Actively mode-locked lasers offer varying degrees of flexibility for a wider range of applications than their passively modulated counterparts, due to their capability for electrically controlled ultrahigh repetition rate operation. Graphene based electrooptic modulators with unique advantages of broad operation bandwidth and ultrafast speed are suitable for light modulation in various optoelectronic applications. Here, an actively mode-locked laser with a graphene based electrooptic modulator is reported for the first time. The active mode-locking technique combined together with the intracavity nonlinear pulse shortening effect allows the generation of transform-limited 1.44 ps pulses with pulse energy of 844 pJ. The electrically controll...
Large-area monolayer graphene, synthesized by chemical vapor deposition, was transferred to a 1-inch...
Abstract: Pulses as short as 260fs have been generated in an Er:Yb:glass laser by saturable absorber...
We report the first to our knowledge high-energy graphene mode-locked solid-state laser operating in...
Actively mode-locked lasers offer varying degrees of flexibility for a wider range of applications t...
Graphene electro-optic modulators (GEOMs) are emerging as a viable alternative to conventional mater...
International audienceGraphene is at the center of a significant research effort. Near-ballistic tra...
We experimentally demonstrated a passively mode-locked femtosecond laser by using a graphene-based s...
Graphene is at the center of a significant research effort. Near-ballistic transport at room tempera...
We report, for the first time to our knowledge, femtosecond pulse generation from a graphene mode-lo...
Employing graphene as an intracavity passive power modulating element, we demonstrate the efficient ...
© The Author(s) 2010. This article is published with open access at Springerlink.com We report an ul...
International audienceWe report on the first demonstration of a diode-pumped passively mode-locked T...
Graphene is at the center of a significant research effort for ultrafast photonics due to its unique...
An all-fiber passively mode-locked Ytterbium-doped fiber laser (YDFL) was demonstrated by using a ch...
In this thesis, graphene saturable absorber mirror\u27s (SAM) potential for mode-locking ultrafast l...
Large-area monolayer graphene, synthesized by chemical vapor deposition, was transferred to a 1-inch...
Abstract: Pulses as short as 260fs have been generated in an Er:Yb:glass laser by saturable absorber...
We report the first to our knowledge high-energy graphene mode-locked solid-state laser operating in...
Actively mode-locked lasers offer varying degrees of flexibility for a wider range of applications t...
Graphene electro-optic modulators (GEOMs) are emerging as a viable alternative to conventional mater...
International audienceGraphene is at the center of a significant research effort. Near-ballistic tra...
We experimentally demonstrated a passively mode-locked femtosecond laser by using a graphene-based s...
Graphene is at the center of a significant research effort. Near-ballistic transport at room tempera...
We report, for the first time to our knowledge, femtosecond pulse generation from a graphene mode-lo...
Employing graphene as an intracavity passive power modulating element, we demonstrate the efficient ...
© The Author(s) 2010. This article is published with open access at Springerlink.com We report an ul...
International audienceWe report on the first demonstration of a diode-pumped passively mode-locked T...
Graphene is at the center of a significant research effort for ultrafast photonics due to its unique...
An all-fiber passively mode-locked Ytterbium-doped fiber laser (YDFL) was demonstrated by using a ch...
In this thesis, graphene saturable absorber mirror\u27s (SAM) potential for mode-locking ultrafast l...
Large-area monolayer graphene, synthesized by chemical vapor deposition, was transferred to a 1-inch...
Abstract: Pulses as short as 260fs have been generated in an Er:Yb:glass laser by saturable absorber...
We report the first to our knowledge high-energy graphene mode-locked solid-state laser operating in...