Bulletin of Chinese Academy of Sciences (Chinese Version)
Keywords
quantum science and technology; quality infrastructure; collaborative innovation
Document Type
Policy & Management Research
Abstract
Against the backdrop of intensified global competition in quantum information, the synergistic effectiveness of quality infrastructure, as a basic system supporting industrial innovation, is directly related to the industrialization process of quantum technology. At present, subdivided industries such as quantum computing, quantum communication, and quantum precision measurement have begun to take shape, and key technologies and core products have entered a critical period of transition from scientific and technological innovation results to industrialization, and the demand for quality infrastructure is becoming increasingly prominent. This study explores the co-evolution mechanism of quality infrastructure driven by industrial innovation and analyzes the coupling effect of quality infrastructure on industrial innovation. Identified targeted issues in the quality infrastructure construction of quantum computing, quantum communication, and quantum precision measurement through the survey. It proposes targeted pathways for the collaborative innovation of quality infrastructure and industry from multiple dimensions, including standard leadership, inspection and certification assurance, metrological support, and collaborative problem-solving models.
First page
1802
Last Page
1812
Language
Chinese
Publisher
Bulletin of Chinese Academy of Sciences
References
1. Smith F L. Quantum technology hype and national security. Security Dialogue, 2020, 51(5): 465-481.
2. Baitulmal A M, Adem N. Why should and how can quantum technologies be leveraged at national levels?. IET Quantum Communication, 2023, 4(2): 96-101.
3. 蒋家东. 国家质量基础设施理论与实证. 北京: 北京大学出版社, 2020: 1-3. Jiang J D. National Quality Infrastructure: Theory and Empirical Research. Bulletin of Peking University Press, 2020: 1-3. (in Chinese)
4. 方向, 于连超. 国家质量政策——指导原则、技术指南和实践工具. 北京: 中国标准出版社, 2019: 5-16. Fang X, Yu L C. National Quality Policy: Guiding Principles, Technical Guidelines and Practical Tools. Beijing: China Standards Press, 2019: 5-16. (in Chinese)
5. Torr G. A viewpoint on innovation-based industrial competitiveness. Measurement and Control, 2013, 46(5): 154-156.
6. Chen M, Wang M, Yang Z G, et al. Quality infrastructure for the new material industry. Strategic Study of CAE, 2020, 22(5): 137-143.
7. Jenet A. Standards4Quantum: Making Quantum Technology Ready for Industry. Luxembourg: Publications Office of the European Union, 2020.
8. Quantentechnologie: Neue Roadmap hilft Normen auf die Sprünge. Berlin: CEN and CENELEC, 2023: 12-23.
9. Zhai Y J, Wu S G, Ma D, et al. Development of a cryogen-free dilution refrigerator for superconducting quantum computing. IEEE Transactions on Applied Superconductivity, 2024, 34(1): 1-5.
10. Li N, Li Y H, Fan D, et al. Optical transmission of microwave control signal towards large-scale superconducting quantum computing. Optics Express, 2024, 32(3): 3989-3996.
11. 李硕, 李欣欣, 张雪松, 等. 国外量子信息战略布局分析及启示. 信息安全与通信保密, 2024, (5): 11-20. Li S, Li X X, Zhang X S, et al. Analysis and implications of foreign quantum information strategic layouts. Information Security and Communications Privacy, 2024, (5): 11-20. (in Chinese)
12. Grygar J, Hloušek J, Fiurášek J, et al. Quantum non-Gaussianity certification of photon number-resolving detectors. Optics Express, 2022, 30(18): 33097-33111.
13. Li J, Cui X Y, Jia Z P, et al. A strontium lattice clock with both stability and uncertainty below 5×10-18. Metrologia, 2024, 61: 015006.
14. Lei G Y, Yuan Z Q, Yue Z Q, et al. Suppression of quantum sensor noise using Kalman filter for improved sensitivity of single-beam atomic magnetometers. Advanced Quantum Technologies, 2024, 7: 2300391.
15. 王文. 全球科技竞争进入“高科技冷战时代”. 中国科学院院刊, 2024, 39(1): 112-120. Wang W. Global technological competition enters high-tech cold war era. Bulletin of Chinese Academy of Sciences, 2024, 39(1): 112-120. (in Chinese)
16. Becker C K U, Tcholtchev N, Gheorghe-Pop I D, et al. Towards a Quantum Benchmark Suite with Standardized KPIs. Honolulu: IEEE, 2022: 160-163.
17. Eisert J, Hangleiter D, Walk N, et al. Quantum certification and benchmarking. Nature Reviews Physics, 2019, 2: 382-390.
18. Lenhart G. Standardization of quantum technologies and QKD activities within ETSI (Conference Presentation). Quantum Optics, 2016, doi: org/10.1117/12.2229520.
Recommended Citation
ZHANG, Leilei; KANG, Jian; and HE, Zhou
(2024)
"Quality infrastructure empowering collaborative innovation in quantum information industry: Mechanism, demand, and path,"
Bulletin of Chinese Academy of Sciences (Chinese Version): Vol. 40
:
Iss.
10
, Article 14.
DOI: https://doi.org/10.3724/j.issn.1000-3045.20250329003
Available at:
https://bulletinofcas.researchcommons.org/journal/vol40/iss10/14