Sub 200fs pulse generation from a graphene mode-locked fiber laser
arXiv:1010.1329 · doi:10.1063/1.3517251
Abstract
Ultrafast fiber lasers with short pulses and broad bandwidth are in great demand for a variety of applications, such as spectroscopy, biomedical diagnosis and optical communications. In particular sub-200fs pulses are required for ultrafast spectroscopy with high temporal resolution. Graphene is an ideal ultra-wide-band saturable absorber. We report the generation of 174fs pulses from a graphene-based fiber laser
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- Theory of graphene saturable absorption
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- Flexible all-PM NALM Yb:fiber laser design for frequency comb applications: operation regimes and their noise properties
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- Nonperturbative quasi-classical theory of the nonlinear electrodynamic response of graphene
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- Theory of the strongly nonlinear electrodynamic response of graphene: A hot electron model
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- Optical Kerr Effect in Graphene: Theoretical Analysis of the Optical Heterodyne Detection Technique
- Third harmonic generation from graphene lying on different substrates: Optical-phonon resonances and interference effects
- Broadband strong optical dichroism in topological Dirac semimetals with Fermi velocity anisotropy
- Bandwidth-induced saturation in multimode fiber-based absorbers