1
program role
38
collaborators
2018–2026
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
5 Talks
| Title | Conference | Type | Co-authors |
|---|---|---|---|
| Single-shot and measurement-based quantum error correction via fault complexes | QIP 2025 | regular ▸ presenter | Timo Hillmann, Guillaume Dauphinais, Ilan Tzitrin |
| Single-shot error correction and universal fault-tolerant computation with the three-dimensional subsystem toric code | TQC 2021 | regular | ▸Aleksander Kubica, Joseph Iverson |
| Universal Fault-Tolerant Quantum Computing with Stabiliser Codes | TQC 2021 | regular | ▸Paul Webster, Thomas R. Scruby, Stephen D. Bartlett |
| Single-shot error correction of three-dimensional homological product codes | TQC 2021 | regular | ▸Armanda O. Quintavalle, Joschka Roffe, Earl Campbell |
| Locally unencoding the color code | TQC 2021 | regular ▸ presenter | Aleksander Kubica |
12 Posters
| Title | Conference | Co-authors |
|---|---|---|
| Design of Logical Clifford Gates for Stabilizer Codes by Gauge Fixing via the ZX-calculus | QIP 2026 | ▸Sascha Zakaib-Bernier, Alexander Frei, Zach Mann, Victor Albert |
| Fault-tolerant transformations of spacetime codes | TQC 2026 | Arthur Pesah, Austin K. Daniel, Ilan Tzitrin |
Recent advances in quantum error-correction (QEC) have shown that it is often beneficial to understand fault-tolerance as a dynamical process, a circuit with redundant measurements that help correct errors, rather than as a static code equipped with a syndrome extraction circuit. Spacetime codes have emerged as a natural framework to understand error correction at the circuit level while leveraging the traditional QEC toolbox. Here, we introduce a framework based on chain complexes and chain maps to model spacetime codes and transformations between them. We show that stabilizer codes, quantum circuits, and decoding problems can all be described using chain complexes, and that the equivalence of two spacetime codes can be characterized by specific maps between chain complexes, the fault-tolerant maps, that preserve the number of encoded qubits, fault distance, and minimum-weight decoding problem. As an application of this framework, we extend the foliated cluster state construction from stabilizer codes to any spacetime code, showing that any Clifford circuit can be transformed into a measurement-based protocol with the same fault-tolerant properties. To this protocol, we associate a chain complex which encodes the underlying decoding problem, generalizing previous cluster state complex constructions. Our method enables the construction of cluster states from non-CSS, subsystem, and Floquet codes, as well as from logical Clifford operations on a given code. |
||
| Quasiprobabilistic imaginary-time evolution on quantum computers | QIP 2025 | Annie Ray, Esha Swaroop, Ningping Cao, Anirban Narayan Chowdhury |
| Scalable Simulation of Fermionic Encoding Performance on Noisy Quantum Computers | QIP 2025 | Emiliia Dyrenkova, Raymond Laflamme |
| Graphical CSS Code Transformation Using ZX Calculus | QIP 2024 | Jiaxin Huang, Sarah Meng Li, Lia Yeh, Aleks Kissinger, Michele Mosca |
| Weight Reduced Stabilizer Codes with Lower Overhead | TQC 2024 | Eric Sabo, Lane G. Gunderman, Benjamin Ide, Guillaume Dauphinais |
| Non-Pauli Errors in the Three-Dimensional Surface Code | QIP 2023 | Thomas R. Scruby, Dan Browne |
| Tailoring three-dimensional topological codes for biased noise | TQC 2023 | Eric Huang, Arthur Pesah, Christopher T. Chubb, Arpit Dua |
| Universal Fault-Tolerant Quantum Computing with Stabiliser Codes | QIP 2021 | Paul Webster, Thomas R. Scruby, Stephen D. Bartlett |
| Numerical Implementation of Just-In-Time Decoding in Novel Lattice Slices Through the Three-Dimensional Surface Code | TQC 2021 | Thomas R. Scruby, Dan Browne, Paul Webster |
| Machine learning logical gates for quantum error correction | QIP 2020 | Hongxiang Chen, Nikolas Breuckmann, Edward Grant |
| Universal quantum computing with 3D surface codes | QIP 2018 | Dan Browne |
Committee service
| Conference | Committee | Position | Title |
|---|---|---|---|
| QIP 2026 | program | member | — |
Collaborators
| Co-author | Joint talks |
|---|---|
| Thomas R. Scruby | 4 |
| Dan Browne | 3 |
| Paul Webster | 3 |
| Aleksander Kubica | 2 |
| Arthur Pesah | 2 |
| Guillaume Dauphinais | 2 |
| Ilan Tzitrin | 2 |
| Stephen D. Bartlett | 2 |
| Aleks Kissinger | 1 |
| Alexander Frei | 1 |
| Anirban Narayan Chowdhury | 1 |
| Annie Ray | 1 |
| Armanda O. Quintavalle | 1 |
| Arpit Dua | 1 |
| Austin K. Daniel | 1 |
| Benjamin Ide | 1 |
| Christopher T. Chubb | 1 |
| Earl Campbell | 1 |
| Edward Grant | 1 |
| Emiliia Dyrenkova | 1 |