Deep and fast electro-optic modulation is critical for high-speed near infrared signal processing. We combine the electro-absorption tunability of graphene with the high-Q resonance of a Bragg based Fabry-Perot resonator at lambda=1550 nm and show that 100% free-space signal modulation at small insertion loss and GHz speed can always be achieved independently of graphene quality (mobility), provided that the device operates in the reflection mode and is tuned in critical coupling with graphene. Remarkably, the critical coupling mechanism produces a higher extinction ratio for lower graphene mobility. We use practical considerations to optimize the device architecture and operation as a function of graphene mobility. With a small modificatio...
We demonstrate metamaterial-based electro-absorption THz modulators employing frequency-selective-su...
| openaire: EC/H2020/736876/EU//VISORSURFExperimental realization of efficient graphene-based absorb...
We investigate graphene-based optical absorbers that exploit guided mode resonances (GMRs) attaining...
Fast modulation and switching of light at visible and near-infrared (vis–NIR) frequencies are of utm...
An efficient electro-optic transition control is reported in all-fiber graphene devices over a broad...
As global internet traffic continues to climb at an uncurbed rate, the development of correspondingl...
The high carrier mobility of graphene makes it an attractive material for electronics, however, grap...
The gate-controllability of the Fermi-edge onset of interband absorption in graphene can be utilized...
ABSTRACT: We demonstrate a graphene-based electro-absorption modulator achieving extraordinary contr...
Advances in the efficient manipulation of terahertz waves are crucial for the further development of...
Dynamically reconfigurable metasurfaces open up unprecedented opportunities in applications such as ...
We investigate subwavelength grating-coupled distributed Bragg reflector (DBR) in order to achieve t...
National Natural Science Foundation of China [61405217, 61127013, 61308077, 61308073]Complete absorp...
We demonstrate a graphene-based electro-absorption modulator achieving extraordinary control of tera...
| openaire: EC/H2020/736876/EU//VISORSURFIt is commonly believed that weak light-matter interactions...
We demonstrate metamaterial-based electro-absorption THz modulators employing frequency-selective-su...
| openaire: EC/H2020/736876/EU//VISORSURFExperimental realization of efficient graphene-based absorb...
We investigate graphene-based optical absorbers that exploit guided mode resonances (GMRs) attaining...
Fast modulation and switching of light at visible and near-infrared (vis–NIR) frequencies are of utm...
An efficient electro-optic transition control is reported in all-fiber graphene devices over a broad...
As global internet traffic continues to climb at an uncurbed rate, the development of correspondingl...
The high carrier mobility of graphene makes it an attractive material for electronics, however, grap...
The gate-controllability of the Fermi-edge onset of interband absorption in graphene can be utilized...
ABSTRACT: We demonstrate a graphene-based electro-absorption modulator achieving extraordinary contr...
Advances in the efficient manipulation of terahertz waves are crucial for the further development of...
Dynamically reconfigurable metasurfaces open up unprecedented opportunities in applications such as ...
We investigate subwavelength grating-coupled distributed Bragg reflector (DBR) in order to achieve t...
National Natural Science Foundation of China [61405217, 61127013, 61308077, 61308073]Complete absorp...
We demonstrate a graphene-based electro-absorption modulator achieving extraordinary control of tera...
| openaire: EC/H2020/736876/EU//VISORSURFIt is commonly believed that weak light-matter interactions...
We demonstrate metamaterial-based electro-absorption THz modulators employing frequency-selective-su...
| openaire: EC/H2020/736876/EU//VISORSURFExperimental realization of efficient graphene-based absorb...
We investigate graphene-based optical absorbers that exploit guided mode resonances (GMRs) attaining...