Weak approximate unitary designs and applications to quantum encryption

November 15, 2019 Β· Declared Dead Β· πŸ› Quantum

πŸ‘» CAUSE OF DEATH: Ghosted
No code link whatsoever

"No code URL or promise found in abstract"

Evidence collected by the PWNC Scanner

Authors CΓ©cilia Lancien, Christian Majenz arXiv ID 1911.06742 Category quant-ph: Quantum Computing Cross-listed cs.CR, math.FA, math.PR Citations 13 Venue Quantum Last Checked 5 months ago
Abstract
Unitary $t$-designs are the bread and butter of quantum information theory and beyond. An important issue in practice is that of efficiently constructing good approximations of such unitary $t$-designs. Building on results by Aubrun (Comm. Math. Phys. 2009), we prove that sampling $d^t\mathrm{poly}(t,\log d, 1/Ξ΅)$ unitaries from an exact $t$-design provides with positive probability an $Ξ΅$-approximate $t$-design, if the error is measured in one-to-one norm distance of the corresponding $t$-twirling channels. As an application, we give a partially derandomized construction of a quantum encryption scheme that has roughly the same key size and security as the quantum one-time pad, but possesses the additional property of being non-malleable against adversaries without quantum side information.
Community shame:
Not yet rated
Community Contributions

Found the code? Know the venue? Think something is wrong? Let us know!

πŸ“œ Similar Papers

In the same crypt β€” Quantum Computing

Died the same way β€” πŸ‘» Ghosted