We study the saturable absorption properties of single-walled carbon nanotubes (SWCNTs) with a large diameter of 2.2 nm and the corresponding exciton resonance at a wavelength of 2.4 µm. At resonant excitation, a large modulation depth of approximately 30 % and a small saturation fluence of a few tens of µJ/cm2 are evaluated. The temporal response is characterized by an instantaneous rise and a subpicosecond recovery. We also utilize the SWCNTs to realize sub-50 fs, self-start mode locking in a Cr:ZnS laser, revealing that the film thickness is an important parameter that affects the possible pulse energy and duration. The results prove that semiconductor SWCNTs with tailored diameters exceeding 2 nm are useful for passive mode locking in t...
We report successful energy scaling of a room-temperature femtosecond Cr4+: forsterite laser by usin...
Understanding of the fundamental photoresponse of carbon nanotubes has broad implications for variou...
Z-scan spectroscopy is used to reveal ultra-broadband nonlinear absorption across different orders o...
In the design of mode-locked lasers, single-walled carbon nanotube saturable absorbers (SWCNT-SAs) h...
We report on passive mode-locking of a Ti:sapphire laser employing a single-walled carbon nanotube s...
We report on passive mode-locking of a Ti:sapphire laser employing a single-walled carbon nanotube s...
We report the shortest femtosecond pulses directly generated from a solid-state laser that is mode l...
Understanding of the fundamental photoresponse of carbon nanotubes has broad implications for variou...
We report the solid-state Cr:ZnS laser mode-locked by CNT-based saturable absorber. The absorber was...
Single-walled carbon nanotubes (SWNTs) are often considered the prototypical nanomaterial with their...
We demonstrate an increase of optical transmittance and saturable absorption of laser-treated free-s...
Understanding of the fundamental photoresponse of carbon nanotubes has broad implications for variou...
We demonstrate an increase of optical transmittance and saturable absorption of laser-treated free-s...
We report successful energy scaling of a room-temperature femtosecond Cr4+: forsterite laser by usin...
We report successful energy scaling of a room-temperature femtosecond Cr4+: forsterite laser by usin...
We report successful energy scaling of a room-temperature femtosecond Cr4+: forsterite laser by usin...
Understanding of the fundamental photoresponse of carbon nanotubes has broad implications for variou...
Z-scan spectroscopy is used to reveal ultra-broadband nonlinear absorption across different orders o...
In the design of mode-locked lasers, single-walled carbon nanotube saturable absorbers (SWCNT-SAs) h...
We report on passive mode-locking of a Ti:sapphire laser employing a single-walled carbon nanotube s...
We report on passive mode-locking of a Ti:sapphire laser employing a single-walled carbon nanotube s...
We report the shortest femtosecond pulses directly generated from a solid-state laser that is mode l...
Understanding of the fundamental photoresponse of carbon nanotubes has broad implications for variou...
We report the solid-state Cr:ZnS laser mode-locked by CNT-based saturable absorber. The absorber was...
Single-walled carbon nanotubes (SWNTs) are often considered the prototypical nanomaterial with their...
We demonstrate an increase of optical transmittance and saturable absorption of laser-treated free-s...
Understanding of the fundamental photoresponse of carbon nanotubes has broad implications for variou...
We demonstrate an increase of optical transmittance and saturable absorption of laser-treated free-s...
We report successful energy scaling of a room-temperature femtosecond Cr4+: forsterite laser by usin...
We report successful energy scaling of a room-temperature femtosecond Cr4+: forsterite laser by usin...
We report successful energy scaling of a room-temperature femtosecond Cr4+: forsterite laser by usin...
Understanding of the fundamental photoresponse of carbon nanotubes has broad implications for variou...
Z-scan spectroscopy is used to reveal ultra-broadband nonlinear absorption across different orders o...