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Quantum secure identification using entanglement and catalysis
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I consider the use of entanglement between two parties to enable one to authenticate her identity to another over a quantum communication channel. Exploiting the phenomenon of entanglement-catalyzed transformations between pure states gives a potentially reusable entangled identification token. In analyzing this, I consider the independently interesting problem of the best possible approximation to a given pure entangled state realizable using local actions and classical communication by parties sharing a different entangled state.
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Design and analysis of a set of discrete variable protocols for secure quantum communication
A doctoral thesis presenting QIA protocols from QSDC structures, two weak-coherent-pulse QKD protocols, a controller-assisted QKA protocol, and a game-theoretic QBER bound for DL04 QSDC.
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