This monograph contains the best practice for solving problems of quantum cryptanalysis to improve cyber security and resilience of the digital economy. The book discusses well-known and author's software implementations of promising quantum Shor algorithms, Grover, Simon et al.
This monograph contains the best practice for solving problems of quantum cryptanalysis to improve cyber security and resilience of the digital economy. The book discusses well-known and author's software implementations of promising quantum Shor algorithms, Grover, Simon et al.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Alexei Petrenko is Associate Professor at the Innopolis University, PhD, and Postdoctoral researcher at the Saint Petersburg Electrotechnical University ""LETI"", Russia. Previously, Alexei Petrenko was a postdoc and a PhD student at the Innopolis University in the group of Professor Sergei Petrenko. His PhD thesis was "Quantum-Resistance in Blockchain Networks" (2020). Alexei Petrenko has closely followed the blockchain space since late 2014. His main research interests are quantum cryptanalysis in Bitcoin and off-chain protocols. Earlier, he researched secure development practices on the Ethereum platform and domain-specific languages for smart contracts. In 2016-2020, Alexei Petrenko was a researcher on code vulnerabilities of Blockchain networks. He is author and co-author of 3 monographs and more than 145 articles on information security issues, including, monographs and practical manuals for Springer Nature Switzerland AG, Athena and DMK-Press (Russia).
Inhaltsangabe
1. The Relevance of Practical Issues of Quantum Cryptanalysis Aimed at Improving Cyber Security and Resilience of the Digital Economy 2. Possible Implementations of the Shor Factorization Algorithm on a Quantum Circuit to Develop Requirements for Quantum Cryptanalysis Algorithms 3. Quantum Cryptanalysis Algorithms Based on Factorization and Discrete Logarithm Problems in Various Algebraic Structures 4. Examples of the Developed Promising Software Package for Quantum Cryptanalysis of Asymmetric Encryption and Digital Signature Schemes
1. The Relevance of Practical Issues of Quantum Cryptanalysis Aimed at Improving Cyber Security and Resilience of the Digital Economy 2. Possible Implementations of the Shor Factorization Algorithm on a Quantum Circuit to Develop Requirements for Quantum Cryptanalysis Algorithms 3. Quantum Cryptanalysis Algorithms Based on Factorization and Discrete Logarithm Problems in Various Algebraic Structures 4. Examples of the Developed Promising Software Package for Quantum Cryptanalysis of Asymmetric Encryption and Digital Signature Schemes
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