5
talks
2
committee roles
0
leadership roles
2019–2025
years active
Contributions
QIP QCrypt TQC presenter award · △program ◇steering ○organising □local · filled = chair
Talks
| Title | Conference | Type | Co-authors |
|---|---|---|---|
| Security of position-based verification limits Hamiltonian simulation via holography | QIP 2024 | regular | ▸Harriet Apel, Toby Cubitt, Patrick Hayden, David Perez-Garcia |
| Gapped Clique Homology is QMA1-hard and contained in QMA | TQC 2024 | regular | Robbie King |
We study the complexity of a classic problem in computational topology, the homology problem: given a description of some space X and an integer k, decide if X contains a k-dimensional hole. The setting and statement of the homology problem are completely classical, yet we find that the complexity is characterized by quantum complexity classes. Our result can be seen as an aspect of a connection between homology and supersymmetric quantum mechanics [Wit82]. We consider clique complexes, motivated by the practical application of topological data analysis (TDA). The clique complex of a graph is the simplicial complex formed by declaring every k+1-clique in the graph to be a k-simplex. Our main result is that deciding whether the clique complex of a weighted graph has a hole or not, given a suitable promise on the gap, is QMA1-hard and contained in QMA. Our main innovation is a technique to lower bound the eigenvalues of the combinatorial Laplacian operator. For this, we invoke a tool from algebraic topology known as spectral sequences. In particular, we exploit a connection between spectral sequences and Hodge theory [For94]. Spectral sequences will play a role analogous to perturbation theory for combinatorial Laplacians. In addition, we develop the simplicial surgery technique used in prior work [CK22]. Our result provides some suggestion that the quantum TDA algorithm [LGZ16] cannot be dequantized. More broadly, we hope that our results will open up new possibilities for quantum advantage in topological data analysis. |
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| Holographic duality between local Hamiltonians from random tensor networks | TQC 2022 | regular | ▸Harriet Apel, Toby Cubitt |
| General conditions for universality of quantum Hamiltonians | TQC 2021 | regular | Stephen Piddock, Johannes Bausch, Toby Cubitt |
| Toy Models of Holographic Duality between local Hamiltonians | TQC 2019 | regular | Toby Cubitt |
Committee service
| Conference | Committee | Position | Title |
|---|---|---|---|
| QIP 2025 | PC | member | — |
| TQC 2025 | PC | member | — |
Collaborators
| Co-author | Joint talks |
|---|---|
| Toby Cubitt | 4 |
| Harriet Apel | 2 |
| David Perez-Garcia | 1 |
| Johannes Bausch | 1 |
| Patrick Hayden | 1 |
| Robbie King | 1 |
| Stephen Piddock | 1 |