Title :
A Decoupling Approach to Classical Data Transmission Over Quantum Channels
Author :
Dupuis, Frederic ; Szehr, Oleg ; Tomamichel, Marco
Author_Institution :
ETH Zurich, Zürich, Switzerland
Abstract :
Most coding theorems in quantum Shannon theory can be proven using the decoupling technique. To send data through a channel, one guarantees that the environment gets no information about it. Uhlmann´s theorem then ensures that the receiver must be able to decode. While a wide range of problems can be solved this way, one of the most basic coding problems remains impervious to a direct application of this method, sending classical information through a quantum channel. We will show that this problem can, in fact, be solved using decoupling ideas, specifically by proving a dequantizing theorem, which ensures that the environment is only classically correlated with the sent data. Our techniques naturally yield a generalization of the Holevo-Schumacher-Westmoreland theorem to the one-shot scenario, where a quantum channel can be applied only once.
Keywords :
channel coding; data communication; decoding; quantum communication; Holevo-Schumacher-Westmoreland theorem; Uhlmann theorem; coding theorem; data transmission; decoding; decoupling technique; dequantizing theorem; quantum Shannon theory; quantum channel; receiver; Channel coding; Correlation; Decoding; Entropy; Quantum mechanics; Standards; Channel coding; quantum computing;
Journal_Title :
Information Theory, IEEE Transactions on
DOI :
10.1109/TIT.2013.2295330