International Symposium on Information Theory (ISIT 2011) , 2011-07-11

Title : ( Examples of minimal-memory, non-catastrophic quantum convolutional encoders )

Authors: Mark Wilde , monireh houshmand , Seyed Saied Hosseini Khayat ,

Citation: BibTeX | EndNote

Abstract

One of the most important open questions in the theory of quantum convolutional coding is to determine a minimal-memory, non-catastrophic, polynomial-depth convolutional encoder for an arbitrary quantum convolutional code. Here, we present a technique that finds quantum convolutional encoders with such desirable properties for several example quantum convolutional codes (an exposition of our technique in full generality will appear elsewhere). We first show how to encode the well-studied Forney-Grassl-Guha (FGG) code with an encoder that exploits just one memory qubit (the former Grassl- R¨otteler encoder requires 15 memory qubits). We then show how our technique can find an online decoder corresponding to this encoder, and we also detail the operation of our technique on a different example of a quantum convolutional code. Finally, the reduction in memory for the FGG encoder makes it feasible to simulate the performance of a quantum turbo code employing it, and we present the results of such simulations.

Keywords

Quantum error correction codes
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@inproceedings{paperid:1024893,
author = {Mark Wilde and Houshmand, Monireh and Hosseini Khayat, Seyed Saied},
title = {Examples of minimal-memory, non-catastrophic quantum convolutional encoders},
booktitle = {International Symposium on Information Theory (ISIT 2011)},
year = {2011},
location = {St. Petersburg},
keywords = {Quantum error correction codes},
}

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%0 Conference Proceedings
%T Examples of minimal-memory, non-catastrophic quantum convolutional encoders
%A Mark Wilde
%A Houshmand, Monireh
%A Hosseini Khayat, Seyed Saied
%J International Symposium on Information Theory (ISIT 2011)
%D 2011

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