15
collaborators
2024–2026
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
1 Talk
| Title | Conference | Type | Co-authors |
|---|---|---|---|
| Evidence that the Quantum Approximate Optimization Algorithm Optimizes the Sherrington-Kirkpatrick Model Efficiently in the Average Case | QIP 2026 | regular | ▸Sami Boulebnane, Abid A. Khan, Jeffrey Larson, Dylan Herman, Ruslan Shaydulin, Marco Pistoia |
The Sherrington-Kirkpatrick (SK) model serves as a foundational framework for understanding disordered systems. The Quantum Approximate Optimization Algorithm (QAOA) is a quantum optimization algorithm whose performance monotonically improves with its depth $p$. In this work, we introduce a new equivalence between the task of evaluating the energy of QAOA applied to the SK model in the infinite-size limit and the task of simulating a spin-boson system, which we show can be done with modest cost using matrix product states. Using this equivalence, we optimize QAOA parameters and provide numerical evidence that QAOA obtains a $(1-\epsilon)$ approximation to the optimal energy with circuit depth $\mathcal{O}(n/\epsilon^{\infiniteSizeLimitOneOverEta})$ in the average case, with $\varepsilon\lesssim\infiniteSizeLastpError\%$ at $p=\infiniteSizeLastp$. We then use these optimized QAOA parameters to evaluate the QAOA energy for finite-sized instances with up to $30$ qubits and find convergence to the ground state consistent with the infinite-size limit prediction. Our results provide strong numerical evidence that QAOA can efficiently approximate the ground state of the SK model in the average case. |
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3 Posters
| Title | Conference | Co-authors |
|---|---|---|
| Certified Randomness implies Secure Classical Position-Verification | QIP 2025 | Omar Amer, Kauhsik Chakraborty, David Zhiyang Cui, Fatih Kaleoglu, Charles Ci Wen Lim, Marco Pistoia |
| Classical algorithm for simulating experimental Gaussian boson sampling | QIP 2024 | Changhun Oh, Yuri Alexeev, Bill Fefferman, Liang Jiang |
| Classical algorithm for simulating experimental Gaussian boson sampling | TQC 2024 | Changhun Oh, Yuri Alexeev, Bill Fefferman, Liang Jiang |
Collaborators
| Co-author | Joint talks |
|---|---|
| Bill Fefferman | 2 |
| Changhun Oh | 2 |
| Liang Jiang | 2 |
| Marco Pistoia | 2 |
| Yuri Alexeev | 2 |
| Abid A. Khan | 1 |
| Charles Ci Wen Lim | 1 |
| David Zhiyang Cui | 1 |
| Dylan Herman | 1 |
| Fatih Kaleoglu | 1 |
| Jeffrey Larson | 1 |
| Kauhsik Chakraborty | 1 |
| Omar Amer | 1 |
| Ruslan Shaydulin | 1 |
| Sami Boulebnane | 1 |