We demonstrate an efficient all-optical control of microfiber resonator assisted by graphene's photothermal effect. Wrapping graphene onto a microfiber resonator, the light-graphene interaction can be strongly enhanced via the resonantly circulating light, which enables a significant modulation of the resonance with a resonant wavelength shift rate of 71 pm/mW when pumped by a 1540 nm laser. The optically controlled resonator enables the implementation of low threshold optical bistability and switching with an extinction ratio exceeding 13 dB. The thin and compact structure promises a fast response speed of the control, with a rise (fall) time of 294.7 mu s (212.2 mu s) following the 10%-90% rule. The proposed device, with the advantage...
A novel all-optical modulator based on a microfibre coil resonator (MCR) functionalized using MXene ...
Combined the large evanescent field of microfiber with the high thermal conductivity of graphene, a ...
Silicon photonics accelerated the advent of complex integrated photonic systems where multiple devic...
We demonstrate an effective approach to transferring micron-size CVD graphene layers onto freestandi...
Recently, the integration of two-dimensional materials with optical fibers has opened up a great opp...
We demonstrated all-optical intensity modulator based on polarization-dependent graphene-covered mic...
We demonstrate all-optically controlled slow and fast lights in tilted fiber Bragg grating (TFBG) wi...
Graphene, whose absorbance is approximately independent of wavelength, allows broadband light-matter...
As part of the work presented in this thesis, optical microfibers have been fabricated, characterize...
All-fiber integrated phase shifters and optical switches have important applications in photonic dev...
Atomically thin materials, which were discovered in 2004 with the isolation of graphene, represent a...
All-optical tuning of the resonance of an optical cavity is used to realise optical signal-processin...
We report observation of optical bistability and enhanced thermal nonlinearity in a graphene-silicon...
[[abstract]]This paper demonstrates light-induced tuning of the optical spectrum by a microfiber-kno...
The combination of graphene and a silicon photonic crystal cavity provides an ideal structure for re...
A novel all-optical modulator based on a microfibre coil resonator (MCR) functionalized using MXene ...
Combined the large evanescent field of microfiber with the high thermal conductivity of graphene, a ...
Silicon photonics accelerated the advent of complex integrated photonic systems where multiple devic...
We demonstrate an effective approach to transferring micron-size CVD graphene layers onto freestandi...
Recently, the integration of two-dimensional materials with optical fibers has opened up a great opp...
We demonstrated all-optical intensity modulator based on polarization-dependent graphene-covered mic...
We demonstrate all-optically controlled slow and fast lights in tilted fiber Bragg grating (TFBG) wi...
Graphene, whose absorbance is approximately independent of wavelength, allows broadband light-matter...
As part of the work presented in this thesis, optical microfibers have been fabricated, characterize...
All-fiber integrated phase shifters and optical switches have important applications in photonic dev...
Atomically thin materials, which were discovered in 2004 with the isolation of graphene, represent a...
All-optical tuning of the resonance of an optical cavity is used to realise optical signal-processin...
We report observation of optical bistability and enhanced thermal nonlinearity in a graphene-silicon...
[[abstract]]This paper demonstrates light-induced tuning of the optical spectrum by a microfiber-kno...
The combination of graphene and a silicon photonic crystal cavity provides an ideal structure for re...
A novel all-optical modulator based on a microfibre coil resonator (MCR) functionalized using MXene ...
Combined the large evanescent field of microfiber with the high thermal conductivity of graphene, a ...
Silicon photonics accelerated the advent of complex integrated photonic systems where multiple devic...