| related words |
| performs |
| jozsa |
| performing |
| auxiliary |
| prior |
| prepare |
| purification |
| wants |
| task |
| failure |
| tells |
| fuchs |
| perfectly |
| regardless |
| obtaining |
| preparing |
| needs |
| fails |
| guess |
| distinguish |
|
| related documents |
| The Grammar of Teleportation [0509048v1] |
| Quantum Mechanics as Quantum Information (and only a little more) [0205039v1] |
| On Teleportation of a Completely Unknown State of Relativistic Photon [0005068v1] |
| Sensitivity optimization in quantum parameter estimation [0104116v1] |
| Efficient multiple-quantum transition processes in an n-qubit spin system [0411046v2] |
| Non-local Operations: Purification, storage, compression, tomography,
and probabilistic implementation [0012148v1] |
| Quantum Detection with Unknown States [0501084v2] |
| Teleportation and Secret Sharing with Pure Entangled States [0002032v1] |
| A method for teleporting an unknown quantum state and its application [0504213v1] |
| Teleportation via generalized measurements, and conclusive teleportation [9906039v1] |
| Remote state preparation and measurement of single photon [0212164v1] |
| Quantum information and precision measurement [9904021v2] |
| Quantum optical implementation of quantum information processing [0405030v1] |
| Multiparty Quantum Secret Sharing [0412203v1] |
| Quantum Estimation by Local Observables [0401187v3] |
| How much does it cost to teleport? [9605025v1] |
| Teleportation Scheme of S-level Quantum Pure States by Two-level EPRs [0004095v1] |
| Quantum partial teleportation as optimal cloning at a distance [0401039v1] |
| Quantum probabilities as Bayesian probabilities [0106133v2] |
| Distinguishability and Accessible Information in Quantum Theory [9601020v1] |
|
| related topics |
| {alice, bob, state} |
| {states, state, optimal} |
| {state, phys, rev} |
| {measurement, state, measurements} |
| {information, entropy, channel} |
| {algorithm, log, probability} |
| {theory, mechanics, state} |
| {error, code, errors} |
| {equation, function, exp} |
| {photon, photons, single} |
| {force, casimir, field} |
| {state, algorithm, problem} |
| {vol, operators, histories} |
| {qubit, qubits, gate} |
| {let, theorem, proof} |
| {state, states, entangled} |
| {bell, inequality, local} |
| {classical, space, random} |
| {observables, space, algebra} |
| {phase, path, phys} |
|