| 报告题目 | Superconducting Electronics for Qubit Control and Microwave Quantum State Preparation |
| 报告人 | Zhirong Lin 研究员 |
| 报告人单位 | Shanghai Institute of Microsystem and Information Technology, Chinese Academy of Sciences |
| 报告时间 | 2025-11-07 (周五) 10:00 |
| 报告地点 | 中科大上海研究院1号楼3楼报告厅(HFNL科研楼南楼A712、科大物质楼B1102同步视频) |
| 主办单位 | 中国科学院量子信息与量子科技创新研究院 |
| 报告介绍 | 报告摘要:Superconducting circuits have demonstrated significant potential as a platform for building large-scale quantum processors. However, scaling superconducting quantum circuits to thousands of qubits within a dilution refrigerator presents considerable challenges. One of the key obstacles is the reliance on classical microwave-based control, which necessitates substantial hardware overhead at room temperature for signal generation and transmission. In this presentation, we introduce a millikelvin control technique for superconducting qubits that leverages single flux quantum (SFQ) circuitry. By implementing this technique, we have achieved a single-qubit fidelity of 99.9%, offering a promising solution to the challenges of scalability. Additionally, I will also highlight our latest research progress in microwave quantum optics. We demonstrate the rapid generation of Schrödinger cat states using a Kerr-tunable SNAIL resonator and show how to precisely control microwave field with tunable collective quantum states in waveguide-coupled Bragg and anti-Bragg superatoms. |
