
A. Watson,
"Quantum mechanics: Entangled trio to put nonlocality to the test",
Science 283, 5407, 1429 (1999).
See [Bouwmeester-Pan-Daniell-(+2) 99],
[Pan-Bouwmeester-Daniell-(+2) 00].
- [Watson 99 b]:
A. Watson,
"Quantum mechanics: Physicists tame a single photon",
Science 285, 5426, 307-309 (1999).
- [Wawer-Keller-Liebman-Mahler 98]:
R. Wawer, M. Keller, A. Liebman, & G. Mahler,
"Quantum Zenon effects in composite systems",
Eur. Phys. J. D 1, 1, 15-28 (1998).
- [Wei-Lei 00]:
L. F. Wei, & X. L. Lei,
"Quantum controlled-NOT gates with a single trapped ion",
J. Opt. B: Quantum Semiclass. Opt. 2, 5, 581-583 (2000).
- [Wei-Liu-Lei 02]:
L. F. Wei, S. Y. Liu, & X. L. Lei,
"Quantum computation with two-level trapped cold ions beyond Lamb-Dicke limit",
Phys. Rev. A 65, 6, 062316 (2002).
- [Wei-Yang-Luo-(+4) 01]:
D. Wei, X. Yang, J. Luo,
X. Sun, X. Zeng, M. Liu, & S. Ding,
"Experimental realization of 7-qubit universal perfect
controlled-NOT and controlled square-root NOT gates",
quant-ph/0109002.
- [Wei-Xue-Morgera 98]:
H. Wei, X. Xue, & S. D. Morgera,
"Single molecule magnetic resonance and quantum computation",
quant-ph/9807057.
- [Wei-Goldbart 02]:
T.-C. Wei, & P. M. Goldbart,
" Geometric measure of entanglement for multipartite quantum states",
quant-ph/0212030.
- [Wei-Nemoto-Goldbart-(+3) 03]:
T.-C. Wei, K. Nemoto, P. M. Goldbart,
P. G. Kwiat, W. J. Munro, & F. Verstraete,
"Maximal entanglement versus entropy for mixed quantum states",
Phys. Rev. A 67, 2, 022110 (2003).
- [Wei-Goldbart 03 a]:
T.-C. Wei, & P. M. Goldbart,
"Application of the geometric measure of entanglement to three-qubit
mixed states",
quant-ph/0303158.
- [Wei-Goldbart 03 b]:
T.-C. Wei, & P. M. Goldbart,
"Geometric measure of entanglement and applications to bipartite and
multipartite quantum states",
Phys. Rev. A 68, 4, 042307 (2003);
quant-ph/0307219.
- [Wei-Altepeter-Goldbart-Munro 03]:
T.-C. Wei, J. B. Altepeter, P. M. Goldbart, & W. J. Munro,
"How entangled are bound entangled states?",
quant-ph/0308031.
- [Weigert 92]:
S. Weigert,
"Pauli problem for a spin of arbitrary length: A
simple method to determine its wave function",
Phys. Rev. A 45, 11, 7688-7696 (1992).
- [Weigert 98]:
S. Weigert,
"Reconstruction of spin states and its conceptual implications",
quant-ph/9809065.
- [Weigert 01]:
S. Weigert,
"Quantum parametric resonance",
quant-ph/0106138.
- [Weigert 03 a]:
S. Weigert,
"The quantum way to diagonalize hermitean matrices",
Fortschr. Phys. 51, ?, 248-? (2003);
quant-ph/0305140.
- [Weigert 03 b]:
S. Weigert,
"Quantum search for zeros of polynomials",
quant-ph/0305177.
- [Weigert-Busch 03]:
S. Weigert & P. Busch,
"Lüders theorem for coherent-state POVMs",
quant-ph/0308035.
- [Weihs-Reck-Weinfurter-Zeilinger 96 a]:
G. Weihs, M. Reck, H.
Weinfurter, & A. Zeilinger,
"Two-photon interference in optical fiber multiports",
Phys. Rev. A 54, 1, 893-897 (1996).
- [Weihs-Reck-Weinfurter-Zeilinger 96 a]:
G. Weihs, M. Reck, H.
Weinfurter, & A. Zeilinger,
"All-fiber three-path Mach-Zehnder interferometer",
Opt. Lett. 21, ?, 302-304 (1996).
- [Weihs-Weinfurter-Zeilinger 97]:
G. Weihs, H. Weinfurter, & A. Zeilinger,
"Towards a long distance Bell-experiment with independent observers",
in [Cohen-Horne-Stachel 97 a], pp. 271-280.
- [Weihs-Jennewein-Simon-(+3) 98]:
G. Weihs, T. Jennewein, C. Simon, H. Weinfurter, & A. Zeilinger,
"Violation of Bell's inequality under strict Einstein locality conditions",
Phys. Rev. Lett. 81, 23, 5039-5043 (1998);
quant-ph/9810080.
See [Aspect 99], [Weihs-Jennewein-Simon-(+3) 99].
- [Weihs-Jennewein-Simon-(+3) 99]:
G. Weihs, T. Jennewein, C. Simon, H. Weinfurter, & A. Zeilinger,
"A Bell experiment under strict Einstein locality conditions",
in [Greenberger-Reiter-Zeilinger 99], pp. ?-?.
See [Weihs-Jennewein-Simon-(+3) 98].
- [Weihs 02]:
G. Weihs,
"Bell's theorem for space-like separation",
in [Bertlmann-Zeilinger 02], pp. 155-162.
- [Weinacht-Ahn-Bucksbaum 99]:
T. C. Weinacht, J. Ahn, & P. H. Bucksbaum,
"Controlling the shape of a quantum wavefunction",
Nature 397, 6716, 233-235 (1999).
See [Schleich 99].
- [Weinberg 89 a]:
S. Weinberg,
"Testing quantum mechanics",
Ann. Phys. 194, 2, 336-386 (1989).
- [Weinberg 89 b]:
S. Weinberg,
"Precision tests of quantum mechanics",
Phys. Rev. Lett. 62, 5, 485-488 (1989).
See [Gisin 90], [Polchinski 91],
[Mielnik 00].
- [Weinberg 89 c]:
S. Weinberg,
"Weinberg replies",
Phys. Rev. Lett. 63, 10, 1115 (1989).
Reply to [Peres 89 d].
See [Weinberg 89 b].
- [Weinberg 89 d]:
S. Weinberg,
"?",
Nucl. Phys. B (Proc. Suppl.) 6, ?, 67-? (1989).
- [Weinberg 92]:
S. Weinberg,
Dreams of a final theory:
The scientist's search for the ultimate laws of nature,
?, ?, 1992; Vintage, New York, 1993.
Spanish version: El sueño de una teoría final,
Crítica, Barcelona, 1994.
- [Weinfurter 94]:
H. Weinfurter,
"Experimental Bell-state analysis",
Europhys. Lett. 25, 8, 559-564 (1994).
- [Weinfurter-Herzog-Kwiat-(+3) 95]:
H. Weinfurter, T. J. Herzog, P. G. Kwiat, J. G. Rarity,
A. Zeilinger, & M. Żukowski,
"Frustrated downconversion: Virtual or real photons?",
Ann. N. Y. Acad. Sci. 755, 61-72 (1995).
- [Weinfurter-Żukowski 01]:
H. Weinfurter, & M. Żukowski,
"Four-photon entanglement from down-conversion",
Phys. Rev. A 64, 1, 010102(R) (2001);
quant-ph/0103049.
- [Weinstein-Lloyd-Cory 99]:
Y. S. Weinstein, S. Lloyd, & D. G. Cory,
"Implementation of the quantum Fourier transform",
quant-ph/9906059.
- [Weinstein-Pravia-Fortunato-(+2) 01]:
Y. S. Weinstein, M. A. Pravia, E. M. Fortunato,
S. Lloyd, & D. G. Cory,
"Implementation of the quantum Fourier transform",
Phys. Rev. Lett. 86, 9, 1889-1891 (2001).
- [Weinstein-Lloyd-Emerson-Cory 99]:
Y. S. Weinstein, S. Lloyd, J. Emerson, & D. G. Cory,
"Experimental implementation of the quantum Baker's map",
Phys. Rev. Lett. 89, 15, 157902 (2002).
- [Weissman 99]:
M. B. Weissman,
"Emergent measure-dependent probabilities from modified
quantum dynamics without state-vector reduction",
Found. Phys. Lett. 12, ?, 407-426 (1999);
quant-ph/9906127.
- [Wellard-Hollenberg-Pauli 02]:
C. Wellard, L. C. L. Hollenberg, & H. C. Pauli,
"Nonadiabatic controlled-NOT gate for the Kane solid-state
quantum computer",
Phys. Rev. A 65, 3, 032303 (2002).
- [Wellens-Ku\'s 01]:
T. Wellens, & M. Ku\'s,
"Separable approximation for mixed states of composite quantum systems",
Phys. Rev. A 64, 5, 052302 (2001);
quant-ph/0104098.
- [Welsch-Scheel-Chizhov 01]:
D.-G. Welsch, S. Scheel, & A. V. Chizhov,
"Entanglement degradation in
continuous-variable quantum teleportation",
contribution to 7th Int. Conf. on Squeezed States and Uncertainty Relations ICCSUR
VII (Boston, 2001);
quant-ph/0105111.
- [Wen 02]:
X. G. Wen,
"Quantum order: a quantum entanglement of many particles",
Phys. Lett. A 300, 2-3, 175-181 (2002).
- [Wenger-Hafezi-Grosshans-(+2) 03]:
J. Wenger, M. Hafezi, F. Grosshans,
R. Tualle-Brouri, & P. Grangier,
"Maximal violation of Bell inequalities using continuous-variable
measurements",
Phys. Rev. A 67, 1, 012105 (2003).
- [Werbos-Dolmatova 00]:
P. J. Werbos, & L. Dolmatova,
"The backwards-time interpretation of
quantum mechanics - Revisited with experiment",
quant-ph/0008036.
- [Werner-Milburn 93]:
M. J. Werner, & G. J. Milburn,
"Eavesdropping using quantum nondemolition measurements",
Phys. Rev. A 47, 1, 639-641 (1993).
- [Werner 86]:
R. Werner,
"A generalization of stochastic mechanics and its relation to
quantum mechanics",
Phys. Rev. D 34, 2, 463-469 (1986).
- [Werner 89]:
R. F. Werner,
"Quantum states with Einstein-Podolsky-Rosen correlations
admitting a hidden-variable model",
Phys. Rev. A 40, 8, 4277-4281 (1989).
- [Werner 98]:
R. F. Werner,
"Optimal cloning of pure states",
Phys. Rev. A 58, 3, 1827-1832 (1998);
quant-ph/9804001.
- [Werner 99]:
R. F. Werner,
"EPR states for von Neumann algebras",
quant-ph/9910077.
- [Werner-Wolf 00]:
R. F. Werner, & M. M. Wolf,
"Bell's inequalities for states with positive partial
transpose",
Phys. Rev. A 61, 6, 062102 (2000);
quant-ph/9910063.
- [Werner-Vollbrecht 00]:
R. F. Werner, & K. G. H. Vollbrecht,
"A counterexample to a conjectured entanglement inequality",
quant-ph/0006046.
- [Werner-Wolf 01 a]:
R. F. Werner, & M. M. Wolf,
"Bound entangled Gaussian states",
Phys. Rev. Lett. 86, 16, 3658-3661 (2001);
quant-ph/0009118.
- [Werner 01 a]:
R. F. Werner,
"All teleportation and dense coding schemes",
in S. Popescu, N. Linden, & R. Jozsa (eds.),
J. Phys. A 34, 35
(Special issue: Quantum information and computation), 7081-7094 (2001);
quant-ph/0003070.
- [Werner 01 b]:
R. F. Werner,
"Quantum information theory - An invitation",
to appear in Quantum information - An introduction to basic
theoretical concepts and experiments,
Springer-Verlag, New York;
quant-ph/0101061.
- [Werner-Wolf 01 b]:
R. F. Werner, & M. M. Wolf,
"All-multipartite Bell-correlation inequalities
for two dichotomic observables per site",
Phys. Rev. A 64, 3, 032112 (2001);
quant-ph/0102024.
- [Werner-Wolf 01 c]:
R. F. Werner, & M. M. Wolf,
"Bell inequalities and entanglement",
submitted to Quant. Inf. Comp.;
quant-ph/0107093.
- [Werner-Holevo 02]:
R. F. Werner, & A. S. Holevo (Kholevo),
"Counterexample to an additivity conjecture for output purity of quantum
channels",
J. Math. Phys. 43, 9, 4353-4357 (2002);
quant-ph/0203003.
- [Wesenberg-Mølmer 02]:
J. Wesenberg, & K. Mølmer,
"Mixed collective states of many spins",
Phys. Rev. A 65, 6, 062304 (2002);
quant-ph/0201043.
- [Wesenberg-Mølmer 03]:
J. Wesenberg, & K. Mølmer,
"Robust quantum gates and a bus architecture for quantum computing with
rare-earth-ion-doped crystals",
Phys. Rev. A 68, 1, 012320 (2003).
- [Westmoreland-Schumacher 98]:
M. D. Westmoreland, & B. W. Schumacher,
"Quantum entanglement and the nonexistence of superluminal signals",
quant-ph/9801014.
Comments: [Mashkevich 98 b], [van Enk 98].
|Домой|