【CHES2026】Apr15@Antalya,Türkiye

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文章总结: 本文发布CHES2026会议征稿通知,会议定于2026年10月在土耳其安塔利亚召开,CCF评级B类。投稿截止日期为2026年4月15日,议题涵盖密码硬件实现、侧信道攻击防御、后量子安全及物联网应用等。文章公布了大会主席及程序委员会名单,为密码学工程与硬件安全研究人员提供了权威投稿指引。 综合评分: 55 文章分类: 安全大事件


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【CHES 2026】Apr 15@Antalya, Türkiye

数缘科技 数缘科技

数缘信安社区

2026年3月1日 07:00 北京

点击“阅读原文”即可进入【CHES 2026】官网。

【CHES 2026】

Important dates

Volume 2026/4

  • Submission: April 15, 2026
  • Rebuttal period: May 28-31, 2026
  • Notification: June 15, 2026
  • Camera ready: July 14, 2026
  • Conference: October 11-15, 2026
  • CCF: B

Topics of interest include but are not limited to

Cryptographic implementations:

  • Hardware architectures
  • Cryptographic processors and coprocessors
  • True and pseudorandom number generators
  • Physical unclonable functions (PUFs)
  • Efficient software implementation
  • SHARCS (Special-purpose HARdware for Cryptanalysis, quantum included)

Attacks against implementations, and countermeasures:

  • Remote, micro-architectural and physical side-channel attacks and countermeasures
  • Fault attacks and countermeasures
  • Hardware tampering and tamper-resistance
  • White-box cryptography and code obfuscation
  • Reverse engineering of hardware/software
  • Hardware trojans and countermeasures

Tools and methodologies:

  • Formal methods, techniques and tools for secure design and verification for hardware/software
  • Computer aided cryptographic engineering
  • Domain-specific languages for cryptographic systems
  • Metrics for the security of embedded systems
  • FPGA design security
  • Physical assurance and analysis of embedded systems
  • New datasets for public use

Systematization of Knowledge (SoK)

Interactions between cryptographic theory and implementation issues:

  • Quantum cryptanalysis
  • Algorithm subversion and subversion prevention
  • New and emerging cryptographic algorithms and protocols targeting embedded devices
  • Theoretical hardware models that allow proofs

Applications:

  • RISC-V security
  • Trusted execution environments and trusted computing platforms
  • IP protection for hardware/software and technologies for anti-counterfeiting
  • Reconfigurable hardware for cryptography
  • Secure elements, security subsystems, and applications
  • Security for the Internet of Things and cyberphysical systems (RFID, sensor networks, smart meters, medical implants, smart devices for home automation, industrial control, automotive, etc.)
  • Secure storage devices (memories, disks, etc.)
  • Isolation and monitoring hardware for cyberresilience
  • Engineering of zero-knowledge proof systems
  • Privacy-preserving computing in practice (MPC, FHE)
  • Post-quantum security

Having been established in 1999, the Cryptographic Hardware and Embedded Systems (CHES) conference is the premier venue for research on both design and analysis of cryptographic hardware and software implementations. As an area conference of the International Association for Cryptologic Research (IACR), CHES bridges the cryptographic research and engineering communities, and attracts participants from academia, industry, government and beyond.

General Co-Chairs

  • Erkay Savaş, Sabanci University, Türkiye
  • Berna Ors Yalcin, İstanbul Technical University, Türkiye

Program Co-Chairs

  • Nele Mentens, KU Leuven, Belgium, and Leiden University, the Netherlands
  • Yuval Yarom, Ruhr University Bochum, Germany

Programm Committee

  • Adrian Thillard, PQShield
  • Aein Rezaei Shahmirzadi, PQShield
  • Aleksei Udovenko, SnT, University of Luxembourg
  • Alexandre Venelli, NXP Semiconductors
  • Andreas Hülsing, Eindhoven University of Technology & SandboxAQ
  • Anirban Chakraborty, Max Planck Institute for Security and Privacy
  • Anita Aghaie, Siemens AG
  • Antonio Guimarães, IMDEA Software Institute
  • Apostolos Fournaris, Industrial Systems Institute, Research Center ATHENA
  • Aron Gohr, Independent Researcher
  • Bart Preneel, KU Leuven
  • Begül Bilgin, Rambus
  • Benedikt Gierlichs, KU Leuven
  • Benjamin Beurdouche, Mozilla
  • Bo-Yin Yang, Academia Sinica
  • Bohan Yang, Tsinghua University
  • Cécile Dumas, CEA-Leti University Grenoble-Alpes
  • Chenglu Jin, CWI Amsterdam
  • Chester Rebeiro, Indian Institute of Technology Madras
  • Christian Rechberger, Graz University of Technology
  • Christine van Vredendaal, NXP Semiconductors
  • Christoph Dobraunig, Intel Labs
  • Cuauhtemoc Mancillas-Lopez, Cinvestav
  • Daniel Genkin, Georgia Tech
  • Daniel Gruss, Graz University of Technology
  • Daniel Moghimi, Google
  • Daniel Page, University of Bristol
  • David Oswald, University of Birmingham
  • Debdeep Mukhopadhyay, Indian Institute of Technology Kharagpur
  • Diego F. Aranha, Aarhus University
  • Durba Chatterjee, Radboud University
  • Eleonora Cagli, CEA-Leti, Université Grenoble Alpes
  • Elke De Mulder, Google
  • Erkay Savas, Sabanci University
  • Fatemeh (Saba) Ganji, Worcester Polytechnic Institute
  • Francisco Rodríguez-Henríquez, Technology Innovation Institute
  • François Gérard, University of Luxembourg
  • François-Xavier Standaert, UCLouvain
  • Guido Masera, Politecnico di Torino
  • Gustavo Banegas, INRIA
  • Ilia Polian, University of Stuttgart
  • Jan Philipp Thoma
  • Jiun-Peng Chen, Academia Sinica
  • Julius Hermelink, Max Planck Institute for Security and Privacy
  • Kazuo Sakiyama, The University of Electro-Communications, Tokyo
  • Kimmo Järvinen, Xiphera
  • Kostas Papagiannopoulos, University of Amsterdam
  • Kris Gaj, George Mason University
  • Laurent Imbert, CNRS, LIRMM
  • Leibo Liu, Tsinghua University
  • Lejla Batina, Radboud University
  • Lennert Wouters, KU Leuven
  • Lichao Wu, TU Darmstadt
  • Lukasz Chmielewski, Masaryk Univerisity
  • Manaar Alam, New York University Abu Dhabi
  • Manuel Barbosa, Universidade do Porto (FCUP) and INESC TEC
  • Marc Stöttinger, RheinMain University of Applied Sciences
  • Marcel Medwed, NXP Semiconductors
  • Marios Omar Choudary, University POLITEHNICA of Bucharest
  • Markku-Juhani Saarinen, Tampere University
  • Markus Krausz, TÜV Informationstechnik GmbH
  • Matthias J. Kannwischer, Chelpis Quantum Corp
  • Mélissa Rossi, CryptoExperts
  • Michael Hutter, UniBw M
  • Michael Tunstall, Google
  • Mihalis Maniatakos, New York University Abu Dhabi
  • Ming-Hsien Tsai, National Taiwan University of Science and Technology
  • Mirjana Stojilović, EPFL
  • Mounia Kharbouche-Harrari, STMicroelectronics France
  • Nusa Zidaric, Leiden University
  • Oscar Reparaz, Block, Inc
  • Peter Pessl, Infineon Technologies
  • Pierrick Méaux, Luxembourg University
  • Qian Guo, Lund University
  • Rajat Sadhukhan, Indian Institute of Technology Roorkee
  • Rei Ueno, Kyoto University
  • Ricardo Chaves, INESC-ID/IST/ULisbon
  • Robert Primas, Intel Labs
  • Roel Maes, Synopsys
  • Ruben Niederhagen, Academia Sinica and University of Southern Denmark
  • Sandeep Kumar, Signify
  • Sarani Bhattacharya, Indian Institute of Technology Kharagpur
  • Sayandeep Saha, Indian Institute of technology Bombay
  • Shahin Tajik, Worcester Polytechnic Institute
  • Sikhar Patranabis, IBM Research India
  • Silvia Mella, Radboud University
  • Stjepan Picek, University of Zagreb & Radboud University
  • Sujoy Sinha Roy, Graz University of Technology
  • Sylvain Guilley, Secure-IC S.A.S.
  • Tanja Lange, Eindhoven University of Technology
  • Thibauld Feneuil, CryptoExperts
  • Thomas Espitau, PQShield
  • Thomas Roche, NinjaLab
  • Urbi Chatterjee, Indian Institute of Technology Kanpur
  • Vedad Hadžić, Intel Labs
  • Victor Arribas, Rambus
  • Vincent Grosso, CNRS
  • Weijia Wang, Shandong University
  • Zhiyuan Zhang, Max Planck Institute for Security and Privacy


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