Area of research
Electrical and Electronic Engineering · Electronic, Optical and Magnetic Materials
Research interest
Research focused on Optics and Inverse, with related work in Resonator, Nanophotonics, Topology optimization. Notable publications include 'Integrated high quality factor lithium niobate microdisk resonators', 'Enhanced Spontaneous Emission at Third-Order Dirac Exceptional Points in Inverse-Designed Photonic Crystals', and 'Empowering Metasurfaces with Inverse Design: Principles and Applications'.
End-to-End Optimization of Metasurfaces for Imaging with Compressed Sensing
Inverse-Designed Lithium Niobate Nanophotonics
Empowering Metasurfaces with Inverse Design: Principles and Applications
A framework for scintillation in nanophotonics
Toward 3D-Printed Inverse-Designed Metaoptics
Computational inverse design for ultra-compact single-piece metalenses free of chromatic and angular aberration
Inverse designed extended depth of focus meta‐optics for broadband imaging in the visible
Inverse Designed Metalenses with Extended Depth of Focus
End‐to‐end nanophotonic inverse design for imaging and polarimetry
Inverse designed metalenses with extended depth of focus
Topology optimization of freeform large-area metasurfaces
Overlapping domains for topology optimization of large-area metasurfaces
400%/W second harmonic conversion efficiency in 14 μm-diameter gallium phosphide-on-oxide resonators
Enhanced Spontaneous Emission at Third-Order Dirac Exceptional Points in Inverse-Designed Photonic Crystals
Cavity-enhanced second-harmonic generation via nonlinear-overlap optimization
Integrated high quality factor lithium niobate microdisk resonators