9
collaborators
2022–2026
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
2 Talks
| Title | Conference | Type | Co-authors |
|---|---|---|---|
| Instance-Optimal Quantum State Certification with Entangled Measurements | TQC 2026 | regular ▸ presenter | Ryan O'Donnell |
We consider the task of quantum state certification: given a description of a hypothesis state~$\sigma$ and multiple copies of an unknown state~$\rho$, a tester aims to determine whether the two states are equal or $\epsilon$-far in trace distance. It is known that~$\Theta(d/\epsilon^2)$ copies of~$\rho$ are necessary and sufficient for this task, assuming the tester can make entangled measurements over all copies [CHW07, OW15, BOW19]. However, these bounds are for a worst-case~$\sigma$, and it is not known what the optimal copy complexity is for this problem on an \emph{instance-by-instance} basis. While such instance-optimal bounds have previously been shown for quantum state certification when the tester is limited to measurements unentangled across copies [CLO22, CLHL22], they remained open when testers are unrestricted in the kind of measurements they can perform. We address this open question by proving nearly instance-optimal bounds for quantum state certification when the tester can perform fully entangled measurements. Analogously to the unentangled setting, we show that the optimal copy complexity for certifying~$\sigma$ is given by the worst-case complexity times the fidelity between~$\sigma$ and the maximally mixed state. We prove our lower bounds using a novel quantum analogue of the Ingster--Suslina method, which is likely to be of independent interest. This method also allows us to recover the~$\Omega(d/\epsilon^2)$ lower bound for mixedness testing [OW15], i.e., certification of the maximally mixed state, with a surprisingly simple proof. |
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| Quantum Lock: A Provable Quantum Communication Advantage | QCRYPT 2022 | regular | Kaushik Chakraborty, Mina Doosti, Yao Ma, Myrto Arapinis, Elham Kashefi |
5 Posters
| Title | Conference | Co-authors |
|---|---|---|
| Instance-Optimal Quantum State Certification with Entangled Measurements | QIP 2026 | Ryan O’Donnell |
| Agnostic Process Tomography | QIP 2025 | Laura Lewis, Elham Kashefi, Mina Doosti |
| Agnostic Process Tomography | TQC 2025 | — |
| Learning Quantum Processes with Quantum Statistical Queries | QIP 2024 | Armando Angrisani, Mina Doosti |
| Learning Quantum Processes with Quantum Statistical Queries | TQC 2024 | Mina Doosti |
Collaborators
| Co-author | Joint talks |
|---|---|
| Mina Doosti | 4 |
| Elham Kashefi | 2 |
| Armando Angrisani | 1 |
| Kaushik Chakraborty | 1 |
| Laura Lewis | 1 |
| Myrto Arapinis | 1 |
| Ryan O'Donnell | 1 |
| Ryan O’Donnell | 1 |
| Yao Ma | 1 |