Eiichiro Fujisaki

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23ranked-venue papers
12as first author
3since 2021 · last 2025
—ORCID · none

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Security and privacy · 23 · 12 first-author · 3 since 2021
YearPublicationVenuePosition
2025 On the Limits of Non-interactive Blind Signatures
Kazuki Yamamura, Tetsuya Okuda, Eiichiro Fujisaki, Masayuki Abe
ASIACRYPT (8)3
2025 On Non-Interactive Blind Signatures in the Plain Model Using Complexity Leveraging
Kazuki Yamamura, Tetsuya Okuda, Eiichiro Fujisaki
FC (2)3
2023 Improved lattice enumeration algorithms by primal and dual reordering methods
abstract
Abstract The security of lattice‐based cryptosystems is generally based on the hardness of the Shortest Vector Problem (SVP). The original enumeration (ENUM) algorithm solving SVP runs in exponential time due to the exhaustive search, which is used as a subroutine for the block Korkin–Zolotarev (BKZ) algorithm. It is a critical issue to reduce the computational complexity of ENUM. In this paper, first, we improve the reordering method proposed by Wang et al. in ACISP 2018. We call our proposed method DPR, which permutates the projected dual lattice vectors by decreasing norms. Preliminary experimental results show that the proposed reordering methods can reduce the ENUM complexity compared to the predecessor; for instance, DPR reduces around 32.8% on average in 45‐dimensional lattices. Moreover, the authors’ simulation shows that the higher the lattice dimension, the more DPR can reduce the ENUM complexity. In addition, we study a condition for deciding when the reordering method shall be executed or not. Finally, we improve the BKZ algorithm with DPR methods and the proposed condition.
Kazuki Yamamura, Yuntao Wang 0002, Eiichiro Fujisaki
IET Inf. Secur.3
2018 All-But-Many Encryption
Eiichiro Fujisaki
J. Cryptol.1
2017 A Constant-Size Signature Scheme with Tighter Reduction from CDH Assumption
Kaisei Kajita, Kazuto Ogawa, Eiichiro Fujisaki
ISC3
2016 Public-Key Cryptosystems Resilient to Continuous Tampering and Leakage of Arbitrary Functions
Eiichiro Fujisaki, Keita Xagawa
ASIACRYPT (1)1
2014 All-But-Many Encryption - A New Framework for Fully-Equipped UC Commitments
Eiichiro Fujisaki
ASIACRYPT (2)1
2013 Secure Integration of Asymmetric and Symmetric Encryption Schemes
Eiichiro Fujisaki, Tatsuaki Okamoto
J. Cryptol.1
2012 New Constructions of Efficient Simulation-Sound Commitments Using Encryption and Their Applications
Eiichiro Fujisaki
CT-RSA1
2011 Sub-linear Size Traceable Ring Signatures without Random Oracles
Eiichiro Fujisaki
CT-RSA1
2010 A Multi-trapdoor Commitment Scheme from the RSA Assumption
Ryo Nishimaki, Eiichiro Fujisaki, Keisuke Tanaka
ACISP2
2009 On the Insecurity of the Fiat-Shamir Signatures with Iterative Hash Functions
Eiichiro Fujisaki, Ryo Nishimaki, Keisuke Tanaka
ProvSec1
2009 Efficient Non-interactive Universally Composable String-Commitment Schemes
Ryo Nishimaki, Eiichiro Fujisaki, Keisuke Tanaka
ProvSec2
2007 Formal Security Treatments for Signatures from Identity-Based Encryption
Yang Cui 0001, Eiichiro Fujisaki, Goichiro Hanaoka, Hideki Imai, Rui Zhang 0002
ProvSec2
2006 Forward-Secure Authenticated-Encryption in Multi-Receiver Setting
Kan Yasuda, Kazumaro Aoki, Eiichiro Fujisaki, Atsushi Fujioka
SECRYPT3
2004 RSA-OAEP Is Secure under the RSA Assumption
Eiichiro Fujisaki, Tatsuaki Okamoto, David Pointcheval, Jacques Stern
J. Cryptol.1
2002 A Statistically-Hiding Integer Commitment Scheme Based on Groups with Hidden Order
Ivan Damgård, Eiichiro Fujisaki
ASIACRYPT2
2001 RSA-OAEP Is Secure under the RSA Assumption
Eiichiro Fujisaki, Tatsuaki Okamoto, David Pointcheval, Jacques Stern
CRYPTO1
1999 Secure Integration of Asymmetric and Symmetric Encryption Schemes
Eiichiro Fujisaki, Tatsuaki Okamoto
CRYPTO1
1998 A Practical and Provably Secure Scheme for Publicly Verifiable Secret Sharing and Its Applications
Eiichiro Fujisaki, Tatsuaki Okamoto
EUROCRYPT1
1997 Statistical Zero Knowledge Protocols to Prove Modular Polynomial Relations
Eiichiro Fujisaki, Tatsuaki Okamoto
CRYPTO1
1996 How to Date Blind Signatures
Masayuki Abe, Eiichiro Fujisaki
ASIACRYPT2
1992 An Efficient Digital Signature Scheme Based on an Elliptic Curve Over the Ring Zn
Tatsuaki Okamoto, Atsushi Fujioka, Eiichiro Fujisaki
CRYPTO3