The demand for information processing at ultrahigh speed with large data transmission capacity is continuously rising. Necessary building blocks for on-chip photonic integrated circuits (PICs) are reconfigurable integrated low-loss high-speed modulators and switches. Phase change materials (PCMs) provide unique opportunities for integration into PICs. Here, the investigation of layered gallium monosulfide (GaS) as a novel low-loss PCM from infrared to optical frequencies is pioneered, with high index contrast (n ≈0.5) at the optical telecommunication band. The GaS bandgap switches from 1.5 ± 0.2 eV for the amorphous state to 2.1 ± 0.1 eV for the crystalline state. It is demonstrated that the reversible GaS amorphous-to-crystalline phase tra...
The content of this thesis encompasses the fundamentals, modelling, chip design, nanofabrication pro...
A vertical hybrid plasmonic waveguide (HPWG) modulator incorporating Au nano-rings and operating in ...
Abstract Optical phase shifters constitute the fundamental building blocks that enabl...
This thesis aims to develop a new conceptual approach for programmable nanophotonic devices, by comb...
Optical phase change materials (O-PCMs), a unique group of materials featuring drastic optical prope...
Reconfigurable photonics has been at the forefront of modern optics research, especially as optics a...
Thesis (Ph.D.)--University of Washington, 2020With the slowing down of Moore's law and advances in n...
Photonics is really the study of the manipulation of light. In order to manipulate light, the materi...
Demonstration of a fiber-integrated non-volatile reconfigurable metasurface providing high-contrast ...
We show that the phase-change technology behind rewritable optical disks and the latest generation o...
Tunable integrated photonic devices working at the visible and near infrared (NIR) regions are neede...
Integration of phase-change materials (PCMs) into electrical/optical circuits has initiated extensiv...
Photonic integrated circuits currently use platform intrinsic thermo-optic and electro-optic effects...
Non-volatile, bi-directional, all-optical switching in a phase-change metamaterial delivers high-con...
Non-volatile, bi-directional, all-optical switching in a phase-change metamaterial delivers high-con...
The content of this thesis encompasses the fundamentals, modelling, chip design, nanofabrication pro...
A vertical hybrid plasmonic waveguide (HPWG) modulator incorporating Au nano-rings and operating in ...
Abstract Optical phase shifters constitute the fundamental building blocks that enabl...
This thesis aims to develop a new conceptual approach for programmable nanophotonic devices, by comb...
Optical phase change materials (O-PCMs), a unique group of materials featuring drastic optical prope...
Reconfigurable photonics has been at the forefront of modern optics research, especially as optics a...
Thesis (Ph.D.)--University of Washington, 2020With the slowing down of Moore's law and advances in n...
Photonics is really the study of the manipulation of light. In order to manipulate light, the materi...
Demonstration of a fiber-integrated non-volatile reconfigurable metasurface providing high-contrast ...
We show that the phase-change technology behind rewritable optical disks and the latest generation o...
Tunable integrated photonic devices working at the visible and near infrared (NIR) regions are neede...
Integration of phase-change materials (PCMs) into electrical/optical circuits has initiated extensiv...
Photonic integrated circuits currently use platform intrinsic thermo-optic and electro-optic effects...
Non-volatile, bi-directional, all-optical switching in a phase-change metamaterial delivers high-con...
Non-volatile, bi-directional, all-optical switching in a phase-change metamaterial delivers high-con...
The content of this thesis encompasses the fundamentals, modelling, chip design, nanofabrication pro...
A vertical hybrid plasmonic waveguide (HPWG) modulator incorporating Au nano-rings and operating in ...
Abstract Optical phase shifters constitute the fundamental building blocks that enabl...