English

Pseudorandom unitaries with non-adaptive security

Quantum Physics 2024-02-23 v1 Cryptography and Security

Abstract

Pseudorandom unitaries (PRUs) are ensembles of efficiently implementable unitary operators that cannot be distinguished from Haar random unitaries by any quantum polynomial-time algorithm with query access to the unitary. We present a simple PRU construction that is a concatenation of a random Clifford unitary, a pseudorandom binary phase operator, and a pseudorandom permutation operator. We prove that this PRU construction is secure against non-adaptive distinguishers assuming the existence of quantum-secure one-way functions. This means that no efficient quantum query algorithm that is allowed a single application of Upoly(n)U^{\otimes \mathrm{poly}(n)} can distinguish whether an nn-qubit unitary UU was drawn from the Haar measure or our PRU ensemble. We conjecture that our PRU construction remains secure against adaptive distinguishers, i.e. secure against distinguishers that can query the unitary polynomially many times in sequence, not just in parallel.

Cite

@article{arxiv.2402.14803,
  title  = {Pseudorandom unitaries with non-adaptive security},
  author = {Tony Metger and Alexander Poremba and Makrand Sinha and Henry Yuen},
  journal= {arXiv preprint arXiv:2402.14803},
  year   = {2024}
}

Comments

17 pages

R2 v1 2026-06-28T14:57:32.494Z