The 2nd Quantum Technology Frontier Summit in 2026
Conference Introduction
✦ QTFS 2026
2nd Quantum Technology
Frontier Summit
📅 Oct 16–18, 2026 | 📍 Hangzhou, China | 🏛️ Zhejiang Radio & TV Mingdu Hotel
By the Qiantang River · Painting a grand blueprint from outstanding principles to widespread applications
To further promote in‑depth exchange and collaborative innovation in quantum technology, this conference will be held in Hangzhou, Zhejiang on October 16–18, 2026 as the “2026 2nd Quantum Technology Frontier Summit”. The event will continue to focus on core areas such as quantum computing, quantum error correction, quantum networks and communications, quantum precision measurement, quantum materials and devices, and quantum–AI cross‑disciplinary research, aiming to build a high‑level, open, and international platform for academic and industrial collaboration. We cordially invite experts, scholars, young talents, and industry pioneers from around the world to gather by the Qiantang River and jointly envision the grand blueprint for quantum technology from “outstanding principles” to “widespread applications”.
📋 Schedule
📌 DAY 1 Registration Oct 16, 9:00–23:00
📌 DAY 2 Conference Opening Oct 17
Opening · Plenaries · Parallel Sessions · Banquet
📌 DAY 3 Conference Closing Oct 18
Parallel Sessions · Closing Ceremony
🔬 Visit Lab Visit Oct 18, 13:00–15:00
ZJU Hangzhou International Science and Technology Innovation Center – Zhejiang Provincial Integrated Circuit Innovation Platform
⚛ Presidium Presidium
Yasuhiko Arakawa
Yasuhiko Arakawa
The University of Tokyo
Member, Japan Academy of Engineering
Yu Dapeng
Yu Dapeng
Shenzhen International Quantum Research Institute
Academician, CAS
Lu Jun
Lu Jun
Quantum Technology Yangtze River Delta Industrial Innovation Center
Academician, CAE
Yang Deren
Yang Deren
Zhejiang University
Academician, CAS
Chang Kai
Chang Kai
Zhejiang University
Academician, CAS
Lin Haiqing
Lin Haiqing
Zhejiang University
Academician, CAS
Wu Hanming
Wu Hanming
Zhejiang University
Academician, CAE
Alexey Kavokin
Alexey Kavokin
Moscow Institute of Physics and Technology
Director of the Abrikosov Center for Theoretical Physics
◈ Executive Chair Executive Chair
Jin Chaoyuan
Jin Chaoyuan
Zhejiang University
Shi Baosen
Shi Baosen
University of Science and Technology of China
⚛ Co-Chairs Co-Chairs
Cai Dingping
City University of Hong Kong
Chen Jingbiao
Peking University
Guo Guoping
USTC
Jin Xianmin
Shanghai Jiao Tong University
Liu Wuming
Institute of Physics, CAS
Lou Senyue
Ningbo University
Lu Zhongyi
Renmin University of China
Peng Liangyou
Peking University
Peng Xinhua
USTC
Quan Wei
Beihang University
Wang Shuming
Nanjing University
Weng Wenkang
Huawei Technologies
Yuan Zhiliang
Beijing Academy of Quantum Information Sciences
Zhang Jing
Xi'an Jiaotong University
⚛ Session Co-Chairs Session Co-Chairs
Cao Zizheng
Zhejiang University
Gu Yongjian
Ocean University of China
Liu Zuoye
Lanzhou University
Xia Keyu
Nanjing University
Xiang Shuiying
Xidian University
Xiao Yanhong
Fudan University
Xie Zhenda
Nanjing University
Xiong Shijing
Zhejiang University
Xiu Xiaoming
Bohai University
Xu Haitian
Nanjing University
Xue Fei
Zhejiang University
Zhang Yuan
Zhengzhou University
Zhou Rigui
Shanghai Maritime University
Zhu Huihui
ZJU Hangzhou International Science and Technology Innovation Center
◈ Co‑organizers
ZJU Hangzhou International Science and Technology Innovation Center ZJU School of Physics ZJU School of Integrated Circuits
◈ Supporting
Shenzhen Quantum Information Society
Micro‑Optics Committee, Chinese Optical Society
Integrated Circuit Institute, CCID
Industrial Ecology Committee, Quantum Technology Innovation Alliance
◈ Sponsors
🎤 Plenary Talks
Yasuhiko Arakawa
Yasuhiko Arakawa
The University of Tokyo · Member, Japan Academy of Engineering
Title: Advances in quantum dot photonics: From the dawn to practical applications
Yu Dapeng
Yu Dapeng
Shenzhen International Quantum Research Institute · Academician, CAS
Title: Recent progress in solid‑state quantum computing at Shenzhen International Quantum Research Institute
Alexey Kavokin
Alexey Kavokin
Moscow Institute of Physics and Technology · Director of the Abrikosov Center for Theoretical Physics
Title: 25‑qubit prototype of a polariton quantum processor
Lu Jun
Lu Jun
Quantum Technology Yangtze River Delta Industrial Innovation Center · Academician, CAE
Title: Supporting quantum technology industrial system and high‑quality development with higher‑level electronic industry and education systems
Lu Chaoyang
Lu Chaoyang
University of Science and Technology of China
Title: Quantum computing with atoms and photons
Chang Kai
Chang Kai
Zhejiang University · Academician, CAS
Title: TBA
Wu Hanming
Wu Hanming
Zhejiang University · Academician, CAE
Title: Zhejiang University 12‑inch CMOS advanced photonic and quantum manufacturing technology
📌 Topics Topics
Session 1
01 Quantum Computing and Quantum Simulation
Focusing on quantum processors, error correction codes, and simulation algorithms. Breakthroughs in hundred‑qubit processors across multiple platforms, with error correction moving toward experimental demonstration. The market is estimated to reach hundreds of billions of dollars, initially empowering finance, drug discovery, and materials design. Future directions include AI integration and quantum machine learning, facilitating fundamental research in chemical reactions and high‑temperature superconductivity.
Session 2
02 Quantum Communication and Quantum Networks
Covering quantum key distribution, repeaters, and satellite‑ground networks. Satellite‑ground networks have been established, with direct communication reaching kilometre‑scale. The market is driven by both policy and demand, with telecom operators and financial institutions expanding capacity. Future efforts will build a quantum internet, achieving intercity backbone interconnection and satellite‑ground networking to secure government, financial, and defence communications.
Session 3
03 Quantum Precision Measurement and Quantum Sensing
Based on entanglement, squeezed states, and atom interferometry, applied to navigation, time‑frequency, and bio‑imaging. The market is expected to reach several hundred million dollars by 2026. Future developments will move toward chip‑scale, low‑cost solutions, expanding into unmanned‑system navigation, underground resource exploration, and brain‑magnetic‑field detection.
Session 4
04 Quantum Optics and Quantum Information Processing
Investigating quantum effects of light‑matter interactions, providing single‑photon and entangled‑photon sources. Industrial demand for devices is growing. Future focus on integrated quantum photonic chips and broadband network nodes, promoting cross‑disciplinary research between quantum optics and topological photonics, laying the foundation for large‑scale quantum information processing.
Session 5
05 Novel Quantum Materials, Devices and Integration Technologies
Focusing on topological materials, superconductors, 2D materials, and micro‑nano integration. As the upstream of the industry chain, specialized materials and equipment will see growth. Future will explore room‑temperature materials, CMOS‑compatible processes, and 3D integrated chips, facilitating the transition of quantum technologies from laboratory to large‑scale commercial use.
★ Special Forum
06 Young Scientists Forum
A platform for young scholars under 45 to present innovative achievements and exchange frontier ideas, fostering the next generation of talent in quantum technology.

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