We report on the complete temporal characterization of ultrashort pulses, generated by resonant dispersive wave emission in gas-filled hollow-capillary fibers, with energy in the microjoule range and continuously tunable from the deep-ultraviolet to the ultraviolet. Temporal characterization of such ultrabroad pulses, particularly challenging in this spectral region, was performed using an all-in-vacuum setup for self-diffraction frequency resolved optical gating (SD-FROG). Sub-3-fs pulses were measured, tunable from 250 nm to 350 nm, with a minimum pulse duration of 2.4 ± 0.1 fs
We demonstrate the on-target temporal characterization of sub-4-fs pulses by third-harmonic dispersi...
Deep ultraviolet (DUV) laser pulses with tuneable wavelength and very short duration are a key enabl...
We have post-compressed 25 fs (Fourier limit) amplified pulses in an argon-filled hollow-core fiber....
We report on the complete temporal characterization of ultrashort pulses, generated by resonant disp...
Dispersive wave emission (DWE) in gas-filled hollow-core dielectric waveguides is a promising source...
An efficient and tunable 176-550 nm source based on the emission of resonant dispersive radiation fr...
Although ultraviolet (UV) light is important in many areas of science and technology, there are very...
Dispersive wave emission (DWE) in gas-filled hollowcore dielectric waveguides is a promising source ...
Ultrafast broadband ultraviolet radiation is of importance in spectroscopy and photochemistry, since...
We present the results of an experimental and numerical investigation into temporally nonlocal coher...
Electronic dynamics takes place on the attosecond timescale and can thus only be studied using a too...
We experimentally study the spectral broadening of intense, ∼100 femtosecond laser pulses at 785 nm ...
We report on a highly efficient experimental scheme for the generation of deep-ultraviolet (UV) ultr...
We report on the generation of a three-octave-wide supercontinuum extending from the vacuum ultravio...
In contrast to the case of pulses in the infrared (IR) and visible range, the temporal characterizat...
We demonstrate the on-target temporal characterization of sub-4-fs pulses by third-harmonic dispersi...
Deep ultraviolet (DUV) laser pulses with tuneable wavelength and very short duration are a key enabl...
We have post-compressed 25 fs (Fourier limit) amplified pulses in an argon-filled hollow-core fiber....
We report on the complete temporal characterization of ultrashort pulses, generated by resonant disp...
Dispersive wave emission (DWE) in gas-filled hollow-core dielectric waveguides is a promising source...
An efficient and tunable 176-550 nm source based on the emission of resonant dispersive radiation fr...
Although ultraviolet (UV) light is important in many areas of science and technology, there are very...
Dispersive wave emission (DWE) in gas-filled hollowcore dielectric waveguides is a promising source ...
Ultrafast broadband ultraviolet radiation is of importance in spectroscopy and photochemistry, since...
We present the results of an experimental and numerical investigation into temporally nonlocal coher...
Electronic dynamics takes place on the attosecond timescale and can thus only be studied using a too...
We experimentally study the spectral broadening of intense, ∼100 femtosecond laser pulses at 785 nm ...
We report on a highly efficient experimental scheme for the generation of deep-ultraviolet (UV) ultr...
We report on the generation of a three-octave-wide supercontinuum extending from the vacuum ultravio...
In contrast to the case of pulses in the infrared (IR) and visible range, the temporal characterizat...
We demonstrate the on-target temporal characterization of sub-4-fs pulses by third-harmonic dispersi...
Deep ultraviolet (DUV) laser pulses with tuneable wavelength and very short duration are a key enabl...
We have post-compressed 25 fs (Fourier limit) amplified pulses in an argon-filled hollow-core fiber....