22
collaborators
2021–2026
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
1 Talk
| Title | Conference | Type | Co-authors |
|---|---|---|---|
| Opportunities and Limitations in Broadband Sensing | TQC 2022 | regular | ▸Anthony Polloreno, Joshua Levin, Ariel Shlosberg, James Thompson, Michael Foss-Feig, David Hayes, Graeme Smith |
7 Posters
| Title | Conference | Co-authors |
|---|---|---|
| Localizing entanglement in high-dimensional states | QIP 2026 | ▸Christopher Vairogs, Akanksha Chablani, Leo Lee, Hanyang Sha, Abbie Vaughan-Lee |
| Product testing with single-copy measurements | QIP 2026 | Luke Coffman, Ariel Shlosberg, Louis Schatzki, Felix Leditzky |
| Product testing with single-copy measurements | TQC 2026 | Luke Coffman, Ariel Shlosberg, Louis Schatzki, Felix Leditzky |
In this work, we study the sample complexity of two variants of product testing when restricted to single-copy measurements. In particular, we consider both bipartite product testing (i.e., does there exist at least one non-trivial cut across which the state is product) and multipartite product testing (i.e., is the state fully product across every cut). For the first variant, we prove an exponential lower bound on the sample complexity of any algorithm for this task which utilizes only single-copy measurements. When comparing this with known efficient algorithms that utilize multi-copy measurements, this establishes an exponential separation for this and several related entanglement learning tasks. For the second variant, we prove another sample lower bound that establishes a separation between single- and multi-copy strategies. To obtain our results, we prove a crucial technical lemma that gives a lower bound on the overlap between tensor products of permutation operators acting on subsystems of states that themselves carry a tensor structure. Finally, we provide an algorithm for multipartite product testing using only single-copy, local measurements, and we highlight several interesting open questions arising from this work. |
||
| Local measurement strategies for multipartite entanglement quantification | TQC 2024 | Luke Coffman, Akshay Seshadri, Graeme Smith |
| Multipartite Entanglement Measures via Bell Basis Measurements | QIP 2023 | Gerard Pelegrí, Steph Foulds, Natalie Pearson |
| Local measurement strategies for multipartite entanglement quantification | TQC 2023 | Luke Coffman, Graeme Smith |
| Variational Quantum Algorithm for Quantum Sensor Evaluation | QIP 2021 | Akira Sone, Marco Cerezo, Patrick Coles |
Collaborators
| Co-author | Joint talks |
|---|---|
| Luke Coffman | 4 |
| Ariel Shlosberg | 3 |
| Graeme Smith | 3 |
| Felix Leditzky | 2 |
| Louis Schatzki | 2 |
| Abbie Vaughan-Lee | 1 |
| Akanksha Chablani | 1 |
| Akira Sone | 1 |
| Akshay Seshadri | 1 |
| Anthony Polloreno | 1 |
| Christopher Vairogs | 1 |
| David Hayes | 1 |
| Gerard Pelegrí | 1 |
| Hanyang Sha | 1 |
| James Thompson | 1 |
| Joshua Levin | 1 |
| Leo Lee | 1 |
| Marco Cerezo | 1 |
| Michael Foss-Feig | 1 |
| Natalie Pearson | 1 |