Candidate Multilinear Maps Candidate Multilinear Maps
ACM Books

Candidate Multilinear Maps

    • 41,99 €
    • 41,99 €

Publisher Description

The aim of cryptography is to design primitives and protocols that withstand adversarial behavior. Information theoretic cryptography, how-so-ever desirable, is extremely restrictive and most non-trivial cryptographic tasks are known to be information theoretically impossible. In order to realize sophisticated cryptographic primitives, we forgo information theoretic security and assume limitations on what can be efficiently computed. In other words we attempt to build secure systems conditioned on some computational intractability assumption such as factoring, discrete log, decisional Diffie-Hellman, learning with errors, and many more.

In this work, based on the 2013 ACM Doctoral Dissertation Award-winning thesis, we put forth new plausible lattice-based constructions with properties that approximate the sought after multilinear maps. The multilinear analog of the decision Diffie-Hellman problem appears to be hard in our construction, and this allows for their use in cryptography. These constructions open doors to providing solutions to a number of important open problems.

GENRE
Computing & Internet
RELEASED
2015
1 March
LANGUAGE
EN
English
LENGTH
122
Pages
PUBLISHER
Association for Computing Machinery and Morgan & Claypool Publishers
SIZE
10.6
MB

Other Books in This Series

Communities of Computing Communities of Computing
2016
A Framework for Scientific Discovery through Video Games A Framework for Scientific Discovery through Video Games
2014
Trust Extension as a Mechanism for Secure Code Execution on Commodity Computers Trust Extension as a Mechanism for Secure Code Execution on Commodity Computers
2014
Embracing Interference in Wireless Systems Embracing Interference in Wireless Systems
2014
Edmund Berkeley and the Social Responsibility of Computer Professionals Edmund Berkeley and the Social Responsibility of Computer Professionals
2015
Verified Functional Programming in Agda Verified Functional Programming in Agda
2016