Graphene integrated photonics provides several advantages over conventional Si photonics. Single layer graphene (SLG) enables fast, broadband, and energy-efficient electro-optic modulators, optical switches and photodetectors (GPDs), and is compatible with any optical waveguide. The last major barrier to SLG-based optical receivers lies in the low responsivity - electrical output per optical input - of GPDs compared to conventional PDs. Here we overcome this shortfall by integrating a photo-thermoelectric GPD with a Si microring resonator. Under critical coupling, we achieve $>$90% light absorption in a $\sim$6 $\mu$m SLG channel along the Si waveguide. Exploiting the cavity-enhanced light-matter interaction, causing carriers in SLG to reac...
We present a micrometer-scale, on-chip integrated, plasmonic enhanced graphene photodetector (GPD) f...
We present a micrometer-scale, on-chip integrated, plasmonic enhanced graphene photodetector (GPD) f...
The gate-controllability of the Fermi-edge onset of interband absorption in graphene can be utilized...
Graphene integrated photonics provides several advantages over conventional Si photonics. Single lay...
Abstract: Graphene integrated photonics provides several advantages over conventional Si photonics. ...
There has been a rapidly growing interest in graphene-based optoelectronics. This exceptional materi...
In last years, the introduction of 2-dimensional materials such as graphene has revolutionized the w...
With its electrically tunable light absorption and ultrafast photoresponse, graphene is a promising ...
The fast carrier dynamics and ultra-broadband optical properties of graphene make it suitable for op...
Graphene photodetectors are highly attractive owing to its ultra-fast and wide-range spectral respon...
Graphene’s unique optoelectronic properties have been exploited for many photonic applications. Here...
Graphene-based photodetectors have attracted strong interest for their exceptional physical properti...
Silicon photonics accelerated the advent of complex integrated photonic systems where multiple devic...
There is an increasing interest in using graphene, for optoelectronic applications.− However, becaus...
We present a micrometer-scale, on-chip integrated, plasmonic enhanced graphene photodetector (GPD) f...
We present a micrometer-scale, on-chip integrated, plasmonic enhanced graphene photodetector (GPD) f...
We present a micrometer-scale, on-chip integrated, plasmonic enhanced graphene photodetector (GPD) f...
The gate-controllability of the Fermi-edge onset of interband absorption in graphene can be utilized...
Graphene integrated photonics provides several advantages over conventional Si photonics. Single lay...
Abstract: Graphene integrated photonics provides several advantages over conventional Si photonics. ...
There has been a rapidly growing interest in graphene-based optoelectronics. This exceptional materi...
In last years, the introduction of 2-dimensional materials such as graphene has revolutionized the w...
With its electrically tunable light absorption and ultrafast photoresponse, graphene is a promising ...
The fast carrier dynamics and ultra-broadband optical properties of graphene make it suitable for op...
Graphene photodetectors are highly attractive owing to its ultra-fast and wide-range spectral respon...
Graphene’s unique optoelectronic properties have been exploited for many photonic applications. Here...
Graphene-based photodetectors have attracted strong interest for their exceptional physical properti...
Silicon photonics accelerated the advent of complex integrated photonic systems where multiple devic...
There is an increasing interest in using graphene, for optoelectronic applications.− However, becaus...
We present a micrometer-scale, on-chip integrated, plasmonic enhanced graphene photodetector (GPD) f...
We present a micrometer-scale, on-chip integrated, plasmonic enhanced graphene photodetector (GPD) f...
We present a micrometer-scale, on-chip integrated, plasmonic enhanced graphene photodetector (GPD) f...
The gate-controllability of the Fermi-edge onset of interband absorption in graphene can be utilized...