Recently, the integration of two-dimensional materials with optical fibers has opened up a great opportunity to develop all-fiber signal-processing devices. Graphene is an ideal material for all-optical signal processing via thermal-optic effect because of its high electrical and thermal conductivity, as well as broadband light-matter interactions with fast responses. Herein, we report the achievement of all-optical switching with fast response by integrating few-layer graphene onto a tilted fiber Bragg grating (TFBG) inscribed in a reduced-diameter fiber. Relying on graphene's decent photothermal effect, the transmission spectrum of the TFBG could be all-optically modulated by tuning the incident pump power. The all-optical switch can cons...
Graphene is an optical material of unusual characteristics because of its linearly dispersive conduc...
Electromagnetic metamaterials are man-made materials made up of structures with electromagnetic pr...
Fibre side-polishing technology was explored to meet the need for miniature, multifunctional, and lo...
Recently, the integration of two-dimensional materials with optical fibers has opened up a great opp...
We demonstrate all-optically controlled slow and fast lights in tilted fiber Bragg grating (TFBG) wi...
We demonstrate an efficient all-optical control of microfiber resonator assisted by graphene's p...
Graphene is a highly versatile two-dimensional material platform that offers exceptional optical and...
A graphene-based, high speed, in-fiber optical modulator has been demonstrated on a low-loss side-po...
<p> By exploiting the polarization-sensitive coupling effect of graphene with the optical mode, we ...
We demonstrated all-optical intensity modulator based on polarization-dependent graphene-covered mic...
All-optical devices have a great potential in optical communication systems. As a new material, grap...
Using the evanescent-wave saturation effect of hydrogen-free low-temperature synthesized few-layer g...
Combined the large evanescent field of microfiber with the high thermal conductivity of graphene, a ...
An efficient electro-optic transition control is reported in all-fiber graphene devices over a broad...
Possessing a variety of remarkable optical, electronic, and mechanical properties, graphene has emer...
Graphene is an optical material of unusual characteristics because of its linearly dispersive conduc...
Electromagnetic metamaterials are man-made materials made up of structures with electromagnetic pr...
Fibre side-polishing technology was explored to meet the need for miniature, multifunctional, and lo...
Recently, the integration of two-dimensional materials with optical fibers has opened up a great opp...
We demonstrate all-optically controlled slow and fast lights in tilted fiber Bragg grating (TFBG) wi...
We demonstrate an efficient all-optical control of microfiber resonator assisted by graphene's p...
Graphene is a highly versatile two-dimensional material platform that offers exceptional optical and...
A graphene-based, high speed, in-fiber optical modulator has been demonstrated on a low-loss side-po...
<p> By exploiting the polarization-sensitive coupling effect of graphene with the optical mode, we ...
We demonstrated all-optical intensity modulator based on polarization-dependent graphene-covered mic...
All-optical devices have a great potential in optical communication systems. As a new material, grap...
Using the evanescent-wave saturation effect of hydrogen-free low-temperature synthesized few-layer g...
Combined the large evanescent field of microfiber with the high thermal conductivity of graphene, a ...
An efficient electro-optic transition control is reported in all-fiber graphene devices over a broad...
Possessing a variety of remarkable optical, electronic, and mechanical properties, graphene has emer...
Graphene is an optical material of unusual characteristics because of its linearly dispersive conduc...
Electromagnetic metamaterials are man-made materials made up of structures with electromagnetic pr...
Fibre side-polishing technology was explored to meet the need for miniature, multifunctional, and lo...