In this paper we report on an electro-refractive modulator based on single or double-layer graphene on top of silicon waveguides. The graphene layers are biased to the transparency condition in order to achieve phase modulation with negligible amplitude modulation. By means of a detailed study of both the electrical and optical properties of graphene and silicon, as well as through optimization of the geometrical parameters, we show that the proposed devices may theoretically outperform existing modulators both in terms of V(\u3c0)L and of insertion losses. The overall figures of merit of the proposed devices are as low as 8.5 and 2dB 19V for the single and double layer cases, respectively
The modulator is a key component in optical communications. Several graphene-based amplitude modulat...
The on-chip mode-division multiplexing (MDM) is an attractive technique to achieve high-capacity opt...
Graphene silicon devices have attracted significant attention due to their outstanding electronic an...
In this paper we report on an electro-refractive modulator based on single or double-layer graphene ...
In this paper we report an integrated phase modulator based on two layers of graphene on top of a SO...
Abstract We theoretically and experimentally demonstrate a significantly large modulation efficiency...
Graphene is a 2D material with appealing electronic and optoelectronic properties. It is a zero-band...
The backbone of today’s society is the transfer of information. Next-generation data network infrast...
A Mach-Zehnder optical modulator with double graphene layers on silicon waveguide, utilizing the ele...
Graphene has been considered as a promising material for opto-electronic devices, because of its tun...
We present the experimental demonstration of a compact waveguide-integrated graphene phase modulator...
With the increasing demand for capacity in communications networks, the use of integrated photonics ...
By exploiting the electroabsorption effect of graphene, we present a graphene-based polarization-ins...
ABSTRACT: Here we report a high-performance double-layer graphene optical modulator. By using two gr...
We review the state of the art of graphene modulators in silicon photonics platforms. Results obtain...
The modulator is a key component in optical communications. Several graphene-based amplitude modulat...
The on-chip mode-division multiplexing (MDM) is an attractive technique to achieve high-capacity opt...
Graphene silicon devices have attracted significant attention due to their outstanding electronic an...
In this paper we report on an electro-refractive modulator based on single or double-layer graphene ...
In this paper we report an integrated phase modulator based on two layers of graphene on top of a SO...
Abstract We theoretically and experimentally demonstrate a significantly large modulation efficiency...
Graphene is a 2D material with appealing electronic and optoelectronic properties. It is a zero-band...
The backbone of today’s society is the transfer of information. Next-generation data network infrast...
A Mach-Zehnder optical modulator with double graphene layers on silicon waveguide, utilizing the ele...
Graphene has been considered as a promising material for opto-electronic devices, because of its tun...
We present the experimental demonstration of a compact waveguide-integrated graphene phase modulator...
With the increasing demand for capacity in communications networks, the use of integrated photonics ...
By exploiting the electroabsorption effect of graphene, we present a graphene-based polarization-ins...
ABSTRACT: Here we report a high-performance double-layer graphene optical modulator. By using two gr...
We review the state of the art of graphene modulators in silicon photonics platforms. Results obtain...
The modulator is a key component in optical communications. Several graphene-based amplitude modulat...
The on-chip mode-division multiplexing (MDM) is an attractive technique to achieve high-capacity opt...
Graphene silicon devices have attracted significant attention due to their outstanding electronic an...