Preface for the Number-Theoretic Methods in Cryptology conferences

IF 0.5 Q4 COMPUTER SCIENCE, THEORY & METHODS Journal of Mathematical Cryptology Pub Date : 2020-01-01 DOI:10.1515/jmc-2019-0111
A. Joux, J. Pomykala
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引用次数: 1

Abstract

Abstract Number-Theoretic Methods in Cryptology (NutMiC) is a bi-annual series of conferences that waslaunched in 2017. Its goal is to spur collaborations between cryptographers and number-theorists and to encourage progress on the number-theoretic hard problems used in cryptology. The publishing model for the series is also mixing the traditions of the cryptography and number theory communities. Articles were accepted for presentation at the conference by a scientific commitee and werereviewed again at a slower pace for inclusion in the journal post-proceedings. In 2019, the conference took place at the Institut de Mathématiques de Jussieu, Sorbonne University,Paris. The event was organized in collaboration with the international association for cryptologic research (IACR) and supported by the European Union’s H2020 Program under grant agreement number ERC-669891. This support allowed us to have low registration costs and offer easy access to all interested researchers. We were glad to have the participation of five internationally recognized invited speakers who greatly contributed to the success of the conference. Nutmic 2019 Co-Chairs, Antoine Joux and Jacek Pomykała
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密码学会议中数论方法的序言
密码学中的抽象数论方法(NutMiC)是一个于2017年推出的两年一次的系列会议。它的目标是促进密码学家和数论者之间的合作,并鼓励在密码学中使用的数论难题上取得进展。该系列的出版模式也融合了密码学和数论社区的传统。一位科学委员会接受了在会议上发表的文章,并以较慢的速度再次进行了审查,以便在会议后发表在期刊上。2019年,会议在巴黎索邦大学Jussieu数学研究所举行。该活动是与国际密码研究协会(IACR)合作组织的,并得到了欧盟H2020计划的支持,拨款协议编号为ERC-669891。这种支持使我们能够降低注册成本,并为所有感兴趣的研究人员提供方便。我们很高兴有五位国际公认的受邀发言者参加,他们为会议的成功作出了巨大贡献。Nutmic 2019联合主席Antoine Joux和Jacek Pomykała
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来源期刊
Journal of Mathematical Cryptology
Journal of Mathematical Cryptology COMPUTER SCIENCE, THEORY & METHODS-
CiteScore
2.70
自引率
8.30%
发文量
12
审稿时长
100 weeks
期刊最新文献
The dihedral hidden subgroup problem Algebraic and quantum attacks on two digital signature schemes Provable security against generic attacks on stream ciphers A construction of encryption protocols over some semidirect products Plactic key agreement (insecure?)
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