We demonstrate that enhanced linear absorption coefficient (LAC) of in-plane monolayer graphene is determined by the optical transmission spectra of a graphene layer coated symmetrically coupled add-drop silicon microring resonator (SC-ADSMR), of which the value is around 0.23 dB/µm. In contrast to the traditional cut-back method, the measured results aren’t dependent on the coupling efficiency between the fiber tip and the waveguide. Moreover, precisely evaluation of graphene layer coated silicon microring resonator (SMR) is crucial for future optoelectronic devices with compact footprint and low power consumption
The gate-controllability of the Fermi-edge onset of interband absorption in graphene can be utilized...
International audienceThe recent development of silicon photonics, namely based on Si and Si deriva...
Graphene opens up for novel optoelectronic applications thanks to its high carrier mobility, ultrala...
Abstract We present a Raman mapping study of monolayer graphene G and 2D bands, after integration on...
We present a new approach for designing a compact microring resonator structure based on only one mu...
Abstract: Graphene integrated photonics provides several advantages over conventional Si photonics. ...
Lately, the integration of two-dimensional materials into semiconductor devices has allowed the modi...
Graphene integrated photonics provides several advantages over conventional Si photonics. Single lay...
The optical absorption properties of periodically patterned graphene plasmonic resonators are studie...
We investigate graphene-based optical absorbers that exploit guided mode resonances (GMRs) attaining...
It is well known that a suspended monolayer graphene has a weak light absorption efficiency of about...
Cataloged from PDF version of article.Metallic split ring resonator (SRR) structures are used in nan...
Graphene is emerging as a promising material for the integration in the most common Si platform, cap...
We report for the first time and characterize experimentally the complex optical conductivity of gra...
Graphene-based devices have important applications attributed to their superior performance and flex...
The gate-controllability of the Fermi-edge onset of interband absorption in graphene can be utilized...
International audienceThe recent development of silicon photonics, namely based on Si and Si deriva...
Graphene opens up for novel optoelectronic applications thanks to its high carrier mobility, ultrala...
Abstract We present a Raman mapping study of monolayer graphene G and 2D bands, after integration on...
We present a new approach for designing a compact microring resonator structure based on only one mu...
Abstract: Graphene integrated photonics provides several advantages over conventional Si photonics. ...
Lately, the integration of two-dimensional materials into semiconductor devices has allowed the modi...
Graphene integrated photonics provides several advantages over conventional Si photonics. Single lay...
The optical absorption properties of periodically patterned graphene plasmonic resonators are studie...
We investigate graphene-based optical absorbers that exploit guided mode resonances (GMRs) attaining...
It is well known that a suspended monolayer graphene has a weak light absorption efficiency of about...
Cataloged from PDF version of article.Metallic split ring resonator (SRR) structures are used in nan...
Graphene is emerging as a promising material for the integration in the most common Si platform, cap...
We report for the first time and characterize experimentally the complex optical conductivity of gra...
Graphene-based devices have important applications attributed to their superior performance and flex...
The gate-controllability of the Fermi-edge onset of interband absorption in graphene can be utilized...
International audienceThe recent development of silicon photonics, namely based on Si and Si deriva...
Graphene opens up for novel optoelectronic applications thanks to its high carrier mobility, ultrala...