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Coding Theory and Quantum Computing
About this Title
David Evans, Jeffrey J. Holt, Chris Jones, Karen Klintworth, Brian Parshall, Olivier Pfister and Harold N. Ward, Editors
Publication: Contemporary Mathematics
Publication Year:
2005; Volume 381
ISBNs: 978-0-8218-3600-2 (print); 978-0-8218-7971-9 (online)
DOI: https://doi.org/10.1090/conm/381
MathSciNet review: 2164873
Table of Contents
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Front/Back Matter
- Jeffrey B. Farr and Shuhong Gao – Gröbner bases, Padé approximation, and decoding of linear codes [MR 2170796]
- Gretchen L. Matthews – Some computational tools for estimating the parameters of algebraic geometry codes [MR 2170797]
- Harold N. Ward – An introduction to algebraic coding theory [MR 2170798]
- Qing Xiang – Recent results on $p$-ranks and Smith normal forms of some $2\text {-}(v,k,\lambda )$ designs [MR 2170799]
- Edgar Feldman and Mark Hillery – Quantum walks on graphs and quantum scattering theory [MR 2170800]
- Samuel J. Lomonaco, Jr. and Louis H. Kauffman – A continuous variable Shor algorithm [MR 2170801]
- S. J. van Enk – Entangled states of light [MR 2170802]
- L. Viola, H. Barnum, E. Knill, G. Ortiz and R. Somma – Entanglement beyond subsystems [MR 2170803]
- Anocha Yimsiriwattana and Samuel J. Lomonaco, Jr. – Generalized GHZ states and distributed quantum computing [MR 2170804]