Paper 2025/1571
Attribute-based Quantum Broadcast Encryption with Composite Policies via Symmetric Unitary t-Designs
Abstract
In an emerging era of quantum technologies, securing quantum communications is paramount. In this paper, we introduce two frameworks for attribute-based quantum broadcast encryption (AB-QBE), enabling fine-grained access control over sensitive quantum data. The first scheme, Multi-Policy Quantum Private Broadcast Encryption (MP-QPBE), leverages symmetric unitary \(t\)-designs to construct a protocol where decryption is possible upon satisfying a composite set of access policies simultaneously. This approach ensures that a user can only access the broadcasted quantum state if their attributes fulfill multiple predefined criteria. In our MP-QPBE, we first perform symmetrization of the initial quantum message for the encryption of the tensor product of distinct pure states, a scenario not directly addressed by previous quantum private broadcasting schemes. We demonstrate that this method is information-theoretically secure. The second scheme, Component-wise Independent Quantum Broadcast Encryption (CI-QBE), offers an alternative, lossless approach where each quantum message is encrypted independently using a unitary \(1\)-design. It provides greater flexibility and is applicable to arbitrary quantum states, including mixed states, without the information loss inherent in symmetrization. We provide a comprehensive security analysis for both constructions, proving their robustness against unauthorized users and adversaries with quantum side information. A comparative analysis highlights the trade-offs between the two schemes in terms of security guarantees, quantum resource requirements, and practical applicability, offering a nuanced perspective on designing secure multi-user quantum communication systems.
Metadata
- Available format(s)
-
PDF
- Category
- Cryptographic protocols
- Publication info
- Published elsewhere. Cryptography and Communications Discrete Structures, Boolean Functions and Sequences
- Keywords
- Linear Secret-Sharing Schemes(LSSS)Symmetric Unitary t-designsAccess ControlQuantum Private Broadcast.
- Contact author(s)
-
sayantan ganguly 90 @ tcgcrest org
chaudhury shion @ gmail com - History
- 2026-02-17: last of 2 revisions
- 2025-09-02: received
- See all versions
- Short URL
- https://ia.cr/2025/1571
- License
-
CC BY
BibTeX
@misc{cryptoeprint:2025/1571,
author = {Sayatan Ganguly and Shion Samadder Chaudhury},
title = {Attribute-based Quantum Broadcast Encryption with Composite Policies via Symmetric Unitary t-Designs},
howpublished = {Cryptology {ePrint} Archive, Paper 2025/1571},
year = {2025},
url = {https://eprint.iacr.org/2025/1571}
}