Autoionization of argon atoms was studied experimentally by transient absorption spectroscopy with isolated attosecond pulses. The peak position, intensity, linewidth, and shape of the 3s3p[superscript 6]np [superscript 1]P Fano resonance series (26.6–29.2 eV) were modified by intense few-cycle near infrared laser pulses, while the delay between the attosecond pulse and the laser pulse was changed by a few femtoseconds. Numerical simulations revealed that the experimentally observed splitting of the 3s3p[superscript 6]4p [superscript 1]P line is caused by the coupling between two short-lived highly excited states in the strong laser field
Attosecond transient absorption spectroscopy (ATAS) allows for the study of electron dynamics in ato...
Electron correlation and multielectron effects are fundamental interactions that govern many physica...
Electron correlation and multielectron effects are fundamental interactions that govern many physica...
Autoionization of argon atoms was studied experimentally by transient absorption spectroscopy with i...
Autoionization of argon atoms was studied experimentally by transient absorption spectroscopy with i...
Autoionization in argon atoms was studied by transient absorption spectroscopy with isolated attosec...
The last two decades have witnessed the emergence of attosecond science, a new discipline that lever...
Within this work, electron dynamics inside argon atoms are observed by probing the autoionizing stat...
Electron dynamics induced by resonant absorption of light is of fundamental importance in nature and...
We study photoionization of argon atoms close to the 3s23p6 → 3s13p64p Fano resonance using an attos...
Ultrashort pulses with durations less than one femtosecond advance understanding of chemistry and ph...
In this paper, autoionizing states in the one-dimensional helium atom are investigated by numerical ...
Electron dynamics induced by resonant absorption of light is of fundamental importance in nature and...
We study theoretically the photoabsorption spectra of an attosecond extreme ultraviolet (XUV) pulse ...
Isolated attosecond pulses with photon energies in the extreme ultraviolet have provided a new capab...
Attosecond transient absorption spectroscopy (ATAS) allows for the study of electron dynamics in ato...
Electron correlation and multielectron effects are fundamental interactions that govern many physica...
Electron correlation and multielectron effects are fundamental interactions that govern many physica...
Autoionization of argon atoms was studied experimentally by transient absorption spectroscopy with i...
Autoionization of argon atoms was studied experimentally by transient absorption spectroscopy with i...
Autoionization in argon atoms was studied by transient absorption spectroscopy with isolated attosec...
The last two decades have witnessed the emergence of attosecond science, a new discipline that lever...
Within this work, electron dynamics inside argon atoms are observed by probing the autoionizing stat...
Electron dynamics induced by resonant absorption of light is of fundamental importance in nature and...
We study photoionization of argon atoms close to the 3s23p6 → 3s13p64p Fano resonance using an attos...
Ultrashort pulses with durations less than one femtosecond advance understanding of chemistry and ph...
In this paper, autoionizing states in the one-dimensional helium atom are investigated by numerical ...
Electron dynamics induced by resonant absorption of light is of fundamental importance in nature and...
We study theoretically the photoabsorption spectra of an attosecond extreme ultraviolet (XUV) pulse ...
Isolated attosecond pulses with photon energies in the extreme ultraviolet have provided a new capab...
Attosecond transient absorption spectroscopy (ATAS) allows for the study of electron dynamics in ato...
Electron correlation and multielectron effects are fundamental interactions that govern many physica...
Electron correlation and multielectron effects are fundamental interactions that govern many physica...