International audienceThe many-body quantum nature of molecules determines their static and dynamic properties, but remains the main obstacle in their accurate description. Ultrashort extreme ultraviolet pulses offer a means to reveal molecular dynamics at ultrashort timescales. Here, we report the use of time-resolved electron-momentum imaging combined with extreme ultraviolet attosecond pulses to study highly excited organic molecules. We measure relaxation timescales that increase with the state energy. High-level quantum calculations show these dynamics are intrinsic to the time-dependent many-body molecular wavefunction, in which multi-electronic and non-Born−Oppenheimer effects are fully entangled. Hints of coherent vibronic dynamics,...
The molecules that make up the world around us display large responses to the ultraviolet (UV), vacu...
With recent advances in the generation of ultrashort laser pulses, electron and nuclear dynamics in ...
Strong-field photoelectron holography and laser-induced electron diffraction (LIED) are two powerful...
International audienceThe many-body quantum nature of molecules determines their static and dynamic ...
11The many-body quantum nature of molecules determines their static and dynamic properties, but rema...
15Highly excited molecular species are at play in the chemistry of interstellar media and are involv...
peer reviewedUltrafast UV excitation can prepare a nonstationary coherent superposition of molecular...
Highly excited molecular species are at play in the chemistry of interstellar media and are involved...
The coherent interaction with ultrashort light pulses is a powerful strategy for monitoring and cont...
Molecules are traditionally treated quantum mechanically using the Born-Oppenheimer formalism. In th...
Time-resolved investigations of ultrafast electronic and molecular dynamics were not possible until ...
International audienceFollowing ionization by an extreme ultraviolet (XUV) attosecond pulse train, a...
Recent developments of isolated, sub-femtosecond light pulses generated via upconversion of commerci...
Dynamic processes at the molecular level occur on ultrafast time scales and are often associated wit...
The molecules that make up the world around us display large responses to the ultraviolet (UV), vacu...
With recent advances in the generation of ultrashort laser pulses, electron and nuclear dynamics in ...
Strong-field photoelectron holography and laser-induced electron diffraction (LIED) are two powerful...
International audienceThe many-body quantum nature of molecules determines their static and dynamic ...
11The many-body quantum nature of molecules determines their static and dynamic properties, but rema...
15Highly excited molecular species are at play in the chemistry of interstellar media and are involv...
peer reviewedUltrafast UV excitation can prepare a nonstationary coherent superposition of molecular...
Highly excited molecular species are at play in the chemistry of interstellar media and are involved...
The coherent interaction with ultrashort light pulses is a powerful strategy for monitoring and cont...
Molecules are traditionally treated quantum mechanically using the Born-Oppenheimer formalism. In th...
Time-resolved investigations of ultrafast electronic and molecular dynamics were not possible until ...
International audienceFollowing ionization by an extreme ultraviolet (XUV) attosecond pulse train, a...
Recent developments of isolated, sub-femtosecond light pulses generated via upconversion of commerci...
Dynamic processes at the molecular level occur on ultrafast time scales and are often associated wit...
The molecules that make up the world around us display large responses to the ultraviolet (UV), vacu...
With recent advances in the generation of ultrashort laser pulses, electron and nuclear dynamics in ...
Strong-field photoelectron holography and laser-induced electron diffraction (LIED) are two powerful...