3
talks
0
committee roles
0
leadership roles
2023–2026
years active
Contributions
QIP QCrypt TQC presenter award · △program ◇steering ○organising □local · filled = chair
Talks
| Title | Conference | Type | Co-authors |
|---|---|---|---|
| Strong random unitaries and fast scrambling | QIP 2026 | plenary_short | Thomas Schuster, Fermi Ma, Fernando Brandao, Hsin-Yuan Huang |
Understanding how fast physical systems can resemble Haar-random unitaries is a fundamental question in physics. Many experiments of interest in quantum gravity and many-body physics, including the butterfly effect in quantum information scrambling and the Hayden-Preskill thought experiment, involve queries to a random unitary~$U$ alongside its inverse~$U^\dagger$, conjugate~$U^*$, and transpose~$U^T$. However, conventional notions of approximate unitary designs and pseudorandom unitaries (PRUs) fail to capture these experiments. In this work, we introduce and construct strong unitary designs and strong PRUs that remain robust under all such queries. Our constructions achieve the optimal circuit depth of $\mathcal{O}(\log n)$ for systems of $n$ qubits. We further show that strong unitary designs can form in circuit depth $\mathcal{O}(\log^2 n)$ in circuits composed of independent two-qubit Haar-random gates, and that strong PRUs can form in circuit depth $\poly(\log n)$ in circuits with no ancilla qubits. Our results provide an operational proof of the fast scrambling conjecture from black hole physics: every observable feature of the fastest scrambling quantum systems reproduces Haar-random behavior at logarithmic times. |
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| A One-Query Lower Bound for Unitary Synthesis and Breaking Quantum Cryptography | QIP 2024 | regular ▸ presenter | Fermi Ma, John Wright |
| Post-Quantum Zero Knowledge, Revisited (or: How to Do Quantum Rewinding Undetectably) | QIP 2023 | regular | ▸Fermi Ma, Nicholas Spooner |
Collaborators
| Co-author | Joint talks |
|---|---|
| Fermi Ma | 3 |
| Fernando Brandao | 1 |
| Hsin-Yuan Huang | 1 |
| John Wright | 1 |
| Nicholas Spooner | 1 |
| Thomas Schuster | 1 |