Research

What We Explore

Research

We connect material physics, device engineering, and system demonstrations to bring sensing, memory, and computation into compact, energy-efficient hardware.

FerroelectricsOptoelectronicsIntelligent SensorsThermal Photonics
Research Areas

Four connected directions.

Each direction begins with device physics and advances toward functional hardware for intelligent perception, information storage, and energy management.

01 · VISION HARDWARE

Neuromorphic In-Sensor Computing

Optoelectronic devices that sense, memorize, and process visual information directly at the point of acquisition, reducing data movement and post-processing.

PhototransistorsNeuromorphic VisionPhysical AI
02 · NON-VOLATILE PHOTONICS

Ferroelectric Optoelectronic Memory

Programmable photonic and electronic memory enabled by ferroelectric polarization, charge trapping, and engineered light–matter interactions.

FerroelectricsPhotonic MemoryOptical Modulation
03 · PHYSICAL INTELLIGENCE

Intelligent Multimodal Sensors

Flexible and integrated devices combining visual, tactile, thermal, and proximity information for robots, wearables, and embodied systems.

Flexible SensorsMultimodal PerceptionRobotics
04 · ENERGY & LIGHT

Photonic & Thermal Management

Spectral, radiative, and electrocaloric strategies for adaptive photonic platforms and efficient solid-state thermal control.

Radiative CoolingElectrocaloricsThermal Photonics
Approach

From materials to systems.

01 · MATERIALS

Functional material platforms

Ferroelectric polymers, emerging semiconductors, nanostructured photonic materials, and flexible composites.

02 · DEVICES

Device physics & engineering

Polarization, charge transport, photogating, optical resonance, thermal transport, and interface control.

03 · INTEGRATION

Arrays & heterogeneous systems

Pixel arrays, sensor–memory integration, transfer printing, compact readout, and multifunctional hardware.

04 · INTELLIGENCE

Application demonstrations

In-sensor processing, adaptive vision, embodied sensing, non-volatile photonics, and solid-state cooling.