19
collaborators
2021–2026
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
6 Posters
| Title | Conference | Co-authors |
|---|---|---|
| Simultaneous Estimation of Nonlinear Functionals of a Quantum State | QIP 2026 | Kean Chen, Qisheng Wang, Zhicheng Zhang |
| Near-optimal simultaneous estimation of functionals of quantum states | TQC 2026 | Xiao Shi, Jiyu Jiang, Xian Wu, Jingu Xie, Hongshun Yao, Xin Wang, Kean Chen, Qisheng Wang, Zhicheng Zhang |
Estimating nonlinear properties of quantum states, particularly observable-weighted moments $\mathrm{Tr}(\mathcal{O}\rho^k)$, is a central task in quantum information science. In this work, we present a unified framework establishing the optimal sample complexity for this task and a resource-efficient protocol for its implementation. Theoretically, we prove that $\tilde{\Theta}(k)$ samples of an $m$-qubit state $\rho$ are sufficient and necessary to \textit{simultaneously} estimate the full hierarchy of moments $\mathrm{Tr}(\mathcal{O}\rho), \dots, \mathrm{Tr}(\mathcal{O}\rho^k)$. This reveals that estimating the entire hierarchy is asymptotically as efficient as estimating the single highest-order term. To realize this, we introduce a circuit architecture leveraging qubit reuse that requires only $2m+1$ physical qubits and $\mathcal{O}(k)$ depth. This approach achieves the near-optimal sample complexity of $\mathcal{O}(k \log k / \varepsilon^2)$ with significantly reduced hardware overhead. We demonstrate the framework's utility by bounding maximum eigenvalues, performing virtual cooling on the Heisenberg model, and experimentally measuring higher-order Rényi entropies on a superconducting processor. |
||
| Parameterized quantum circuit approximation for smooth functions | QIP 2024 | Qiuhao Chen, Yuling Jiao, Yinan Li, Xiliang Lu, Xin Wang, Jerry Zhijian Yang |
| Non-asymptotic Approximation Error Bounds of Parametrized Quantum Circuits | TQC 2024 | Qiuhao Chen, Yuling Jiao, Yinan Li, Xiliang Lu, Xin Wang, Zhijian Yang |
| Quantum linear algebra is all you need for Transformer architectures | TQC 2024 | Naixu Guo, Aman Agrawal, Patrick Rebentrost |
| Analysis of Lackadaisical Quantum Walks | QIP 2021 | Peter Høyer |
Collaborators
| Co-author | Joint talks |
|---|---|
| Xin Wang | 3 |
| Kean Chen | 2 |
| Qisheng Wang | 2 |
| Qiuhao Chen | 2 |
| Xiliang Lu | 2 |
| Yinan Li | 2 |
| Yuling Jiao | 2 |
| Zhicheng Zhang | 2 |
| Aman Agrawal | 1 |
| Hongshun Yao | 1 |
| Jerry Zhijian Yang | 1 |
| Jingu Xie | 1 |
| Jiyu Jiang | 1 |
| Naixu Guo | 1 |
| Patrick Rebentrost | 1 |
| Peter Høyer | 1 |
| Xian Wu | 1 |
| Xiao Shi | 1 |
| Zhijian Yang | 1 |