The decoupling approach to quantum information theory
Fr\'ed\'eric Dupuis

TL;DR
This thesis introduces a unified framework for solving key problems in quantum information theory, including protocols for transmitting quantum data through noisy channels, and explores quantum locking phenomena.
Contribution
It proves the existence of a protocol for quantum data transmission through noisy channels with partial knowledge, unifying several fundamental quantum information theorems.
Findings
Existence of a protocol for transmitting partially known quantum data in a single channel use
New protocols for quantum broadcast channels and channels with side information
First locking protocol with success criterion based on trace distance
Abstract
Quantum information theory studies the fundamental limits that physical laws impose on information processing tasks such as data compression and data transmission on noisy channels. This thesis presents general techniques that allow one to solve many fundamental problems of quantum information theory in a unified framework. The central theorem of this thesis proves the existence of a protocol that transmits quantum data that is partially known to the receiver through a single use of an arbitrary noisy quantum channel. In addition to the intrinsic interest of this problem, this theorem has as immediate corollaries several central theorems of quantum information theory. The following chapters use this theorem to prove the existence of new protocols for two other types of quantum channels, namely quantum broadcast channels and quantum channels with side information at the transmitter.…
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Taxonomy
TopicsQuantum Information and Cryptography · Quantum Mechanics and Applications · Quantum Computing Algorithms and Architecture
