page id: 210, 1828 hits, unlocked, unhidden, current: v5
v2:2004-05-04 09:49:25(6,117), v3:2004-05-04 09:56:18(6,516)
diff v2:jiinny v3:jiinny
| = \def@alink=Articles:teleportation/%s |
| = |
| = \@ocat |
| = \@hcat{Research} |
| = \@hcat{ArticlesCategory} |
| = \@cat{BibliographicCategory} |
| = \@ecat |
| = #[Barnett-Phoenix 91] (¡°index of correlation¡±), \n |
| = # [Bennett-Brassard-Crepeau-(+3) 93], |
| = # [Sud-bery 93] (News and views, Nature), |
| = # [Deutsch-Ekert 93], |
| = # [Popescu 94], |
| = # [Vaidman 94 a], |
| - # [Davidovich-Zagury-Brune-(+2) 94], |
| - # [Cirac-Parkins 94], |
| + # [Davidovich-Zagury-Brune-(+2) 94|\@alink{(94 Davidovich-Zagury-Brune-(+2))Teleportation of anatomic state between two cavities using nonlocal microwave fields_PRA_v50_pR895.pdf}], |
| + # [Cirac-Parkins 94|\@alink{(94 Cirac-Parkins)Schemes for atomic-state teleportation_PRA_v50_pR4441.pdf}], |
| = # [Braunstein-Mann 95], |
| = # [Vaidman 95 c], |
| = # [Popescu 95], |
| = # [Gisin 96 b], |
| = # [Bennett-Brassard-Popescu-(+3) 96], |
| = # [Horodecki-Horodecki-Horodecki 96 b], |
| - # [Horodecki-Horodecki 96 b|\@alink{(96 Horodecki-Horodecki) Information-theoretic aspects of inseparability of mixed states PRA_v54_p1838.pdf}], |
| + # [Horodecki-Horodecki 96 b|\@alink{(96 Horodecki-Horodecki) Information-theoretic aspects of inseparability of mixed states PRA_v54_p1838.pdf}] - <i>cf</i>. [Horodecki-Horodecki-Horodecki 96 a|\@alink{(96 Horodecki-Horodecki-Horodeki)Quantum alpha-entropy inequalities-independent condition for local realism.pdf}] |
| = # [Taubes 96], |
| = # [Braunstein 96 a], |
| = # [Home 97] (Sec. 4. 4), |
| = # [Moussa 97 a], |
| = # [Nielsen-Caves 97] (reversible quantum operations and their application to T), |
| = # [Zheng-Guo 97 a, b], |
| = # [Watson 97 b], |
| = # [Anonymous 97], |
| = # [Williams-Clearwater 98] (book with a chapter on T), |
| = # [Brassard-Braunstein-Cleve 98] (T as a quantum computation), |
| = # [Braunstein-Kimble 98 a](T of continuous quantum variables), |
| = # [Collins 98] (Phys. Today), |
| = # [Pan-Bouwmeester-Weinfurter-Zeilinger 98], |
| = # [Garcia Alcaine 98 a] (review), |
| = # [Klyshko 98 c] (on the realization and meaning of T), |
| = # [Molotkov 98 a] (T of a single-photon wave packet), |
| = # [de Almeida-Maia-Villas Boas-Moussa 98] (T of atomic states with cavities), |
| = # [Ralph-Lam 98] (T with bright squeezed light), |
| = # [Horodecki-Horodecki-Horodecki 99 c] (general T channel, singlet fraction and quasi-distillation), |
| = # [Vaidman 98 c] (review of all proposals and experiments, and T in the many-worlds interpretation), |
| = # [Zubairy 98] (T of a field state), |
| = # [Nielsen-Knill-Laflamme 98] (complete quantum T using nuclear magnetic resonance), |
| = # [Stenholm-Bardroff 98] (T of N-dimensional states), |
| = # [Karlsson-Bourennane 98] (T using three-particle entanglement), |
| = # [Plenio-Vedral 98] (T, entanglement and thermodynamics), |
| = # [Ralph 98] (all optical quantum T), |
| = # [Maierle-Lidar-Harris 98] (T of superpositions of chirial amplitudes), |
| = # [Vaidman-Yoran 99] (methods for reliable T), |
| = # [Lutkenhaus-Calsamiglia-Suominen 99] (a never-failing measurement of the Bell operator in a two two-level bosonic system is impossible with beam splitters, phase shifters, delay lines, electronically switched linear elements, photo-detectors, and auxiliary bosons), |
| = # [Linden-Popescu 99] (bound entanglement and T), |
| = # [Molotkov-Nazin 99 b] (on T of continuous variables), |
| = # [Tan 99] (confirming entanglement in continuous variable quantum T), |
| = # [Villas Boas-de Almeida-Moussa 99] (T of a zero- and one-photon running-wave state by projection synthesis), |
| = # [van Enk 99] (discrete formulation of T of continuous variables), |
| = # [Milburn-Braunstein 99] (T with squeezed vacuum states), |
| = # [Ryff 99], |
| = # [Koniorczyk-Janszky-Kis 99] (photon number T), |
| = # [Bose-Knight-Plenio-Vedral 99] (proposal for T of an atomic state via cavity decay), |
| = # [Ralph-Lam-Polkinghorne 99] (characterizing T in optics), |
| = # [Maroney-Hiley 99] (T understood through the Bohm interpretation), |
| = # [Hardy 99 b] (a toy local theory in which cloning is not possible but T is), |
| = # [Parkins-Kimble 99] (T of the wave function of a massive particle), |
| = # [Marinatto-Weber 00 b] (which kind of two-particle states can be teleported through a three-particle quantum channel?), |
| = # [Bouwmeester-Pan-Weinfurter-Zeilinger 00] (high-fidelity T of independent qubits), |
| = # [Zeilinger 00 c], |
| = # [van Loock-Braunstein 00 a] (T of continuous-variable entanglement), |
| = # [Banaszek 00] (optimal T with an arbitrary pure state), |
| = # [Opatrny-Kurizki-Welsch 00] (improvement on T of continuous variables by photon subtraction via conditional measurement), |
| = # [Horoshko-Kilin 00] (T using quantum nondemolition technique), |
| = # [Murao-Plenio-Vedral 00] (T of quantum information to N particles), |
| = # [Li-Li-Guo 00] (probabilistic T and entanglement matching), |
| = # [Cerf-Gisin-Massar 00] (classical T of a qubit), |
| = # [DelRe-Crosignani-Di Porto 00] (scheme for total T), |
| = # [Kok-Braunstein 00 a] (postselected versus nonpostselected T using parametric down-conversion), |
| = # [Bose-Vedral 00] (mixedness and T), |
| = # [van Loock-Braunstein 00 b] (multipartite entanglement for continuous variables: A quantum T network), |
| = # [Braunstein-DAriano-Milburn-Sacchi 00] (universal T with a twist), |
| = # [Bouwmeester-Ekert-Zeilinger 00] (book on quantum information), |
| = # [Dur-Cirac 00 b] (multiparty T), |
| = # [Henderson-Hardy-Vedral 00] (two-state T), |
| = # [Motoyoshi 00] (T without Bell measurements), |
| = # [Vitali-Fortunato-Tombesi 00] (complete T with a Kerr nonlinearity), |
| = # [Galvao-Hardy 00 a] (building multiparticle states with T), |
| = # [Banaszek 00 a] (optimal T with an arbitrary pure state), |
| = # [Lee-Kim 00] (entanglement T via Werner states), |
| = # [Lee-Kim-Jeong 00] (transfer of nonclassical features in T via a mixed quantum channel), |
| = # [Zukowski 00 b] (Bell's theorem for the nonclassical part of the T process), |
| = # [Clausen-Opatrny-Welsch 00] (conditional T using optical squeezers), |
| = # [Grangier-Grosshans 00 a] (T criteria for continuous variables), |
| = # [Koniorczyk-Kis-Janszky 00], |
| = # [Gorbachev-Zhiliba-Trubilko-Yakovleva 00] (T of entangled states and dense coding using a multiparticle quantum channel), |
| = # [van Loock-Braunstein 00 d] (telecloning and multiuser quantum channels for continuous variables), |
| = # [Hao-Li-Guo 00](probabilistic dense coding and T), |
| = # [Zhou-Hou-Zhang 01] (T of S-level pure states by two-level EPR states), |
| = # [Trump-Brus-Lewenstein 01] (realistic T with linear optical elements), |
| = # [Werner 01 a] (T and dense coding schemes), |
| = # [Ide-Hofmann-Kobayashi-Furusawa 01] (continuous variable T of single photon states), |
| = # [Wang-Feng-Gong-Xu 01] (atomic-state T by using a quantum switch), |
| = # [Braunstein-Fuchs-Kimble-van Loock 01] (quantum versus classical domains for T with continuous variables), |
| = # [Bowen-Bose 01] (T as a depolarizing quantum channel), |
| = # [Shi-Tomita 02] (T using a W state), |
| = # [Agrawal-Pati 02] (probabilistic T), |
| = # [Yeo 03 a] (T using a three-qubit W state), |
| = # [Peres 03 b] (it includes a narrative of how Peres remembers that T was conceived). |
|
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<diff> 2004-05-04 09:56:18 v3:jiinny (current) 1828 hits |