Large nonlinear absorption and refraction coefficients of carbon nanotubes estimated from femtosecond Z-scan measurements
arXiv:0710.2721 · doi:10.1063/1.2825409
Abstract
Nonlinear transmission of 80 and 140 femtosecond pulsed light with wavelength through single walled carbon nanotubes suspended in water containing sodium dodecyl sulphate is studied. Pulse-width independent saturation absorption and negative cubic nonlinearity are observed, respectively, in open and closed aperture Z-scan experiments. The theoretical expressions derived to analyze the z-dependent transmission in the saturable limit require two photon absorption coefficient and a nonlinear index to fit the data.
10 pages, 2 figures. Accepted and to appear in Applied Physics Letters
Cited by in corpus (4)
- Graphene analogue BCN: femtosecond nonlinear optical susceptibility and hot carrier dynamics
- Ultrafast photoinduced enhancement of nonlinear optical response in 15-atom gold clusters on indium tin oxide conducting film
- Ultrafast electron dynamics and cubic optical nonlinearity of free standing thin film of double walled carbon nanotubes
- Femtosecond Photoexcited Carrier Dynamics in Reduced Graphene Oxide Suspensions and Films