Area of research
Electrical and Electronic Engineering · Materials Chemistry
Research interest
Research focused on Photonics and Optoelectronics, with related work in Nanotechnology, Silicon photonics, Diffraction. Notable publications include 'Mid‐infrared integrated photonics on silicon: a perspective', 'Reconfigurable all-dielectric metalens with diffraction-limited performance', and 'A Deep Learning Approach for Objective-Driven All-Dielectric Metasurface Design'.
Nanofabrication for Nanophotonics
Wide field of view large aperture meta-doublet eyepiece
Roadmap on Neuromorphic Photonics
Thermal Transport in Chalcogenide‐Based Phase Change Materials: A Journey from Fundamental Physics to Device Engineering
Large-scale self-assembled nanophotonic scintillators for X-ray imaging
Large-area nanophotonic scintillators for X-ray imaging
Electrically Reconfigurable Phase‐Change Transmissive Metasurface
Wide-Field-of-View, Large-Area Long-Wave Infrared Silicon Metalenses
AI for optical metasurface
Versatile spaceborne photonics with chalcogenide phase-change materials
Crown ether decorated silicon photonics for safeguarding against lead poisoning
Performance Limits of Phase Change Integrated Photonics
Electrically Tuning Quasi‐Bound States in the Continuum with Hybrid Graphene‐Silicon Metasurfaces
Magneto‐Optical Bi‐Substituted Yttrium and Terbium Iron Garnets for On‐Chip Crystallization via Microheaters
Full‐Color, Wide Field‐of‐View Metalens Imaging via Deep Learning
Understanding and Circumventing Failure Mechanisms in Chalcogenide Optical Phase Change Material Ge <sub>2</sub> Sb <sub>2</sub> Se <sub>4</sub> Te
Thermal inverse design for resistive micro-heaters
Large-scale self-assembled nanophotonic scintillators for X-ray imaging
Electrically Programmable Non-Volatile Silicon Photonic Content Addressable Memory (CAM) cell
Controllable multi-level switching of optical phase change materials via microheater temperature profile engineering
Ultrawide Field-of-View, Large Depth-of-Field Imaging Using Metalenses
Roadmap for phase change materials in photonics and beyond
Electrical programmable multilevel nonvolatile photonic random-access memory
A self-biased non-reciprocal magnetic metasurface for bidirectional phase modulation
Wide field-of-view metalens: a tutorial
Optical and thermal properties of Ge<sub>2</sub>Sb<sub>2</sub>Te<sub>5</sub>, Sb<sub>2</sub>Se<sub>3</sub>, and Sb<sub>2</sub>S<sub>3</sub> for reconfigurable photonic devices [Invited]
Arbitrary Programming of Racetrack Resonators Using Low-Loss Phase-Change Material Sb<sub>2</sub>Se<sub>3</sub>
Integrated Micro‐Scale Concentrating Photovoltaics: A Scalable Path Toward High‐Efficiency, Low‐Cost Solar Power
Monocular depth sensing using metalens
Two-photon lithography for integrated photonic packaging