We demonstrated all-optical intensity modulator based on polarization-dependent graphene-covered microfiber (GMF) waveguide. By controlling the polarization mode of incident light, a greatly adjustable enhanced interaction between the propagating light and the graphene can be obtained via the evanescent field of the microfiber. By employing 980-nm pump light and 1550-nm signal light in continuous wave, the strong light–graphene interaction enables a maximum modulation depth of ∼20.86 dB, and by pumping 980 nm wave pulses, we obtained the temporal response characteristics of signal light with modulation rate of 5.13 kHz. This all-optical intensity modulator is compatible with optical fiber systems, and features with ease of fabrication, and ...
Polarization-insensitive modulation, i.e., overcoming the limit of conventional modulators operating...
<p> We propose an efficient modulation of linearly polarized infrared light using graphene metamate...
The combination of graphene and a silicon photonic crystal cavity provides an ideal structure for re...
Graphene is an optical material of unusual characteristics because of its linearly dispersive conduc...
By exploiting the electroabsorption effect of graphene, we present a graphene-based polarization-ins...
<p> By exploiting the polarization-sensitive coupling effect of graphene with the optical mode, we ...
A graphene-based, high speed, in-fiber optical modulator has been demonstrated on a low-loss side-po...
A polarization-insensitive graphene-assisted electro-optic modulator is proposed. The orthogonal T-s...
A polarization-dependent saturable absorber is developed by the use of graphene-polymer film covered...
An efficient electro-optic transition control is reported in all-fiber graphene devices over a broad...
We demonstrate an efficient all-optical control of microfiber resonator assisted by graphene's p...
Abstract We theoretically and experimentally demonstrate a significantly large modulation efficiency...
We experimentally investigate a graphene-covered silicon-based hybrid plasmonic waveguide, which is ...
In this paper, we propose a polarization-independent optoelectronic modulator based on the electrica...
Recently, the integration of two-dimensional materials with optical fibers has opened up a great opp...
Polarization-insensitive modulation, i.e., overcoming the limit of conventional modulators operating...
<p> We propose an efficient modulation of linearly polarized infrared light using graphene metamate...
The combination of graphene and a silicon photonic crystal cavity provides an ideal structure for re...
Graphene is an optical material of unusual characteristics because of its linearly dispersive conduc...
By exploiting the electroabsorption effect of graphene, we present a graphene-based polarization-ins...
<p> By exploiting the polarization-sensitive coupling effect of graphene with the optical mode, we ...
A graphene-based, high speed, in-fiber optical modulator has been demonstrated on a low-loss side-po...
A polarization-insensitive graphene-assisted electro-optic modulator is proposed. The orthogonal T-s...
A polarization-dependent saturable absorber is developed by the use of graphene-polymer film covered...
An efficient electro-optic transition control is reported in all-fiber graphene devices over a broad...
We demonstrate an efficient all-optical control of microfiber resonator assisted by graphene's p...
Abstract We theoretically and experimentally demonstrate a significantly large modulation efficiency...
We experimentally investigate a graphene-covered silicon-based hybrid plasmonic waveguide, which is ...
In this paper, we propose a polarization-independent optoelectronic modulator based on the electrica...
Recently, the integration of two-dimensional materials with optical fibers has opened up a great opp...
Polarization-insensitive modulation, i.e., overcoming the limit of conventional modulators operating...
<p> We propose an efficient modulation of linearly polarized infrared light using graphene metamate...
The combination of graphene and a silicon photonic crystal cavity provides an ideal structure for re...