Jang / Baksi | Implementation and Analysis of Ciphers in Quantum Computing | Buch | 978-981-97-0027-1 | sack.de

Buch, Englisch, 151 Seiten, Format (B × H): 155 mm x 235 mm, Gewicht: 296 g

Reihe: Computer Architecture and Design Methodologies

Jang / Baksi

Implementation and Analysis of Ciphers in Quantum Computing


Erscheinungsjahr 2025
ISBN: 978-981-97-0027-1
Verlag: Springer Nature Singapore

Buch, Englisch, 151 Seiten, Format (B × H): 155 mm x 235 mm, Gewicht: 296 g

Reihe: Computer Architecture and Design Methodologies

ISBN: 978-981-97-0027-1
Verlag: Springer Nature Singapore


This book deals with the upcoming threat that may be posed by quantum computers on modern-day security standards, particularly those involving symmetric key ciphers. Considering the progress in the field of quantum computing over the past few years, there is an ever-growing need to analyze the ciphers that are being employed in ensuring security. The symmetric key ciphers are generally considered safe against quantum computers, though one must consider the possible impact due to Grover's search algorithm (that reduces the security claim to the square root bound of what is expected against a classical computer). This book consolidates all the major research works in one place and presents it with adequate clarity, making the subject matter easy to understand for seasoned researchers and students alike. It covers the prerequisite information, new research works (including some of the state of the art), thought-provoking problems for further research, and all the relevant source codes. This book is interesting to engineers, researchers, and students who work/study in the field of cryptography.

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Zielgruppe


Research

Weitere Infos & Material


Introduction: Emergence of Quantum Computing.- Quantum Computing Fundamental and Cryptographic Perspective.- Reversible S-box Implementation with LIGHTER-R.- Quantum Implementation and Resource Estimate for RECTANGLE and KNOT.- Quantum Implementation and Analysis of DEFAULT.- Quantum Analysis of AES.- Improved Quantum Analysis of SPECK and LOWMC.- Optimized Quantum Implementation and Analysis of CHAM.- Concise Cipher DescriptionConclusion and Outlook.



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