WUHAN · CHINA

Quantum physics.
On a chip.

We combine quantum materials, on-chip terahertz spectroscopy, and nanoscale imaging to explore new ways to guide, detect, and control light and electronic waves.

Explore our research
Conceptual artwork of luminous wavefronts over a two-dimensional material
QUANTUM MATERIALS · ON-CHIP DISCOVERYConceptual artwork

Wuhan National Laboratory
for Optoelectronics

Huazhong University
of Science and Technology

华中科技大学
武汉光电国家研究中心

01 / RESEARCH

From quantum matter
to integrated devices.

We connect quantum physics with chip design, nanofabrication, and ultrafast measurements. Students explore the physics of new materials and learn to build and probe their devices.

Conceptual illustration of on-chip terahertz spectroscopy: optical pulses illuminate emitter and detector switches connected by a gold transmission line through a graphene device01

On-chip terahertz
devices

We integrate graphene with ultrafast emitters, detectors, and transmission lines to launch, guide, and control terahertz electronic waves on a chip.

Graphene · THz transport · Wave control

Conceptual illustration of an AFM cantilever and pyramidal tip probing a graphene device between gold transmission lines on a chip02

AFM imaging of
on-chip waves

We are developing terahertz probes based on atomic force microscopy (AFM) to map local fields and wave propagation in quantum materials and chip-scale devices.

AFM probes · Near-field imaging · THz waves

Conceptual illustration of stacked two-dimensional crystalline sheets03

Integrated
optoelectronics

We investigate how graphene and layered materials can be integrated into compact waveguides, modulators, and detectors with electrically tunable optical and electronic responses.

2D materials · Device integration · Light control

Research images are conceptual illustrations.

02 / PEOPLE

Curiosity, together.

Our group is based at the Wuhan National Laboratory for Optoelectronics, HUST.

Wenyu Zhao · 赵文宇

PRINCIPAL INVESTIGATOR

Wenyu Zhao 赵文宇

Professor · Huazhong University of Science and Technology

Professor Zhao’s research connects quantum materials, on-chip terahertz transport, and nanoscale light–matter interactions, with a focus on new optoelectronic devices and measurement methods.

OUR APPROACH

Build the device.
Probe the physics.

Chip design, nanofabrication, and ultrafast imaging.

PhD Students

  • Gangling Niu · 牛广亮

    Gangling Niu牛广亮

  • Yuwei Zhuang · 庄宇维

    Yuwei Zhuang庄宇维

  • Yibo Feng · 冯诣博

    Yibo Feng冯诣博

  • Lidong Zhang · 张立东

    Lidong Zhang张立东

  • Ju Shang · 尚驹

    Ju Shang尚驹

  • Hejie Peng · 彭和杰

    Hejie Peng彭和杰

Master’s Students

  • Kan Fu · 付康

    Kan Fu付康

  • Leda Jia · 贾乐达

    Leda Jia贾乐达

04 / CONTACT

Let’s connect.

For research enquiries and academic collaboration,
contact Professor Wenyu Zhao.

FIND USWuhan National Laboratory
for Optoelectronics
Huazhong University of
Science and Technology
Wuhan, Hubei 430074, China