17
collaborators
2021–2026
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
1 Talk
| Title | Conference | Type | Co-authors |
|---|---|---|---|
| Space–Time Efficient Transversal Architectures for Large-Scale Quantum Computation | TQC 2026 | regular | Hengyun Zhou, ▸Casey Duckering, Dolev Bluvstein, Madelyn Cain, Aleksander Kubica, Sheng-Tao Wang, Mikhail Lukin |
We present a low-overhead architecture that supports the layout and resource estimation of large-scale fault-tolerant quantum algorithms. Utilizing recent advances in fault tolerance with transversal gate operations, this architecture achieves a run time speed-up on the order of the code distance d, which we find directly translates to run time improvements of large-scale quantum algorithms. Our architecture consists of functional building blocks of key algorithmic subroutines, including magic state factories, quantum arithmetic units, and quantum look-up tables. These building blocks are implemented using efficient transversal operations, and we design space-time-efficient versions of them that minimize interaction distance, thereby reducing atom move times and minimizing the volume for correlated decoding. We further propose models to estimate their logical error performance. We perform resource estimation for a large-scale implementation of Shor's factoring algorithm, one of the prototypical benchmarks for large-scale quantum algorithms, on dynamically reconfigurable neutral atom arrays, finding that 2048-bit RSA factoring can be executed with 19 million qubits in 5.6 days, for 1 ms QEC cycle times. This represents close to 50x speed-up of the run-time compared to existing estimates with similar assumptions, with no increase in space footprint, achieving a genuine reduction of the space-time volume required for error-corrected quantum computation, and bringing the runtime of large-scale algorithms on emerging platforms into a practical regime. |
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5 Posters
| Title | Conference | Co-authors |
|---|---|---|
| Resource Analysis of Low-Overhead Transversal Architectures for Reconfigurable Atom Arrays | QIP 2026 | Harry Zhou, ▸Casey Duckering, Dolev Bluvstein, Madelyn Cain, Aleksander Kubica, Sheng-Tao Wang, Mikhail Lukin |
| Fast correlated decoding of transversal logical algorithms | TQC 2026 | Madelyn Cain, Dolev Bluvstein, Shouzhen Gu, Nishad Maskara, Marcin Kalinowski, Alexandra A. Geim, Aleksander Kubica, Mikhail Lukin, Hengyun Zhou |
Quantum error correction (QEC) is required for large-scale computation, but incurs a significant resource overhead. Recent advances have shown that by jointly decoding logical qubits in algorithms composed of transversal gates, the number of syndrome extraction rounds can be reduced by a factor of the code distance d, at the cost of increased classical decoding complexity. Here, we reformulate the problem of decoding transversal circuits by directly decoding relevant logical operator products as they propagate through the circuit. This procedure transforms the decoding task into one closely resembling that of a single-qubit memory propagating through time. The resulting approach leads to fast decoding and reduced problem size while maintaining high performance. Focusing on the surface code, we prove that this method enables fault-tolerant decoding with minimum-weight perfect matching, and benchmark its performance on example circuits including magic state distillation. We find that the threshold is comparable to that of a single-qubit memory, and that the total decoding run time can be, in fact, less than that of conventional lattice surgery. Our approach enables fast correlated decoding, providing a pathway to directly extend single-qubit QEC techniques to transversal algorithms. |
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| Transversal Algorithmic Fault Tolerance and Correlated Decoding for Fast Quantum Computing | QIP 2025 | Hengyun Zhou, Madelyn Cain, Dolev Bluvstein, Nishad Maskara, Casey Duckering, Hong-Ye Hu, Nadine Meister, Juan Pablo Bonilla Ataides, Arthur Jaffe, Sheng-Tao Wang, Aleksander Kubica, Mikhail Lukin |
| Correlated decoding of logical algorithms with transversal gates | TQC 2024 | Madelyn Cain, Hengyun Zhou, Nadine Meister, Juan Pablo Bonilla Ataides, Arthur Jaffe, Dolev Bluvstein, Mikhail Lukin |
| Analyzing the barren plateau phenomenon in training quantum neural networks with the ZX-calculus | TQC 2021 | Xiao-Shan Gao |
Collaborators
| Co-author | Joint talks |
|---|---|
| Dolev Bluvstein | 5 |
| Madelyn Cain | 5 |
| Mikhail Lukin | 5 |
| Aleksander Kubica | 4 |
| Hengyun Zhou | 4 |
| Casey Duckering | 3 |
| Sheng-Tao Wang | 3 |
| Arthur Jaffe | 2 |
| Juan Pablo Bonilla Ataides | 2 |
| Nadine Meister | 2 |
| Nishad Maskara | 2 |
| Alexandra A. Geim | 1 |
| Harry Zhou | 1 |
| Hong-Ye Hu | 1 |
| Marcin Kalinowski | 1 |
| Shouzhen Gu | 1 |
| Xiao-Shan Gao | 1 |