Driving the Hon Hai Technology Group through scientific research
Proactive Planning,
Cutting-Edge Technology
Ahead in the world of technology

A key step in Hon Hai Technology Group's F3.0 transformation and its move toward new industrial development goals, this initiative is dedicated to forward-looking technology research over the next 3 to 7 years to strengthen the Group's capabilities in technological and product innovation, and enhance its core competitiveness.
Centers
Experts from diverse fields have come together with a shared vision to advance scientific research and technological breakthroughs. The focus lies in core areas such as artificial intelligence, quantum computing, and semiconductor technology, working collaboratively to build a research hub that fosters interdisciplinary cooperation.

Publications
Tunable frequency conversion and comb generation with a superconducting artificial atom
Adaptable Route to Fast Coherent State Transport via Bang-Bang-Bang Protocols
Characterizing Space Requirements for Quantum Computations via Signaling Conditions
Optimizing quantum chemistry simulations with a hybrid quantization scheme

// Driving the Hon Hai Technology Group through scientific research

Hon Hai Research Institute's SNOVA Post-Quantum Cryptography Algorithm Advances to NIST Final Round

Quobly and Hon Hai Research Institute release an open-source toolbox to explore Quantum Phase Estimation for fault-tolerant quantum computing

Hon Hai Technology Group (Foxconn) Deepens Work In LEO Satellite Communications With Second Mission Into Space

Quantum Research Center Popular Science Talk:A story in computation
Speaker: Dr. Hakop PashayanWhen we think of computation, we usually picture servers humming in massive data centers or the silicon chips embedded in our smartphones. We view computation as a

Quantum Research Center Popular Science: The Geometric Contour of Data—From Topological Data Analysis to the Exponential Advantage of Quantum Algorithms
Speaker: Dr. Kuo-Chin ChenI. Introduction: A Geometric Perspective Breaking Through Traditional Dimensionality ReductionIn the contemporary era of Big Data and machine learning, we frequently need to

Precision Ion Trapping and Control: Paving the Way for the Future of Quantum Computing
An ion trap is a device that uses oscillating electric fields to confine charged particles. At the Trapped-Ion Quantum Computing Laboratory, the research team works with naturally occurring ytterbium-
Foundations for quantum speedups in noisy quantum experiments.
July 03, 2026, 10am (Taipei time)
Ishaan Kannan
Harvard
Foundations for quantum speedups in noisy quantum experiments.
July 03, 2026, 10am (Taipei time)
Ishaan Kannan
Harvard
Phantom codes: Entangling logical qubits without physical operations
June 26, 2026, 10am (Taipei time)
Shayan Majidy
Harvard
Pauli Measurements Are Near-Optimal for Pure State Tomography
June 12, 2026, 10am (Taipei time)
Sabee Grewal
UT Austin





