The double photoionization of N2O molecules by linearly polarized light in the 30–50 eV energy range has been studied by coupling ion imaging technique and electron-ion-ion coincidence. For the two possible dissociative processes, leading to N++NO+ and O++N2 +, angular distributions of ionic fragments have been measured, finding an evident anisotropy. This indicates that the molecules ionize when their axis is parallel to the light polarization vector and the fragments are separating in a time shorter than the dication rotational period. The analysis of results provides, in addition to the total kinetic energy of ionic fragments, crucial information about the double photoionization dynamics
The two-body dissociation reactions of the dication C2H2 +2, initiated via double ionization of acet...
Velocity-map ion imaging has been applied to the photodissociation of NO(2) via the first absorption...
We study the vacuum ultraviolet photodissociation dynamics of N2O via the C-1 Pi state by using the ...
The double photoionization of N2O molecules, in the 28–40 eV energy range, has been studied by synch...
The mass spectra and angular distributions of fragment ions arising from a Coulomb explosion of high...
The mass spectra and angular distributions of fragment ions arising from a Coulomb explosion of high...
Dissociative double photoionization of CO2, producing CO+ and O+ ions, has been studied in the 36–49...
The double photoionization of N2O molecules, in the 30–50 eV energy range, has been studied by synch...
Going from a diatomic to a polyatomic linear or non-linear molecule, the description of molecular fr...
The mass spectra and angular distributions of fragment ions arising from a Coulomb explosion of high...
The authors report measured and computed molecular frame photoelectron angular distributions (MFPADs...
Velocity-map ion imaging (VMI) has been used to study the angular distribution of the NO fragment ge...
peer reviewedBy electroionization mass spectrometry and ion kinetic energy analysis, the O+ fragment...
The kinetic energy distribution spectra of the ion fragments N+ and O+ produced by dissociative phot...
We study the photodissociation dynamics of nitrous oxide using the time-sliced ion velocity imaging ...
The two-body dissociation reactions of the dication C2H2 +2, initiated via double ionization of acet...
Velocity-map ion imaging has been applied to the photodissociation of NO(2) via the first absorption...
We study the vacuum ultraviolet photodissociation dynamics of N2O via the C-1 Pi state by using the ...
The double photoionization of N2O molecules, in the 28–40 eV energy range, has been studied by synch...
The mass spectra and angular distributions of fragment ions arising from a Coulomb explosion of high...
The mass spectra and angular distributions of fragment ions arising from a Coulomb explosion of high...
Dissociative double photoionization of CO2, producing CO+ and O+ ions, has been studied in the 36–49...
The double photoionization of N2O molecules, in the 30–50 eV energy range, has been studied by synch...
Going from a diatomic to a polyatomic linear or non-linear molecule, the description of molecular fr...
The mass spectra and angular distributions of fragment ions arising from a Coulomb explosion of high...
The authors report measured and computed molecular frame photoelectron angular distributions (MFPADs...
Velocity-map ion imaging (VMI) has been used to study the angular distribution of the NO fragment ge...
peer reviewedBy electroionization mass spectrometry and ion kinetic energy analysis, the O+ fragment...
The kinetic energy distribution spectra of the ion fragments N+ and O+ produced by dissociative phot...
We study the photodissociation dynamics of nitrous oxide using the time-sliced ion velocity imaging ...
The two-body dissociation reactions of the dication C2H2 +2, initiated via double ionization of acet...
Velocity-map ion imaging has been applied to the photodissociation of NO(2) via the first absorption...
We study the vacuum ultraviolet photodissociation dynamics of N2O via the C-1 Pi state by using the ...