Statistically secure uncloneable encryption of arbitrary messages
Abstract
Unconditional uncloneable encryption of a single bit with efficient encryption and decryption is now possible. However, whether the extension to messages of arbitrary length achieves statistical security remains to be known. Using the fact that the encoding bases for the single-bit scheme known to be secure consist of a subset of the Clifford unitaries, we show that this scheme can be upgraded to achieve unconditional uncloneable encryption for messages of arbitrary length, with encoding time po...
Description / Details
Unconditional uncloneable encryption of a single bit with efficient encryption and decryption is now possible. However, whether the extension to messages of arbitrary length achieves statistical security remains to be known. Using the fact that the encoding bases for the single-bit scheme known to be secure consist of a subset of the Clifford unitaries, we show that this scheme can be upgraded to achieve unconditional uncloneable encryption for messages of arbitrary length, with encoding time polynomial in the message length and security parameter. This establishes that one-time uncloneable encryption of arbitrary messages enjoys statistical security.
Source: arXiv:2607.28561v1 - http://arxiv.org/abs/2607.28561v1 PDF: https://arxiv.org/pdf/2607.28561v1 Original Link: http://arxiv.org/abs/2607.28561v1
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Jul 31, 2026
Quantum Computing
Quantum Physics
0