A polarization-dependent saturable absorber is developed by the use of graphene-polymer film covered microfiber. The evanescent field of the guided mode propagating along the microfiber can effectively interact with graphene. Polarization analysis shows that the single-layer graphene-based saturable absorber is more sensitive to polarization and has larger modulation depth than that of multi-layer graphene. Such a saturable absorber exhibits large saturable absorption power of > 56.03 mW, and is easy to fabricate and compatible with optical fiber system. It has high potential in wide range of photonics applications.Department of Electrical Engineerin
In the spectral range from ultraviolet to near infrared, graphene lacks the capability to support pl...
In this paper, a tunable absorber composed of asymmetric grating based on a graphene-dielectric-meta...
As part of the work presented in this thesis, optical microfibers have been fabricated, characterize...
Graphene, a single layer of carbon atoms, is nowadays considered a great candidate to be applied as ...
Graphene, whose absorbance is approximately independent of wavelength, allows broadband light-matter...
We demonstrated all-optical intensity modulator based on polarization-dependent graphene-covered mic...
We demonstrate an effective approach to transferring micron-size CVD graphene layers onto freestandi...
Since the advent of pulse laser, the duration of shortest pulse has rapidly changed from the nanosec...
ABSTRACT: We demonstrated a method to construct high efficiency saturable absorbers based on the eva...
Conventional polarizers can be classified into three main modes of operation: sheet polarizer using ...
We investigate graphene-based optical absorbers that exploit guided mode resonances (GMRs) attaining...
We demonstrate theoretically and experimentally a high extinction ratio and compact size TE-pass pol...
A Graphene-based saturable absorber is fabricated using wet chemistry techniques. We use it to passi...
Graphene has already become an established medium for novel photonic devices and their applications....
A comparative research on the near infrared performance of three kinds of widely used graphene satur...
In the spectral range from ultraviolet to near infrared, graphene lacks the capability to support pl...
In this paper, a tunable absorber composed of asymmetric grating based on a graphene-dielectric-meta...
As part of the work presented in this thesis, optical microfibers have been fabricated, characterize...
Graphene, a single layer of carbon atoms, is nowadays considered a great candidate to be applied as ...
Graphene, whose absorbance is approximately independent of wavelength, allows broadband light-matter...
We demonstrated all-optical intensity modulator based on polarization-dependent graphene-covered mic...
We demonstrate an effective approach to transferring micron-size CVD graphene layers onto freestandi...
Since the advent of pulse laser, the duration of shortest pulse has rapidly changed from the nanosec...
ABSTRACT: We demonstrated a method to construct high efficiency saturable absorbers based on the eva...
Conventional polarizers can be classified into three main modes of operation: sheet polarizer using ...
We investigate graphene-based optical absorbers that exploit guided mode resonances (GMRs) attaining...
We demonstrate theoretically and experimentally a high extinction ratio and compact size TE-pass pol...
A Graphene-based saturable absorber is fabricated using wet chemistry techniques. We use it to passi...
Graphene has already become an established medium for novel photonic devices and their applications....
A comparative research on the near infrared performance of three kinds of widely used graphene satur...
In the spectral range from ultraviolet to near infrared, graphene lacks the capability to support pl...
In this paper, a tunable absorber composed of asymmetric grating based on a graphene-dielectric-meta...
As part of the work presented in this thesis, optical microfibers have been fabricated, characterize...