Polarization-insensitive modulation, i.e., overcoming the limit of conventional modulators operating under only a single-polarization state, is desirable for high-capacity on-chip optical interconnects. Here, we propose a hybrid graphene-silicon-based polarization-insensitive electro-absorption modulator (EAM) with high-modulation efficiency and ultra-broad bandwidth. The hybrid graphene-silicon waveguide is formed by leveraging multi-deposited and multi-transferred methods to enable light interaction with graphene layers in its intense field distribution region instead of the commonly used weak cladding region, thus resulting in enhanced light⁻graphene interaction. By optimizing the dimensions of all hybrid graphene-silicon waveguide...
Graphene has been widely used in silicon-based optical modulators for its ultra-broadband light abso...
The backbone of today’s society is the transfer of information. Next-generation data network infrast...
There has been a rapidly growing interest in graphene-based optoelectronics. This exceptional materi...
By exploiting the electroabsorption effect of graphene, we present a graphene-based polarization-ins...
A polarization-insensitive graphene-assisted electro-optic modulator is proposed. The orthogonal T-s...
We report the first silicon integrated graphene optical electro-absorption modulator capable of 10Gb...
We report the first silicon integrated graphene optical electro-absorption modulator capable of 10Gb...
Silicon photonic modulators are an essential element in providing fast and massive connectivity to t...
A polarization-insensitive phase modulator concept is presented, based on an embedded silicon-graphe...
With the increasing demand for capacity in communications networks, the use of integrated photonics ...
Abstract We theoretically and experimentally demonstrate a significantly large modulation efficiency...
In this paper, we propose a polarization-independent optoelectronic modulator based on the electrica...
An electrical absorption graphene modulator based on hybrid plasmonic waveguide is theoretically dem...
High performance integrated optical modulators are highly desired for future optical interconnects. ...
Graphene silicon devices have attracted significant attention due to their outstanding electronic an...
Graphene has been widely used in silicon-based optical modulators for its ultra-broadband light abso...
The backbone of today’s society is the transfer of information. Next-generation data network infrast...
There has been a rapidly growing interest in graphene-based optoelectronics. This exceptional materi...
By exploiting the electroabsorption effect of graphene, we present a graphene-based polarization-ins...
A polarization-insensitive graphene-assisted electro-optic modulator is proposed. The orthogonal T-s...
We report the first silicon integrated graphene optical electro-absorption modulator capable of 10Gb...
We report the first silicon integrated graphene optical electro-absorption modulator capable of 10Gb...
Silicon photonic modulators are an essential element in providing fast and massive connectivity to t...
A polarization-insensitive phase modulator concept is presented, based on an embedded silicon-graphe...
With the increasing demand for capacity in communications networks, the use of integrated photonics ...
Abstract We theoretically and experimentally demonstrate a significantly large modulation efficiency...
In this paper, we propose a polarization-independent optoelectronic modulator based on the electrica...
An electrical absorption graphene modulator based on hybrid plasmonic waveguide is theoretically dem...
High performance integrated optical modulators are highly desired for future optical interconnects. ...
Graphene silicon devices have attracted significant attention due to their outstanding electronic an...
Graphene has been widely used in silicon-based optical modulators for its ultra-broadband light abso...
The backbone of today’s society is the transfer of information. Next-generation data network infrast...
There has been a rapidly growing interest in graphene-based optoelectronics. This exceptional materi...