28
collaborators
2017–2026
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
1 Talk
| Title | Conference | Type | Co-authors |
|---|---|---|---|
|
Entanglement distillation between solid-state quantum network nodes
Best Student Paper Award (Experiment) — Norbert Kalb
|
QCRYPT 2017 | regular | Norbert Kalb, Andreas Reiserer, Peter Humphreys, Jacob Bakermans, Sten Kamerling, Naomi Nickerson, Daniel Twitchen, Matthew Markham, Ronald Hanson |
10 Posters
| Title | Conference | Co-authors |
|---|---|---|
| Error mitigation for logical circuits using decoder confidence | TQC 2026 | Maria Dincă, Tim Chan |
Fault-tolerant quantum computers use decoders to monitor for errors and find a plausible correction. A decoder may provide a decoder confidence score (DCS) to gauge its success. We adopt a swim distance DCS, computed from the shortest path between syndrome clusters. By contracting tensor networks, we compare its performance under phenomenological noise to the well-known complementary gap and find that both reliably estimate the logical error probability (LEP) in a decoding window. We explore ways to use this to mitigate the LEP in entire logical circuits. For shallow circuits, we just abort if any decoding window produces an exceptionally low DCS: for a distance-13 surface code under circuit-level noise, rejecting a mere 0.1% of possible DCS values improves the entire circuit's LEP by more than 5 orders of magnitude. For larger algorithms comprising up to billions of windows, DCS-based rejection remains effective for enhancing observable estimation. Moreover, one can use the DCS to assign each circuit's output a unique LEP, and use it as a basis for maximum likelihood estimation. This can reduce the effects of noise by an order of magnitude at no quantum cost; methods can be combined for further improvements. |
||
| Strictly local Union-Find | QIP 2024 | Tim Chan |
| Looped Pipelines Enabling Effective 3D Qubit Lattices in a Strictly 2D Device | QIP 2023 | Zhenyu Cai, Adam Siegel |
| Adaptive surface code for quantum error correction on a defective lattice | QIP 2023 | Adam Siegel, Armands Strikis, Thomas Flatters |
| Multicore quantum computing | QIP 2023 | Hamza Jnane, Brennan Undseth, Zhenyu Cai, Balint Koczor |
| Mitigating Coherent Noise Using Pauli Conjugation | QIP 2020 | Zhenyu Cai, Xiaosi Xu |
| A Silicon Surface Code Architecture Resilient Against Leakage Errors | QIP 2020 | Zhenyu Cai, Michael Fogarty, Simon Schaal, Sofia Patomaki, John Morton |
| Variational-State Quantum Metrology | QIP 2020 | Balint Koczor, Suguru Endo, Tyson Jones, Yuichiro Matsuzaki |
| QuESTlink: a high-performance Mathematica simulator of quantum circuits | QIP 2020 | Tyson Jones |
| A high threshold code for modular hardware with asymmetric noise | QIP 2019 | Xiaosi Xu, Qi Zhao, Xiao Yuan |
Collaborators
| Co-author | Joint talks |
|---|---|
| Zhenyu Cai | 4 |
| Adam Siegel | 2 |
| Balint Koczor | 2 |
| Tim Chan | 2 |
| Tyson Jones | 2 |
| Xiaosi Xu | 2 |
| Andreas Reiserer | 1 |
| Armands Strikis | 1 |
| Brennan Undseth | 1 |
| Daniel Twitchen | 1 |
| Hamza Jnane | 1 |
| Jacob Bakermans | 1 |
| John Morton | 1 |
| Maria Dincă | 1 |
| Matthew Markham | 1 |
| Michael Fogarty | 1 |
| Naomi Nickerson | 1 |
| Norbert Kalb | 1 |
| Peter Humphreys | 1 |
| Qi Zhao | 1 |