1
program role
15
collaborators
2019–2026
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
2 Talks
| Title | Conference | Type | Co-authors |
|---|---|---|---|
| A polynomial-time classical algorithm for noisy quantum circuits | QIP 2025 | regular | ▸Thomas Schuster, Chao Yin, Norman Yao |
| A polynomial-time classical algorithm for noisy random circuit sampling | QIP 2023 | plenary_long | ▸Dorit Aharonov, Zeph Landau, Yunchao Liu, Umesh Vazirani |
5 Posters
| Title | Conference | Co-authors |
|---|---|---|
| Measuring Non-Gaussian Magic in Fermions: Convolution, Entropy, and the Violation of Wick’s Theorem and the Matchgate Identity | QIP 2026 | ▸Luke Coffman, Graeme Smith |
| High-Distance Error-Correcting Codes for Fermion-to-Qubit Mappings in 2D and 3D | TQC 2026 | Ruby Wei, Aqua Chung, Luke Coffman, Su-Kuan Chu |
Quantum simulation of fermionic systems is a leading application of quantum computers. One promising approach is to represent fermions with qubits via fermion-to-qubit mappings. In this work, we present high-distance fermion-to-qubit stabilizer codes for simulating 2D and 3D fermionic systems. These codes achieve arbitrarily large code distances while keeping stabilizer weights constant. They also preserve locality by mapping local fermionic operators to local qubit operators at any fixed distance. Notably, our 3D construction is the first to simultaneously achieve high distance, constant stabilizer weights, and locality preservation. Our construction is based on concatenating a small-distance 2D or 3D fermion-to-qubit code with a high-distance fermionic color code. Together, these features provide a robust and scalable pathway to quantum simulation of fermionic systems. |
||
| Arbitrary Polynomial Separations in Trainable Quantum Machine Learning | QIP 2024 | Eric Anschuetz |
| Arbitrary Polynomial Separations in Trainable Quantum Machine Learning | TQC 2024 | Eric Anschuetz |
| Efficient Representation of Topologically Ordered States with Restricted Boltzmann Machines | QIP 2019 | Sirui Lu, Luming Duan |
Committee service
| Conference | Committee | Position | Title |
|---|---|---|---|
| QIP 2024 | program | member | — |
Collaborators
| Co-author | Joint talks |
|---|---|
| Eric Anschuetz | 2 |
| Luke Coffman | 2 |
| Aqua Chung | 1 |
| Chao Yin | 1 |
| Dorit Aharonov | 1 |
| Graeme Smith | 1 |
| Luming Duan | 1 |
| Norman Yao | 1 |
| Ruby Wei | 1 |
| Sirui Lu | 1 |
| Su-Kuan Chu | 1 |
| Thomas Schuster | 1 |
| Umesh Vazirani | 1 |
| Yunchao Liu | 1 |
| Zeph Landau | 1 |