| related words |
| informational |
| person |
| senders |
| announce |
| invisible |
| publicly |
| participants |
| persons |
| learns |
| attacked |
| intervention |
| informs |
| receiving |
| securely |
| spekkens |
| rejection |
| announces |
| eavesdrop |
| stores |
| receivers |
|
| related documents |
| Do quantum states evolve? Apropos of Marchildon's remarks [0307113v1] |
| The Pondicherry interpretation of quantum mechanics [9903051v3] |
| Optimization of coherent attacks in generalizations of the BB84 quantum
bit commitment protocol [0107042v2] |
| Implications of Teleportation for Nonlocality [0103105v2] |
| Quantum Clock Synchronization: a Multi-Party Protocol [0112111v1] |
| Foundations Of Quantum Theory Revisited [0510223v4] |
| Robust unravelings for resonance fluorescence [0002064v1] |
| Quantum Mechanics as Quantum Information (and only a little more) [0205039v1] |
| Distinguishability and Accessible Information in Quantum Theory [9601020v1] |
| SECOQC White Paper on Quantum Key Distribution and Cryptography [0701168v1] |
| On the security of AlphaEta: Response to `Some attacks on quantum-based
cryptographic protocols' [0509091v3] |
| Quantum mechanics explained [0607005v2] |
| Comment on "Quantum Physics from A to Z" [0508212v1] |
| Two-Way Quantum Number Distribution Based on Entanglement and Bell-State
Measurements [0407138v1] |
| Unconditional Security of Practical Quantum Key Distribution [0402170v1] |
| Nonsequential positive-operator-valued measurements on entangled mixed
states do not always violate a Bell inequality [0107045v2] |
| Inseparability of Quantum Parameters [0602016v3] |
| Operator-Schmidt decomposition of the quantum Fourier transform on C^N1
tensor C^N2 [0210100v3] |
| A method for teleporting an unknown quantum state and its application [0504213v1] |
| Quantum protocols for anonymous voting and surveying [0504161v2] |
|
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