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Leakage-Resilient Cryptography from Minimal Assumptions
Carmit Hazay
, Adriana López-Alt
, Hoeteck Wee
, Daniel Wichs
Bar-Ilan University - The Alexander Kofkin Faculty of Engineering
New York University
École normale supérieure
Northeastern University
Research output
:
Contribution to journal
›
Article
›
peer-review
20
Scopus citations
Overview
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Keyphrases
Leakage-resilient Cryptography
100%
Leakage-resilient
100%
Public Key Encryption
50%
Cryptosystem
33%
Public Key
33%
Leakage Amount
33%
Hash Proof System
33%
Symmetric Key
33%
Attacker
16%
Secret Key
16%
Partial Information
16%
Key Length
16%
One-way Function
16%
Security Properties
16%
Pseudorandom Functions
16%
Message Authentication Code
16%
Provable Security
16%
Symmetric Encryption
16%
Encryption Authentication
16%
Computer Science
public-key encryption
100%
public key
66%
Proof System
66%
Cryptography
66%
Attackers
33%
Building-Blocks
33%
Security Properties
33%
provably secure
33%
Symmetric Key Encryption
33%
Message Authentication Code
33%