More Efficient Zero-Knowledge Protocols over $$\mathbb {Z}_{2^k}$$ via Galois Rings
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Publisher
Springer Nature Switzerland
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https://link.springer.com/content/pdf/10.1007/978-3-031-68400-5_13
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3. Baum, C., Braun, L., Munch-Hansen, A., Razet, B., Scholl, P.: Appenzeller to brie: efficient zero-knowledge proofs for mixed-mode arithmetic and z2k. In: CCS 2021, pp. 192–211. ACM (2021)
4. Baum, C., Braun, L., Munch-Hansen, A., Scholl, P.: Moz$$\mathbb{Z}_{2^k}$$arella: Efficient vector-ole and zero-knowledge proofs over $$\mathbb{Z}_{2^k}$$. In: Dodis, Y., Shrimpton, T. (eds)Dodis, Y., Shrimpton, T. (eds.) CRYPTO 2022. LNCS, vol. 13510. pp. 329–358. Springer, Cham (2022). https://doi.org/10.1007/978-3-031-15985-5_12
5. Baum, C., et al.: Publicly verifiable zero-knowledge and post-quantum signatures from vole-in-the-head. In: Handschuh, H., Lysyanskaya, A. (eds). CRYPTO 2023. LNCS, vol. 14085, pp. 581–615. Springer, Cham (2023). https://doi.org/10.1007/978-3-031-38554-4_19
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