Efficient Fault-Tolerant Quantum Protocol for Differential Privacy in the Shuffle Model
September 06, 2024 Β· Declared Dead Β· π arXiv.org
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Authors
Hassan Jameel Asghar, Arghya Mukherjee, Gavin K. Brennen
arXiv ID
2409.04026
Category
quant-ph: Quantum Computing
Cross-listed
cs.CR
Citations
1
Venue
arXiv.org
Last Checked
5 months ago
Abstract
We present a quantum protocol which securely and implicitly implements a random shuffle to realize differential privacy in the shuffle model. The shuffle model of differential privacy amplifies privacy achievable via local differential privacy by randomly permuting the tuple of outcomes from data contributors. In practice, one needs to address how this shuffle is implemented. Examples include implementing the shuffle via mix-networks, or shuffling via a trusted third-party. These implementation specific issues raise non-trivial computational and trust requirements in a classical system. We propose a quantum version of the protocol using entanglement of quantum states and show that the shuffle can be implemented without these extra requirements. Our protocol implements k-ary randomized response, for any value of k > 2, and furthermore, can be efficiently implemented using fault-tolerant computation.
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