21
collaborators
2024–2026
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
2 Talks
| Title | Conference | Type | Co-authors |
|---|---|---|---|
| Efficient magic-state generation with quantum tricycle codes | TQC 2026 | regular | Varun Menon, ▸Rohan Mehta, Andi Gu, Daniel Bochen Tan, Mikhail Lukin |
The preparation of high-fidelity non-Clifford (magic) states is an essential subroutine for universal quantum computation, but imposes substantial space-time overhead. Magic state factories based on high rate and distance quantum low-density parity check (LDPC) codes equipped with transversal non-Clifford gates can potentially reduce these overheads significantly, by circumventing the need for multiple rounds of distillation and by producing a large number of magic states in a single code-block. As a step towards realizing efficient, fault-tolerant magic state production, we introduce a class of finite block-length quantum LDPC codes which we name tricycle codes, generalizing the well-known bicycle codes to three homological dimensions. These codes can support constant-depth physical circuits that implement logical $CCZ$ gates between three code blocks. To construct these constant-depth $CCZ$ circuits, we develop new analytical and numerical techniques that apply to a broad class of three-dimensional homological and balanced product codes. We further show that tricycle codes enable single-shot state-preparation and error correction, leading to a highly efficient magic-state generation protocol. Numerical simulations of specific codes confirm robust performance under circuit-level noise, demonstrating a high circuit-noise threshold of $>0.5\%$. With modest post-selection, certain tricycle codes of block-lengths of only $50-100$ qubits are shown to achieve logical error-rates of $6\times 10^{-10}$ or lower. Finally, we construct optimal depth syndrome extraction circuits for tricycle codes and present a protocol for implementing them efficiently on a reconfigurable neutral atom platform. |
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| Fast and Parallelizable Logical Computation with Homological Product Codes | QIP 2025 | regular | ▸Qian Xu, Hengyun Zhou, Guo Zheng, Dolev Bluvstein, Mikhail Lukin, Liang Jiang |
3 Posters
| Title | Conference | Co-authors |
|---|---|---|
| Transversal Algorithmic Fault Tolerance and Correlated Decoding for Fast Quantum Computing | QIP 2025 | Hengyun Zhou, Chen Zhao, Madelyn Cain, Dolev Bluvstein, Nishad Maskara, Casey Duckering, Hong-Ye Hu, Nadine Meister, Arthur Jaffe, Sheng-Tao Wang, Aleksander Kubica, Mikhail Lukin |
| Fast quantum interconnects via constant-rate entanglement distillation | TQC 2024 | Christopher Pattison, Gefen Baranes, Mikhail Lukin, Hengyun Zhou |
| Correlated decoding of logical algorithms with transversal gates | TQC 2024 | Madelyn Cain, Chen Zhao, Hengyun Zhou, Nadine Meister, Arthur Jaffe, Dolev Bluvstein, Mikhail Lukin |
Collaborators
| Co-author | Joint talks |
|---|---|
| Mikhail Lukin | 5 |
| Hengyun Zhou | 4 |
| Dolev Bluvstein | 3 |
| Arthur Jaffe | 2 |
| Chen Zhao | 2 |
| Madelyn Cain | 2 |
| Nadine Meister | 2 |
| Aleksander Kubica | 1 |
| Andi Gu | 1 |
| Casey Duckering | 1 |
| Christopher Pattison | 1 |
| Daniel Bochen Tan | 1 |
| Gefen Baranes | 1 |
| Guo Zheng | 1 |
| Hong-Ye Hu | 1 |
| Liang Jiang | 1 |
| Nishad Maskara | 1 |
| Qian Xu | 1 |
| Rohan Mehta | 1 |
| Sheng-Tao Wang | 1 |