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International Symposium on Mathematics, Quantum Theory, and Cryptography : Proceedings of MQC 2019 / edited by Tsuyoshi Takagi, Masato Wakayama, Keisuke Tanaka, Noboru Kunihiro, Kazufumi Kimoto, Yasuhiko Ikematsu
(Mathematics for Industry. ISSN:21983518 ; 33)

1st ed. 2021.
出版者 (Singapore : Springer Nature Singapore : Imprint: Springer)
出版年 2021
本文言語 英語
大きさ XII, 274 p. 63 illus., 23 illus. in color : online resource
著者標目 Takagi, Tsuyoshi editor
Wakayama, Masato editor
Tanaka, Keisuke editor
Kunihiro, Noboru editor
Kimoto, Kazufumi editor
Ikematsu, Yasuhiko editor
SpringerLink (Online service)
件 名 LCSH:Engineering mathematics
LCSH:Engineering -- Data processing  全ての件名で検索
LCSH:Data structures (Computer science)
LCSH:Information theory
LCSH:Quantum computers
LCSH:Data protection
FREE:Mathematical and Computational Engineering Applications
FREE:Data Structures and Information Theory
FREE:Quantum Computing
FREE:Data and Information Security
一般注記 Sustainable Cryptography -- What Kind of Insight Provide Analytical Solutions of Quantum Models? -- Emerging Ultrastrong Coupling between Light and Matter Observed in Circuit Quantum Electrodynamics -- Quantum Random Numbers Generated by a Cloud Superconducting Quantum Computer -- Quantum Factoring Algorithm: Resource Estimation and Survey of Experiments -- A Review of Secret Key Distribution Based on Bounded Observability -- Towards Constructing Fully Homomorphic Encryption without Ciphertext Noise from Group Theory -- Number Theoretic Study in Quantum Interactions -- From the Bloch Sphere to Phase Space Representations with the Gottesman-Kitaev-Preskill Encoding -- A Data Concealing Technique with Random Noise Disturbance and A Restoring Technique for the Concealed Data by Stochastic Process Estimation
Open Access
This open access book presents selected papers from International Symposium on Mathematics, Quantum Theory, and Cryptography (MQC), which was held on September 25-27, 2019 in Fukuoka, Japan. The international symposium MQC addresses the mathematics and quantum theory underlying secure modeling of the post quantum cryptography including e.g. mathematical study of the light-matter interaction models as well as quantum computing. The security of the most widely used RSA cryptosystem is based on the difficulty of factoring large integers. However, in 1994 Shor proposed a quantum polynomial time algorithm for factoring integers, and the RSA cryptosystem is no longer secure in the quantum computing model. This vulnerability has prompted research into post-quantum cryptography using alternative mathematical problems that are secure in the era of quantum computers. In this regard, the National Institute of Standards and Technology (NIST) began to standardizepost-quantum cryptography in 2016. This book is suitable for postgraduate students in mathematics and computer science, as well as for experts in industry working on post-quantum cryptography
HTTP:URL=https://doi.org/10.1007/978-981-15-5191-8
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電子ブック オンライン 電子ブック

Springer eBooks 9789811551918
電子リソース
EB00226649

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データ種別 電子ブック
分 類 LCC:TA329-348
LCC:TA345-345.5
DC23:620
書誌ID 4000135284
ISBN 9789811551918

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