Post-Quantum Cryptography [electronic resource] /edited by Daniel J. Bernstein, Johannes Buchmann, Erik Dahmen.
by Bernstein, Daniel J [editor.]; Buchmann, Johannes [editor.]; Dahmen, Erik [editor.]; SpringerLink (Online service).
Material type:
BookPublisher: Berlin, Heidelberg : Springer Berlin Heidelberg, 2009.Description: online resource.ISBN: 9783540887027.Subject(s): Mathematics | Data encryption (Computer science) | Information theory | Computer science | Number theory | Engineering mathematics | Mathematics | Number Theory | Data Encryption | Mathematics of Computing | Theory of Computation | Appl.Mathematics/Computational Methods of EngineeringDDC classification: 512.7 Online resources: Click here to access online | Item type | Current location | Call number | Status | Date due | Barcode |
|---|---|---|---|---|---|
| MAIN LIBRARY | QA241-247.5 (Browse shelf) | Available |
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| TA1637-1638 Computer Vision – ECCV 2008 | TA1637-1638 Computer Vision – ECCV 2008 | TA1637-1638 Computer Vision – ECCV 2008 | QA241-247.5 Post-Quantum Cryptography | HF54.5-54.56 Enterprise Information Systems | RC321-580 Identification and Characterization of Neural Progenitor Cells in the Adult Mammalian Brain | K1001-1395 Patents and Technological Progress in a Globalized World |
to post-quantum cryptography -- Quantum computing -- Hash-based Digital Signature Schemes -- Code-based cryptography -- Lattice-based Cryptography -- Multivariate Public Key Cryptography.
Quantum computers will break today's most popular public-key cryptographic systems, including RSA, DSA, and ECDSA. This book introduces the reader to the next generation of cryptographic algorithms, the systems that resist quantum-computer attacks: in particular, post-quantum public-key encryption systems and post-quantum public-key signature systems. Leading experts have joined forces for the first time to explain the state of the art in quantum computing, hash-based cryptography, code-based cryptography, lattice-based cryptography, and multivariate cryptography. Mathematical foundations and implementation issues are included. This book is an essential resource for students and researchers who want to contribute to the field of post-quantum cryptography.
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