License: Creative Commons Attribution 3.0 Unported license (CC BY 3.0)
When quoting this document, please refer to the following
DOI: 10.4230/DagRep.5.9.1
URN: urn:nbn:de:0030-drops-56825
URL: http://dagstuhl.sunsite.rwth-aachen.de/volltexte/2016/5682/
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Mosca, Michele ; Roetteler, Martin ; Sendrier, Nicolas ; Steinwandt, Rainer
Weitere Beteiligte (Hrsg. etc.): Michele Mosca and Martin Roetteler and Nicolas Sendrier and Rainer Steinwandt

Quantum Cryptanalysis (Dagstuhl Seminar 15371)

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dagrep_v005_i009_p001_s15371.pdf (1 MB)


Abstract

This report documents the program and the outcomes of Dagstuhl Seminar 15371 "Quantum Cryptanalysis". In this seminar, participants explored the impact that quantum algorithms will have on cryptology once a large-scale quantum computer becomes available. Research highlights in this seminar included both computational resource requirement and availability estimates for meaningful quantum cryptanalytic attacks against conventional cryptography, as well as the security of proposed quantum-safe cryptosystems against emerging quantum cryptanalytic attacks.

BibTeX - Entry

@Article{mosca_et_al:DR:2016:5682,
  author =	{Michele Mosca and Martin Roetteler and Nicolas Sendrier and Rainer Steinwandt},
  title =	{{Quantum Cryptanalysis (Dagstuhl Seminar 15371)}},
  pages =	{1--17},
  journal =	{Dagstuhl Reports},
  ISSN =	{2192-5283},
  year =	{2016},
  volume =	{5},
  number =	{9},
  editor =	{Michele Mosca and Martin Roetteler and Nicolas Sendrier and Rainer Steinwandt},
  publisher =	{Schloss Dagstuhl--Leibniz-Zentrum fuer Informatik},
  address =	{Dagstuhl, Germany},
  URL =		{http://drops.dagstuhl.de/opus/volltexte/2016/5682},
  URN =		{urn:nbn:de:0030-drops-56825},
  doi =		{10.4230/DagRep.5.9.1},
  annote =	{Keywords: Cryptography, Quantum computing, Post-quantum cryptography, Quantum algorithms, Cryptanalysis, Computational algebra, Quantum circuit complexity,}
}

Keywords: Cryptography, Quantum computing, Post-quantum cryptography, Quantum algorithms, Cryptanalysis, Computational algebra, Quantum circuit complexity,
Freie Schlagwörter (englisch): Quantum hardware and resource estimation
Collection: Dagstuhl Reports, Volume 5, Issue 9
Issue Date: 2016
Date of publication: 15.01.2016


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