
معرفی
Professor Tom Stace is a Professor in the School of Mathematics and Physics at the University of Queensland and serves as Deputy Director of the ARC Centre of Excellence for Engineered Quantum Systems (EQUS). His research focuses on quantum error correction, quantum device physics, and precision quantum sensing, with applications in building practical quantum technologies.
Professor Stace completed his PhD at the Cavendish Laboratory, University of Cambridge, UK, on quantum computing. He conducted postdoctoral research at the Department of Applied Mathematics and Theoretical Physics at Cambridge and Queens' College, Cambridge. Since 2006, he has held various ARC research fellowships, most recently an ARC Future Fellowship (2015-2019).
Professor Stace's research spans two primary areas: Quantum Error Correction and Quantum Devices. In quantum error correction, his group develops theoretical frameworks including topological codes, holographic codes, and foliated codes to enable large-scale quantum computers. In quantum devices, his research focuses on solid-state and atomic systems for qubits, circulators, microwave systems, and quantum sensors. His work has significant implications for quantum computing, precision metrology, and quantum sensing applications.
Analysis of Professor Stace's recent publications reveals a strong focus on practical implementations of quantum error correction codes, particularly tensor network approaches, and the development of superconducting devices including circulators and qubits. His research bridges theoretical quantum information science with experimental quantum engineering, with increasing emphasis on machine learning applications for quantum systems and precision measurement techniques.
Professor Stace has received significant recognition for his research:
- ARC Future Fellowship (2015-2019)
- Inventor on 4 provisional patents
- Deputy Director of ARC Centre of Excellence for Engineered Quantum Systems
Professor Stace actively supervises PhD students in quantum error correction and quantum device physics. His research has been supported by multiple ARC grants including the ARC Centre of Excellence for Engineered Quantum Systems (EQuS), Cluster-State Quantum Error-Correction Based on AdS/CFT, and Quantum-Assisted Sensing. He has also secured international funding from organizations including the United States Asian Office of Aerospace Research and Development.
Professor Stace leads research within the ARC Centre of Excellence for Engineered Quantum Systems (EQUS), collaborating with researchers across Australia and internationally. His group works on both theoretical frameworks for quantum error correction and practical implementations of quantum devices, particularly superconducting circuits and systems that break time-reversal symmetry for applications in quantum computing and sensing.

