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  4. Extractable Witness Encryption for the Homogeneous Linear Equations Problem
 
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conference paper

Extractable Witness Encryption for the Homogeneous Linear Equations Problem

Tran, Bénédikt Minh Dang  
•
Vaudenay, Serge  
Shikata, Junji
•
Kuzuno, Hiroki
2023
Advances in Information and Computer Security: 18th International Workshop on Security (IWSEC 2023)
18th International Workshop on Security (IWSEC 2023)

Witness encryption is a cryptographic primitive which encrypts a message under an instance of an NP language and decrypts the ciphertext using a witness associated with that instance. In the current state of the art, most of the witness encryption constructions are based on multilinear maps. Following the construction of Choi and Vaudenay based on RSA-related problems, we suggest a novel witness key encapsulation mechanism based on the hardness of solving homogeneous linear Diophantine equations (HLE problem). Our arithmetic-based construction aims to solve an issue raised by these authors where the security might be compromised if the adversary is able to find small solutions to a homogeneous linear Diophantine equation, while avoiding the inefficiency of multilinear maps. The security of our scheme is based on a hidden group order and a knowledge assumption.

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Type
conference paper
DOI
10.1007/978-3-031-41326-1_9
Author(s)
Tran, Bénédikt Minh Dang  
•
Vaudenay, Serge  
Editors
Shikata, Junji
•
Kuzuno, Hiroki
Date Issued

2023

Publisher

Springer

Journal
Advances in Information and Computer Security: 18th International Workshop on Security (IWSEC 2023)
ISBN of the book

978-3-031-41325-4

Series title/Series vol.

Lecture Notes in Computer Science; 14128

Start page

152

End page

172

Subjects

witness encryption

•

homogeneous linear equations problem

•

extractable one-wayness

Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LASEC  
Event nameEvent placeEvent date
18th International Workshop on Security (IWSEC 2023)

Yokohama, Japan

August 29-31,2023

Available on Infoscience
November 14, 2023
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/202156
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