IACR News
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Here you can see all recent updates to the IACR webpage. These updates are also available:
04 March 2025
Kalle Jyrkinen, Russell W. F. Lai
We revisit the vSIS assumption focusing on the univariate single-point constant-degree setting, which can be seen as a generalisation of the (search) NTRU problem. In such a setting, we show that the vSIS problem is as hard as finding the shortest vector in certain ideal lattices. We also show how to generate a random vSIS instance together with a trapdoor, under the (decision) NTRU assumption. Interestingly, a vSIS trapdoor allows to sample polynomials of short coefficients which evaluate to any given value at the public point. By exploiting the multiplicativity of the polynomial ring, we use vSIS trapdoors to build a new homomorphic signature scheme for low-degree polynomials.
Shai Levin
Elette Boyle, Ilan Komargodski, Neekon Vafa
We consider and adapt the notion of covert security to the memory checking context, wherein the adversary can effectively cheat while taking the risk of being caught with constant probability. Notably, BKV's lower bound does not apply in this setting.
We close this gap and prove that $\Omega(\log n/ \log \log n)$ overhead is unavoidable even in the covert security setting. Our lower bound applies to any memory checker construction, including ones that use randomness and adaptivity and ones that rely on cryptographic assumptions and/or the random oracle model, as long as they satisfy a natural "read-only reads" property. This property requires a memory checker not to modify contents of the database or local storage in the execution of a logical read instruction.
Hayder Tirmazi
Adrien Dubois, Michael Klooß, Russell W. F. Lai, Ivy K. Y. Woo
[Bootle-Lyubashevsky-Nguyen-Sorniotti, Crypto'23] (BLNS) recently proposed a framework for constructing lattice-based proof-friendly signatures and anonymous credentials, based on another new lattice assumption called $\mathsf{ISIS}_f$ parametrised by a fixed function $f$, with focus on $f$ being the binary decomposition. We introduce a generalised $\mathsf{ISIS}_f$ framework, called $\mathsf{GenISIS}_f$, with a keyed and probabilistic function $f$. For example, picking $f_b(\mu) = 1/(b-\mu)$ with key $b$ for short ring element $\mu$ leads to algebraic and thus proof-friendly signatures. To better gauge the robustness and proof-friendliness of $\mathsf{(Gen)}\mathsf{ISIS}_f$, we consider what happens when the inputs to $f$ are chosen selectively (or even adaptively) by the adversary, and the behaviour under relaxed norm checks. While bit decomposition quickly becomes insecure, our proposed function families seem robust.
Anja Lehmann, Cavit Özbay
In this work, we identify the common blueprint used in both works and abstract the proof-based approach through the building block of a commit-and-prove system for vectors (CP). We formally define a flexible set of security properties for the CP system and show how it can be securely combined with a multi-signature to yield a signature with ad hoc thresholds. Our scheme also lifts the threshold signatures into the multiverse setting recently introduced by Baird et al. (S&P'23), which allows signers to re-use their long-term keys across several groups. The challenge in the generic construction is to express -- and realize -- the combination of homomorphic proofs and commitments (needed to realize flexible thresholds over fixed group keys) and their simulation extractability (needed in the threshold signature security proof). We finally show that a CP instantiation closely following the ideas of Das et al. can be proven secure, but requires a new flexible-base DL-assumption to do so.
03 March 2025
Rochester, USA, 6 March - 7 March 2025
Seoul, Korea, 19 August - 20 August 2025
Submission deadline: 17 April 2025
Notification: 19 June 2025
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Submission deadline: 15 March 2025
Notification: 30 June 2025
Rome, Italy, 1 October 2025
Submission deadline: 28 April 2025
Notification: 1 July 2025
Chania, Greece, 2 June - 5 June 2025
Rome, Italy, 16 March 2025
Friedrich-Alexander-Universität Erlangen-Nürnberg
The Chair of Hardware/Software Co-Design at FAU explores methodologies for designing and optimizing computing systems with high demands on availability, performance, and security.
Project DescriptionEnsuring security in IoT systems, particularly confidentiality and integrity of data and application code, is a major challenge. While hardware security, crypto modules, secure boot, and trusted execution environments offer protection, they often increase costs and energy consumption.
This position focuses on system-level design automation for secure embedded systems-on-chip. The goal is to develop a methodology for design space exploration that generates secure architectures and evaluates countermeasures' impact on security, energy, cost, and performance. Additionally, the research includes high-level synthesis techniques to implement secure design candidates as FPGA-based system-on-chip prototypes.
Your Tasks and Opportunities- Conduct research in embedded computer architectures and hardware security.
- Explore security-aware hardware/software co-design, system-level design space exploration, and multi-objective optimization.
- Apply high-level synthesis techniques to integrate security mechanisms into SoC designs and prototype them on FPGA platforms.
- Master’s degree in Computer Science, Electrical Engineering, or a related field.
- Skills and interest in computer architecture, hardware security, system-level design automation, object-oriented programming, hardware description languages, SoC design, RISC-V, or FPGA tools.
- Team-oriented, open-minded, and communicative, with an interest in both theoretical and practical aspects of embedded systems.
- High proficiency in English (German is a plus).
Closing date for applications:
Contact: Jürgen Teich ([email protected]), Stefan Wildermann ([email protected])
27 February 2025
Munich, Germany, 24 June 2025
Submission deadline: 21 March 2025
Notification: 22 April 2025
University of Waterloo
A Ph.D. degree and evidence of excellence in research are required. Successful applicants are expected to maintain an active program of research, and participate in research activities with academic and industry partners in the grant. The annual salary is 70,000 CAD. In addition, a travel fund of 3,000 CAD per year is provided. The positions are available immediately.
Interested individuals should apply using the MathJobs site (https://www.mathjobs.org/jobs/list/26357/). Applications should include a cover letter describing their interest in the position, a curriculum vitae and research statement and at least three reference letters.
The University of Waterloo acknowledges that much of our work takes place on the traditional territory of the Neutral, Anishinaabeg and Haudenosaunee peoples. Our main campus is situated on the Haldimand Tract, the land granted to the Six Nations that includes six miles on each side of the Grand River. Our active work toward reconciliation takes place across our campuses through research, learning, teaching, and community building, and is centralized within our Indigenous Initiatives Office.
The University regards equity and diversity as an integral part of academic excellence and is committed to accessibility for all employees. We encourage applications from candidates who have been historically disadvantaged and marginalized, including applicants who identify as Indigenous peoples (e.g., First Nations, Métis, Inuit/Inuk), Black, racialized, people with disabilities, women and/or 2SLGBTQ+. If you have any application, interview or workplace accommodation requests, please contact Carol Seely-Morrison ([email protected]).
All qualified candidates are encouraged to apply; however, Canadians and permanent residents will be given priority.
Closing date for applications:
Contact: Douglas Stebila ([email protected])
More information: https://www.mathjobs.org/jobs/list/26357
Télécom Paris, Paris, France
Closing date for applications:
Contact: Sébastien Canard ([email protected]), Qingju Wang ([email protected])
Queensland University of Technology, Brisbane, Australia
- Isogeny-based post-quantum cryptography
- Constructive and computational aspects of zk-SNARKs
Closing date for applications:
Contact: [email protected]
KTH Royal Institute of Technology; Stockholm, Sweden
Since this position requires Swedish citizenship, the below description of the position is available in Swedish only.
Centrum för cyberförsvar och informationssäkerhet (CDIS) vid KTH — som är ett samarbete mellan KTH och Försvarsmakten, samt vissa andra myndigheter — söker doktorander. Det rör sig om en bred utlysning inom cybersäkerhetsområdet. Vi vill här särskilt peka ut en möjlig specialisering inom kryptologiområdet.
Mer specifikt har KTH i samarbete med avdelningen för krypto och IT-säkerhet vid Must pågående spetsforskning som syftar till att möta de utmaningar som följer av kvantdatorutvecklingen. Vi söker nu inom ramen för CDIS utlysning en doktorand som kan bidra till den forskningen.
Doktoranden kommer att handledas av Johan Håstad och/eller Douglas Wikström. Forskningssatsningen omfattar även Martin Ekerå och Joel Gärtner. Vid intresse, sök en av de av CDIS utlysta doktorandtjänsterna.
Tjänsten kommer att omfatta 80% doktorandstudier vid KTH och 20% placering vid Must där möjlighet ges att arbeta med några av Sveriges främsta kryptologer. Resultatet för doktoranden blir en unik kombination av teori och praktik inom kryptologiområdet.
För ytterligare information, kontakta Johan Håstad ([email protected]) eller Martin Ekerå ([email protected]).
Sista ansökningsdag är den 13 mars 2025. Observera att svenskt medborgarskap är ett krav för tjänsten, och att tjänsten medför krav på säkerhetsprövning.
Closing date for applications:
Contact: For more information about the position, please contact Johan Håstad ([email protected]) or Martin Ekerå ([email protected]).
More information: https://kth.varbi.com/se/what:job/jobID:790985