The physics of high harmonics has led to the generation of attosecond pulses and to trains of attosecond pulses. Measurements that confirm the pulse duration are all performed in the far field. All pulse duration measurements tacitly assume that both the beam\u2019s wavefront and intensity profile are independent of frequency. However, if one or both are frequency dependent, then the retrieved pulse duration depends on the location where the measurement is made. We measure that each harmonic is very close to a Gaussian, but we also find that both the intensity profile and the beam wavefront depend significantly on the harmonic order. Thus, our findings mean that the pulse duration will depend on where the pulse is observed. Measurement of s...
International audienceExtreme ultraviolet (XUV) sources (10–100 nm) based upon high harmonic generat...
Generation of high-order harmonics has emerged as a powerful technique for the generation of broadba...
Characterizing an isolated attosecond pulse (IAP) is essential for its potential applications. A com...
Spatial characterization of high harmonics (HH) and XUV coherent radiation is of paramount importanc...
The attosecond lighthouse is a method of using ultrafast wavefront rotation with high-harmonic gener...
The group delay dispersion, also known as the attochirp, of high-order harmonics generated in gases ...
The shortest light pulses produced to date are of the order of a few tens of attoseconds, with centr...
We apply the theory of high-order harmonic generation by low-frequency laser fields in the strong fi...
Advances in the generation of ultrashort laser pulses, and the emergence of new research areas such ...
The generation of intense, femtosecond-duration laser pulses using near-IR to IR wavelengths of ligh...
We characterize the temporal structure of high-order harmonic radiation on both the femtosecond and ...
We show that high-order harmonics generated from molecules by intense laser pulses can be expressed ...
The physics of attosecond pulse generation requires using infrared driving wavelength to reach the s...
Attosecond pulse trains are produced during the production of high harmonics when a gas sample is ir...
International audienceWe study the spectral phase of high-order harmonic emission as an observable f...
International audienceExtreme ultraviolet (XUV) sources (10–100 nm) based upon high harmonic generat...
Generation of high-order harmonics has emerged as a powerful technique for the generation of broadba...
Characterizing an isolated attosecond pulse (IAP) is essential for its potential applications. A com...
Spatial characterization of high harmonics (HH) and XUV coherent radiation is of paramount importanc...
The attosecond lighthouse is a method of using ultrafast wavefront rotation with high-harmonic gener...
The group delay dispersion, also known as the attochirp, of high-order harmonics generated in gases ...
The shortest light pulses produced to date are of the order of a few tens of attoseconds, with centr...
We apply the theory of high-order harmonic generation by low-frequency laser fields in the strong fi...
Advances in the generation of ultrashort laser pulses, and the emergence of new research areas such ...
The generation of intense, femtosecond-duration laser pulses using near-IR to IR wavelengths of ligh...
We characterize the temporal structure of high-order harmonic radiation on both the femtosecond and ...
We show that high-order harmonics generated from molecules by intense laser pulses can be expressed ...
The physics of attosecond pulse generation requires using infrared driving wavelength to reach the s...
Attosecond pulse trains are produced during the production of high harmonics when a gas sample is ir...
International audienceWe study the spectral phase of high-order harmonic emission as an observable f...
International audienceExtreme ultraviolet (XUV) sources (10–100 nm) based upon high harmonic generat...
Generation of high-order harmonics has emerged as a powerful technique for the generation of broadba...
Characterizing an isolated attosecond pulse (IAP) is essential for its potential applications. A com...