IACR News
If you have a news item you wish to distribute, they should be sent to the communications secretary. See also the events database for conference announcements.
Here you can see all recent updates to the IACR webpage. These updates are also available:
06 January 2026
Hung T. Dang
Lalita Devadas, Samuel B. Hopkins, Yael Tauman Kalai, Pravesh K. Kothari, Alex Lombardi, Surya Mathialagan
For our main result, we give a candidate non-adaptive $\mathsf{SNARG}$ for $\mathsf{NP}$ and prove its soundness under:
- the learning with errors assumption (or other standard assumptions such as bilinear maps), and - a mathematical conjecture about multivariate polynomials over the reals.
In more detail, our conjecture is an upper bound on the minimum total coefficient size of Nullstellensatz proofs (Potechin-Zhang, ICALP 2024) of membership in a concrete polynomial ideal. We emphasize that this is not a cryptographic assumption or any form of computational hardness assumption.
Of particular interest is the fact that our security analysis makes non-black-box use of the $\mathsf{SNARG}$ adversary, circumventing the black-box barrier of Gentry and Wichs (STOC '11). This gives a blueprint for constructing $\mathsf{SNARG}$s for $\mathsf{NP}$ that is not subject to the Gentry-Wichs barrier.
Luowen Qian, Mark Zhandry
As an additional application, we show that any quantum money scheme that can be verified through only classical queries to any oracle cannot be information-theoretically secure. This significantly generalizes the prior work by Ananth, Hu, and Yuen (ASIACRYPT'23) where they showed the same but only for the specific case of random oracles. Therefore, verifying black-box constructions of quantum money inherently requires coherently evaluating the underlying cryptographic tools, which may be difficult for near-term quantum devices.
03 January 2026
Hemin Rahimi, Amir Moradi
Nico Döttling, Giulio Malavolta, Omer Paneth
Under the hardness of LWE, we construct BARGs where both the CRS size the additive overhead of the proof are independent of $m$. Such BARGs can be recursively composed an unbounded polynomial number of times without losing succinctness. Along the way, we also considerably simplify the construction of fully local somewhere extractable hash functions used in the construction of Devadas et al.
Sarvar Patel, Giuseppe Persiano, Joon Young Seo, Kevin Yeo
Of independent interest, we present improved oblivious merging schemes for specific settings important for our ORAMs. Our constructions solely rely on symmetric cryptography.
02 January 2026
Krijn Reijnders
Kobi Gurkan, Philipp Jovanovic, Andrija Novakovic
Diana Ghinea, Chen-Da Liu-Zhang
We mainly focus on the real-valued variant, and chart the feasibility frontiers in synchronous, asynchronous, and network-agnostic models. We compare protocols in terms of resilience, round complexity, and communication efficiency, while also clarifying overlooked details and gaps.
Beyond standard requirements on the outputs, we discuss stronger conditions, such as having the outputs \emph{close} to the honest inputs' median. Moreover, we briefly situate the real-valued AA problem within the broader landscape of AA, where other input domains such as higher-dimensional spaces and graphs introduce further challenges.
31 December 2025
Ariel Futoransky, Fadi Barbàra, Ramses Fernandez, Gabriel Larotonda
Quinten Norga, Suparna Kundu, Ingrid Verbauwhede
Jingjing Fan, Xingye Lu, Man Ho Au, Siu Ming Yiu
sowle
Shichang Wang, Meicheng Liu, Shiqi Hou, Chengan Hou, Dongdai Lin
Betül Askin Özdemir, Vincent Rijmen
Abhinav Vishnu
This paper presents the Portable Trust eXtensible (PTX) protocol, a novel mechanism for asynchronous, non-interactive DCV. PTX decouples the assertion of control from the delivery mechanism by utilizing Zero-Knowledge Succinct Non-Interactive Arguments of Knowledge (zk-SNARKs). We introduce a circuit design that cryptographically binds a set of ephemeral secrets (a nullifier and secret key) to a scoped metadata payload—containing audience restrictions and expiration parameters—anchored to the public DNS via a lightweight TXT record.
This approach eliminates the need for an active web server during validation. A prover generates a self-contained, portable, and purely stateless proof artifact that can be verified client-side by any relying party, with revocation handled via O(TTL) DNS record deletion. We implement a reference toolchain using the Groth16 proving system and the Poseidon hash function, achieving a circuit complexity of just 1,756 constraints and sub-15ms verification times on consumer hardware. Our security analysis demonstrates that PTX effectively mitigates replay attacks through context-commitment public inputs while offering a privacy-preserving alternative to interactive DCV for identity assertions in decentralized environments.
30 December 2025
Baylor University
Closing date for applications:
Contact: [email protected]
More information: https://apply.interfolio.com/172168
Baylor University
Closing date for applications:
Contact: [email protected]
More information: https://apply.interfolio.com/174057
iTrust @SUTD, Singapore
Closing date for applications:
Contact: Prof. Jianying Zhou
More information: http://jianying.space/
University of Waterloo
Nominees are required to have a PhD (or equivalent) and will be appointed in a University of Waterloo academic department/unit as a full professor or associate professor with a promotion to full professor within two years of starting their appointment, or, if recruited from outside the academic sector, must possess the necessary qualifications to be appointed at these levels. The rank and salary will be commensurate with qualifications and experience.
For the complete job announcement and application procedures, see: https://ofas.uwaterloo.ca/job-details/123
Closing date for applications:
Contact: David Jao ([email protected])
More information: https://uwaterloo.ca/research/sites/default/files/uploads/documents/canadaimpactchairs_job-ad_final.pdf