Paper 2026/534
Ciphertext-Policy ABE for $\mathsf{NC}^1$ Circuits with Constant-Size Ciphertexts from Succinct LWE
Abstract
We construct a lattice-based ciphertext-policy attribute-based encryption (CP-ABE) scheme for $\mathsf{NC}^1$ access policies with constant-size ciphertexts. Let $\lambda$ be the security parameter. For an $\mathsf{NC}^1$ circuit of depth $d$ and size $s$ on $\ell$-bit inputs, our scheme has the public-key and ciphertext sizes $O(1)$ (independent of $d$), and secret-key size $O(\ell)$, where the $O(\cdot)$ hides $\operatorname{poly}(\lambda)$ factors. As an application, we obtain a broadcast encryption scheme for $N$ users with ciphertext size $\operatorname{poly}(\lambda)$ independent of $\log N$ and key sizes $\operatorname{poly}(\lambda,\log N)$. Our construction is selectively secure in the standard model under the $\operatorname{poly}(\lambda)$-succinct LWE assumption introduced by Wee (CRYPTO 2024).
Metadata
- Available format(s)
-
PDF
- Category
- Cryptographic protocols
- Publication info
- Preprint.
- Keywords
- Ciphertext-policy ABENC^1 circuitsLinear secret sharing schemesSuccinct LWEBroadcast encryption
- Contact author(s)
-
ljqi @ mail nankai edu cn
yuanyiz @ mail nankai edu cn
fwfu @ nankai edu cn - History
- 2026-03-20: approved
- 2026-03-17: received
- See all versions
- Short URL
- https://ia.cr/2026/534
- License
-
CC BY
BibTeX
@misc{cryptoeprint:2026/534,
author = {Jiaqi Liu and Yuanyi Zhang and Fang-Wei Fu},
title = {Ciphertext-Policy {ABE} for $\mathsf{{NC}}^1$ Circuits with Constant-Size Ciphertexts from Succinct {LWE}},
howpublished = {Cryptology {ePrint} Archive, Paper 2026/534},
year = {2026},
url = {https://eprint.iacr.org/2026/534}
}