Dispersive wave emission (DWE) in gas-filled hollow-core dielectric waveguides is a promising source of tuneable coherentand broadband radiation, but so far the generation of fewfemtosecond pulses using this technique has not been demonstrated. Using in-vacuum frequency-resolved optical gating, we directly characterize tuneable 3 fs pulses in the deep ultraviolet generated via DWE. Through numerical simulations, we identify that the use of a pressure gradient in the waveguide is critical for the generation of short pulses
Chapter 5 describes the efforts being made to reach the few-optical-cycle regime for ultraviolet pul...
Energetic, few-fs pulses in the deep-UV region are highly desirable for exploring ultrafast processe...
The generation of high-order harmonics and attosecond pulses at ultrahigh repetition rates (\u3e1 MH...
Dispersive wave emission (DWE) in gas-filled hollowcore dielectric waveguides is a promising source ...
We report on the complete temporal characterization of ultrashort pulses, generated by resonant disp...
Although ultraviolet (UV) light is important in many areas of science and technology, there are very...
We demonstrate the generation of wavelength-tunable deep-ultraviolet pulses in a small-mode-area hol...
An efficient and tunable 176-550 nm source based on the emission of resonant dispersive radiation fr...
Deep ultraviolet (DUV) laser pulses with tuneable wavelength and very short duration are a key enabl...
Electronic dynamics takes place on the attosecond timescale and can thus only be studied using a too...
Gas-filled hollow-core photonic crystal fibres enable nonlinear fibre optics in parameter regimes hi...
In this work, we numerically investigate an experimentally feasible design of a tapered Ne-filled ho...
We propose a scheme for the emission of few-cycle dispersive waves in the midinfrared using hollow-c...
International audienceWe investigate compression of ultrashort laser pulses by nonlinear propagation...
International audienceIntense, well-controlled light pulses with only a few optical cycles start to ...
Chapter 5 describes the efforts being made to reach the few-optical-cycle regime for ultraviolet pul...
Energetic, few-fs pulses in the deep-UV region are highly desirable for exploring ultrafast processe...
The generation of high-order harmonics and attosecond pulses at ultrahigh repetition rates (\u3e1 MH...
Dispersive wave emission (DWE) in gas-filled hollowcore dielectric waveguides is a promising source ...
We report on the complete temporal characterization of ultrashort pulses, generated by resonant disp...
Although ultraviolet (UV) light is important in many areas of science and technology, there are very...
We demonstrate the generation of wavelength-tunable deep-ultraviolet pulses in a small-mode-area hol...
An efficient and tunable 176-550 nm source based on the emission of resonant dispersive radiation fr...
Deep ultraviolet (DUV) laser pulses with tuneable wavelength and very short duration are a key enabl...
Electronic dynamics takes place on the attosecond timescale and can thus only be studied using a too...
Gas-filled hollow-core photonic crystal fibres enable nonlinear fibre optics in parameter regimes hi...
In this work, we numerically investigate an experimentally feasible design of a tapered Ne-filled ho...
We propose a scheme for the emission of few-cycle dispersive waves in the midinfrared using hollow-c...
International audienceWe investigate compression of ultrashort laser pulses by nonlinear propagation...
International audienceIntense, well-controlled light pulses with only a few optical cycles start to ...
Chapter 5 describes the efforts being made to reach the few-optical-cycle regime for ultraviolet pul...
Energetic, few-fs pulses in the deep-UV region are highly desirable for exploring ultrafast processe...
The generation of high-order harmonics and attosecond pulses at ultrahigh repetition rates (\u3e1 MH...