EDBT 2026 Demo / reviewers in the wild / expert
Kazuki Yoneyama
dblp:49/2782
· DBLP profile ↗
39ranked-venue papers
14as first author
5since 2021 · last 2026
0000-0002-2673-3830ORCID · corroborated
Domains — the database's venue-derived domains; a paper can count in several
Security and privacy · 38 · 13 first-author · 5 since 2021Theory of computation · 4Human-computer interaction and ubiquitous computing · 1 · 1 first-author
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2026 | Zero-Query Black-Box Adversarial Attacks Using Transferability on Object Detection Models
Kohei Kawasumi, Kazuki Yoneyama |
SECRYPT (1) | 2 |
| 2024 | Formal Verification of Challenge Flow in EMV 3-D Secure
Kakeru Watanabe, Kazuki Yoneyama |
ACISP (2) | 2 |
| 2023 | Compact Password Authenticated Key Exchange from Group Actions
Ren Ishibashi, Kazuki Yoneyama |
ACISP | 2 |
| 2022 | Query-Efficient Black-Box Adversarial Attack with Random Pattern Noises
Makoto Yuito, Kenta Suzuki, Kazuki Yoneyama |
ICICS | 3 |
| 2021 | Adaptive-ID Secure Hierarchical ID-Based Authenticated Key Exchange Under Standard Assumptions Without Random Oracles
Ren Ishibashi, Kazuki Yoneyama |
ACNS (1) | 2 |
| 2020 | Memory Efficient and Provably Secure Virus Detection
Hayami Motohashi, Kazuki Yoneyama |
ISITA | 2 |
| 2019 | One-Round Authenticated Group Key Exchange from Isogenies
Atsushi Fujioka, Katsuyuki Takashima, Kazuki Yoneyama |
ProvSec | 3 |
| 2019 | Password-Based Authenticated Key Exchange from Standard Isogeny Assumptions
Shintaro Terada, Kazuki Yoneyama |
ProvSec | 2 |
| 2018 | On Hiding Access Timings in ORAMabstractOblivious RAM (ORAM) is a cryptographic primitive for hiding access patterns in cloud environments. Though the ordinary security definition of ORAM guarantees indistinguishability between access sequences of the same length, it cannot be guaranteed for access sequences of different lengths. Hence, ORAM cannot hide access timings or frequency. In this paper, we propose an ORAM scheme that can hide access timings. First, we extend the ordinary security definition. We formulate the hiding property of access timings by defining indistinguishability between access sequences of different lengths. Furthermore, we introduce a new ORAM scheme by adapting the dummy access technique. We prove that our scheme is secure in the proposed definition. Yuma Kanai, Kazuki Yoneyama |
ISITA | 2 |
| 2018 | Improved Verifiable Delegated Private Set IntersectionabstractVerifiable delegated private set intersection, VD-PSI, is a kind of secure function evaluation protocol to compute the set intersection between clients datasets which are stored in the cloud in encrypted form without leaking any information. In VD-PSI, clients can verify validity of the computation result returned from the cloud. At FC 2016, Abadi et al. proposed a VD-PSI scheme based on a homomorphic encryption. However, their scheme has several problems in a practical sense; First, their scheme requires that clients must establish a secure channel between them in advance. Next, costs for clients are not fair because computational and communication costs for a client are much heavier than the peer. In this paper, we introduce an improved VD-PSI scheme. Our scheme has two main advantages: First, no secure channel is required even between clients; and thus, clients do not need to negotiate with each other in advance. The other advantage is efficiency and complexity fairness of clients because communication costs for clients are balanced, and total costs for clients are about 62% of the previous scheme. Shintaro Terada, Kazuki Yoneyama |
ISITA | 2 |
| 2018 | Single Private-Key Generator Security Implies Multiple Private-Key Generators Security
Atsushi Fujioka, Kazuki Yoneyama |
ProvSec | 2 |
| 2017 | Verifiable and Forward Secure Dynamic Searchable Symmetric Encryption with Storage Efficiency
Kazuki Yoneyama, Shogo Kimura |
ICICS | 1 |
| 2017 | Compact public key encryption without full random oracles
Kazuki Yoneyama, Goichiro Hanaoka |
Pervasive Mob. Comput. | 1 |
| 2016 | Security proof of identity-based signature under RSA assumption, reconsidered
Shogo Kimura, Kazuki Yoneyama |
ISITA | 2 |
| 2016 | Multi-cast Key Distribution: Scalable, Dynamic and Provably Secure Construction
Kazuki Yoneyama, Reo Yoshida, Yuto Kawahara, Tetsutaro Kobayashi, Hitoshi Fuji, Tomohide Yamamoto |
ProvSec | 1 |
| 2015 | Accumulable Optimistic Fair Exchange from Verifiably Encrypted Homomorphic Signatures
Jae Hong Seo, Keita Emura, Keita Xagawa, Kazuki Yoneyama |
ACNS | 4 |
| 2015 | Gateway Threshold Password-based Authenticated Key Exchange Secure against Undetectable On-line Dictionary AttackabstractPassword-based Authenticated Key Exchange (PAKE) allows a server to authenticate a user and to establish a session key shared between the server and the user just by having memorable passwords. In PAKE, conventionally the server is assumed to have the authentication functionality and also provide on-line services simultaneously. However, in the real-life applications, this may not be the case, and the authentication server may be separate from on-line service providers. In such a case, there is a problem that a malicious service provider with no authentication functionality may be able to guess the passwords by interacting with other participants repeatedly. Abdalla et al. put forward a notion of the server password protection security to deal with this problem. However, their proposed schemes turned out to be vulnerable to Undetectable On-line Dictionary Attack (UDonDA). To cope with this situation, we propose the Gateway Threshold PAKE provably secure against this password guessing attack by also taking the corruption of authentication servers into consideration. Yukou Kobayashi, Naoto Yanai, Kazuki Yoneyama, Takashi Nishide, Goichiro Hanaoka, Kwangjo Kim, Eiji Okamoto |
SECRYPT | 3 |
| 2015 | Strongly secure authenticated key exchange from factoring, codes, and lattices
Atsushi Fujioka, Koutarou Suzuki, Keita Xagawa, Kazuki Yoneyama |
Des. Codes Cryptogr. | 4 |
| 2014 | Reset Indifferentiability from Weakened Random Oracle Salvages One-Pass Hash Functions
Yusuke Naito 0001, Kazuki Yoneyama, Kazuo Ohta |
ACNS | 2 |
| 2014 | Password-Based Authenticated Key Exchange without Centralized Trusted Setup
Kazuki Yoneyama |
ACNS | 1 |
| 2014 | Converting PKI-Based Authenticated Key Exchange to Identity-Based
Koutarou Suzuki, Kazuki Yoneyama |
CANS | 2 |
| 2014 | Computational Soundness of Asymmetric Bilinear Pairing-Based Protocols
Kazuki Yoneyama |
ProvSec | 1 |
| 2014 | Compact Public Key Encryption with Minimum Ideal Property of Hash Functions
Kazuki Yoneyama, Goichiro Hanaoka |
ProvSec | 1 |
| 2013 | Exposure-Resilient One-Round Tripartite Key Exchange without Random Oracles
Koutarou Suzuki, Kazuki Yoneyama |
ACNS | 2 |
| 2013 | Practical and post-quantum authenticated key exchange from one-way secure key encapsulation mechanismabstractThis paper discusses how to realize practical post-quantum authenticated key exchange (AKE) with strong security, i.e., CK+ security (Krawczyk, CRYPTO 2005). It is known that strongly secure post-quantum AKE protocols exist on a generic construction from IND-CCA secure key encapsulation mechanisms (KEMs) in the standard model. Atsushi Fujioka, Koutarou Suzuki, Keita Xagawa, Kazuki Yoneyama |
AsiaCCS | 4 |
| 2013 | Practical and Exposure-resilient Hierarchical ID-based Authenticated Key Exchange without Random Oracles
Kazuki Yoneyama |
SECRYPT | 1 |
| 2011 | Security of Practical Cryptosystems Using Merkle-Damgård Hash Function in the Ideal Cipher Model
Yusuke Naito 0001, Kazuki Yoneyama, Lei Wang 0031, Kazuo Ohta |
ProvSec | 2 |
| 2011 | Taxonomical Security Consideration of Authenticated Key Exchange Resilient to Intermediate Computation Leakage
Kazuki Yoneyama, Yunlei Zhao |
ProvSec | 1 |
| 2010 | Rigorous Security Requirements for Designated Verifier Signatures
Kazuki Yoneyama, Mebae Ushida, Kazuo Ohta |
Inscrypt | 1 |
| 2010 | Indifferentiable Security Reconsidered: Role of Scheduling
Kazuki Yoneyama |
ISC | 1 |
| 2010 | Strongly Secure Two-Pass Attribute-Based Authenticated Key Exchange
Kazuki Yoneyama |
Pairing | 1 |
| 2010 | Proxiable Designated Verifier Signature
Mebae Ushida, Kazuo Ohta, Yutaka Kawai, Kazuki Yoneyama |
SECRYPT | 4 |
| 2009 | How to Confirm Cryptosystems Security: The Original Merkle-Damgård Is Still Alive!
Yusuke Naito 0001, Kazuki Yoneyama, Lei Wang 0031, Kazuo Ohta |
ASIACRYPT | 2 |
| 2009 | Secret Handshake: Strong Anonymity Definition and Construction
Yutaka Kawai, Kazuki Yoneyama, Kazuo Ohta |
ISPEC | 2 |
| 2008 | Attribute-Based Encryption with Partially Hidden Encryptor-Specified Access Structures
Takashi Nishide, Kazuki Yoneyama, Kazuo Ohta |
ACNS | 2 |
| 2008 | Leaky Random Oracle (Extended Abstract)
Kazuki Yoneyama, Satoshi Miyagawa, Kazuo Ohta |
ProvSec | 1 |
| 2008 | Anonymous Message Authentication - Universally Composable Definition and Construction
Kazuki Yoneyama |
SECRYPT | 1 |
| 2007 | Ring signatures: universally composable definitions and constructionsabstractThough anonymity of ring signature schemes has been studied in many literatures for a long time, these papers showed different definitions and there is no consensus. Recently, Bender et al. proposed two new anonymity definitions of ring signature which is stronger than the traditional definition, that are called anonymity against attribution attacks/full key exposure. Also, ring signature schemes have two levels of unforgeability definitions, i.e., existential un-forgeability (eUF) and strong existential unforgeability (sUF). In this paper, we will redefine anonymity and unforgeability definitions from the standpoint of universally composable (UC) security framework. First, we will formulate new ideal functionalities of ring signature schemes for each security levels separately. Next, we will show relations between cryptographic security definitions and our UC definitions. Finally, we will give another proof of the Bender et al.'s ring signature scheme following the UC secure definition by constructing a simulator to an adversary of sUF, which can be adaptable to the case of sUF under the assumption of a standard single sUF signature scheme. Kazuki Yoneyama, Kazuo Ohta |
AsiaCCS | 1 |
| 2007 | Modeling Agreement Problems in the Universal Composability Framework
Masayuki Terada, Kazuki Yoneyama, Sadayuki Hongo, Kazuo Ohta |
ICICS | 2 |