Slow light enhancement via a nanostructured one-dimensional (1D) periodic waveguide is exploited to demonstrate up to 40 Gb/s modulation in a CMOS compatible 500 μm-long silicon electro-optical device based on carrier depletion in a pn junction
A key device in future high speed short reach interconnect technology will be the optical modulator....
Slow light effect based rib silicon waveguide structures are studied in this paper to enhance modula...
Data interconnects are on the verge of a revolution. Electrical links are increasingly being pushed ...
Slow light enhancement via a nanostructured one-dimensional (1D) periodic waveguide is exploited to ...
While current optical communication networks efficiently carry and process huge amounts of digital i...
The integration of nanophotonics components with advanced complementary metal-oxide-semiconductor (C...
[EN] The integration of nanophotonics components with advanced complementary metal-oxide-semiconduct...
Abstract — We demonstrate 10 Gb/s modulation in a 200 µm photonic crystal silicon optical modulator,...
Slow light optical modulators are attracting ever more attention in the field of silicon photonics o...
We present the design and numerical simulation results for a silicon waveguide modulator based on ca...
Abstract- We experimentally demonstrate electrooptic modulation in silicon at 18 Gbps (NRZ) in a mic...
In this Letter, we demonstrate a highly efficient, compact, high-contrast and low-loss silicon slow ...
The paper concerns the design and the study of a silicon-based electro-optical modulator, using a ph...
As an important optoelectronic integration platform, silicon photonics has achieved significant prog...
A 40 Gbit/s electro-optic modulator is demonstrated. The modulator is based on a slotted silicon wav...
A key device in future high speed short reach interconnect technology will be the optical modulator....
Slow light effect based rib silicon waveguide structures are studied in this paper to enhance modula...
Data interconnects are on the verge of a revolution. Electrical links are increasingly being pushed ...
Slow light enhancement via a nanostructured one-dimensional (1D) periodic waveguide is exploited to ...
While current optical communication networks efficiently carry and process huge amounts of digital i...
The integration of nanophotonics components with advanced complementary metal-oxide-semiconductor (C...
[EN] The integration of nanophotonics components with advanced complementary metal-oxide-semiconduct...
Abstract — We demonstrate 10 Gb/s modulation in a 200 µm photonic crystal silicon optical modulator,...
Slow light optical modulators are attracting ever more attention in the field of silicon photonics o...
We present the design and numerical simulation results for a silicon waveguide modulator based on ca...
Abstract- We experimentally demonstrate electrooptic modulation in silicon at 18 Gbps (NRZ) in a mic...
In this Letter, we demonstrate a highly efficient, compact, high-contrast and low-loss silicon slow ...
The paper concerns the design and the study of a silicon-based electro-optical modulator, using a ph...
As an important optoelectronic integration platform, silicon photonics has achieved significant prog...
A 40 Gbit/s electro-optic modulator is demonstrated. The modulator is based on a slotted silicon wav...
A key device in future high speed short reach interconnect technology will be the optical modulator....
Slow light effect based rib silicon waveguide structures are studied in this paper to enhance modula...
Data interconnects are on the verge of a revolution. Electrical links are increasingly being pushed ...