Area of research
Electrical and Electronic Engineering
Research interest
Research interests include Photonics, Computer science, CMOS, Silicon photonics, Optoelectronics, and Materials science.
Toward a Wireless Image Sensor for Real-Time Fluorescence Microscopy in Cancer Therapy
Electronic-Photonic Cryogenic Egress Link
An Optically Sampled ADC in 3D Integrated Silicon-Photonics/65nm CMOS
A Single-Chip Optical Phased Array in a Wafer-Scale Silicon Photonics/CMOS 3D-Integration Platform
Integrating photonics with silicon nanoelectronics for the next generation of systems on a chip
Monolithic Optical Transceivers in 65 nm Bulk CMOS
A 40-Gb/s PAM-4 Transmitter Based on a Ring-Resonator Optical DAC in 45-nm SOI CMOS
A 45 nm CMOS-SOI Monolithic Photonics Platform With Bit-Statistics-Based Resonant Microring Thermal Tuning
Single-chip microprocessor that communicates directly using light
A Monolithically-Integrated Chip-to-Chip Optical Link in Bulk CMOS
Electro-optical co-simulation for integrated CMOS photonic circuits with VerilogA
A 45nm 1.3GHz 16.7 double-precision GFLOPS/W RISC-V processor with vector accelerators
Depletion-mode carrier-plasma optical modulator in zero-change advanced CMOS
Why Analog-to-Information Converters Suffer in High-Bandwidth Sparse Signal Applications
Energy-Aware Design of Compressed Sensing Systems for Wireless Sensors Under Performance and Reliability Constraints
DSENT - A Tool Connecting Emerging Photonics with Electronics for Opto-Electronic Networks-on-Chip Modeling
Design and Analysis of a Hardware-Efficient Compressed Sensing Architecture for Data Compression in Wireless Sensors
Open foundry platform for high-performance electronic-photonic integration
Designing Chip-Level Nanophotonic Interconnection Networks
Performance trade-offs and design limitations of analog-to-information converter front-ends
Power/performance optimization of many-core processor SoCs