Paper 2026/1454
Batched Attribute-Based Encryption from Bilinear Pairings
Abstract
Batched identity-based encryption (batched IBE), introduced by Agarwal, Fernando, and Pinkas (CRYPTO 2025), enables a key authority to issue a single succinct key that decrypts an entire batch of ciphertexts. However, existing batched encryption protocols support only identity-based access control and do not accommodate expressive attribute-based policies. We are the first to introduce Batched Attribute-Based Encryption (B-ABE), a generalization of batched encryption to the attribute-based setting. In B-ABE, ciphertexts are associated with attribute sets and batch labels, while a single batch key is bound to an access policy and a public digest of the batch. The key decrypts exactly those ciphertexts in the batch whose attributes satisfy the policy, and its size is independent of the batch size. We construct B-ABE in asymmetric bilinear groups and prove security under the standard Decisional Bilinear Diffie-Hellman (DBDH) assumption in the random oracle model. We further introduce the first Threshold Batched Attribute-Based Encryption (TB-ABE), in which the master secret is distributed among L authorities via Shamir secret sharing. Any subset of at least T authorities can non-interactively generate publicly verifiable key shares that aggregate into a succinct batch key of the same asymptotic size as in the single-authority setting. We formalize security against static corruptions of up to (T-1) authorities and adaptive key-share queries and prove security under the DBDH assumption in the random oracle model.
Metadata
- Available format(s)
-
PDF
- Category
- Cryptographic protocols
- Publication info
- Published elsewhere. Major revision. PROVSEC 2026
- Keywords
- Attribute-based encryptionBatched key issuanceThreshold cryptographyEncrypted mempoolsBilinear pairings
- Contact author(s)
-
rpsarkar_p @ isical ac in
shayeef_r @ isical ac in
mriganka @ isical ac in - History
- 2026-07-20: approved
- 2026-07-16: received
- See all versions
- Short URL
- https://ia.cr/2026/1454
- License
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CC BY
BibTeX
@misc{cryptoeprint:2026/1454,
author = {Ramprasad Sarkar and Shayeef Murshid and Mriganka Mandal},
title = {Batched Attribute-Based Encryption from Bilinear Pairings},
howpublished = {Cryptology {ePrint} Archive, Paper 2026/1454},
year = {2026},
url = {https://eprint.iacr.org/2026/1454}
}