Prof. Dr. Haiqiang Ma | Quantum Information | Best Researcher Award
Beijing University of Posts and Telecommunications, China
Professor Haiqiang Ma is a distinguished academic and researcher, serving as a professor and doctoral supervisor in the field of quantum science. He is a prominent member of the “Quantum Information and Quantum Optics” research group and has been contributing to scientific innovation and teaching at the School of Physical Science and Technology, Beijing University of Posts and Telecommunications since 2007.
🧑🔬 Profile
🏆 Best Researcher Award
With an outstanding record in quantum research, significant international publications, and contributions to technological innovation including 10 invention patents (8 granted), Professor Haiqiang Ma is highly suitable for the Best Researcher Award. His sustained academic excellence and scientific leadership make him a deserving candidate.
🎓 Education
Professor Ma earned his doctorate in March 2007 from the prestigious Institute of Physics, Chinese Academy of Sciences. His academic foundation is rooted in rigorous research training and theoretical depth in physics and quantum optics.
💼 Experience
With over 17 years of academic experience, Professor Ma has held a long-term faculty position and briefly visited the University of Waterloo in Canada (Dec 2019–Mar 2020). His teaching, mentoring, and research supervision reflect his commitment to the development of future scientists and the global academic community.
🔬 Research Interest
His research primarily revolves around quantum information science, quantum optics, and photonic systems. His work contributes to the foundational and applied aspects of quantum communication and computation.
📚 Publication
Professor Ma has authored more than 100 peer-reviewed SCI papers in top-tier international journals, including Optica, Physical Review A, Optics Express, Optics Letters, Journal of the Optical Society of America B, and Applied Optics.
📝 publication:
“Bright Heralded Single-Photon Source Saturating Theoretical Single-photon Purity”
“Reference-Frame-Independent Asynchronous Measurement-Device-Independent Quantum Key Distribution”
“Finite-key interfering-or-not-interfering quantum key distribution without intensity modulation”