The dynamics of dissociation of pre-ionized D+2 molecules using intense (1012-1015 W cm-2), ultrashort (50 fs), infrared (?? &le 790 nm) laser pulses are examined. Use of an intensity selective scan technique has allowed the deuterium energy spectrum to be measured over a broad range of intensity. It is found that the dominant emission shifts to lower energies as intensity is increased, in good agreement with corresponding wavepacket simulations. The results are consistent with an interpretation in terms of bond softening, which at high intensity (approximately >3 ?? 1014 W cm-2) becomes dominated by dissociative ionization. Angular distribution measurements reveal the presence of slow molecular dissociation, an indication that vibra...
We studied the recollision dynamics between the electrons and D$_2^+$ ions following the tunneling i...
Covariance mapping is used to study the dissociation dynamics of highly-charged triatomic molecules ...
The spectroscopy of the simplest hydrogen molecular ions, HSD+, H3+, H2D+ and D2H+, near their disso...
Doctor of PhilosophyDepartment of PhysicsItzhak Ben-ItzhakOut of the many tools for probing molecula...
Doctor of PhilosophyDepartment of PhysicsItzhak Ben-ItzhakThe use of ultrafast lasers allows one to ...
The beauty of ultrafast science lies inherently in the ability to induce and image dynamics on a tim...
Using quantum mechanics calculations, we theoretically study the dissociation and ionization dynamic...
Doctor of PhilosophyDepartment of PhysicsItzhak Ben-ItzhakPresent laser technology allows for the pr...
Ion kinetic energy distributions in pulsed-laser stimulated field desorption of inert gases and deut...
Strong field ionization with ultrafast laser pulses allows for real-time measurements of the forming...
The competitive mechanism between dissociation and ionization of hydrogen molecular ion in intense f...
Molecular dynamics in intense, pulsed laser fields is an emerging frontier of research in laser-matt...
We employ few-cycle pulses to strong-field-ionize di-iodomethane (CH2I2) and femtosecond extreme ult...
In course of this work pump-probe experiments aimed to study ultrafast nuclear motion in H2 (D2) fra...
In course of this work pump-probe experiments aimed to study ultrafast nuclear motion in H2 (D2) fra...
We studied the recollision dynamics between the electrons and D$_2^+$ ions following the tunneling i...
Covariance mapping is used to study the dissociation dynamics of highly-charged triatomic molecules ...
The spectroscopy of the simplest hydrogen molecular ions, HSD+, H3+, H2D+ and D2H+, near their disso...
Doctor of PhilosophyDepartment of PhysicsItzhak Ben-ItzhakOut of the many tools for probing molecula...
Doctor of PhilosophyDepartment of PhysicsItzhak Ben-ItzhakThe use of ultrafast lasers allows one to ...
The beauty of ultrafast science lies inherently in the ability to induce and image dynamics on a tim...
Using quantum mechanics calculations, we theoretically study the dissociation and ionization dynamic...
Doctor of PhilosophyDepartment of PhysicsItzhak Ben-ItzhakPresent laser technology allows for the pr...
Ion kinetic energy distributions in pulsed-laser stimulated field desorption of inert gases and deut...
Strong field ionization with ultrafast laser pulses allows for real-time measurements of the forming...
The competitive mechanism between dissociation and ionization of hydrogen molecular ion in intense f...
Molecular dynamics in intense, pulsed laser fields is an emerging frontier of research in laser-matt...
We employ few-cycle pulses to strong-field-ionize di-iodomethane (CH2I2) and femtosecond extreme ult...
In course of this work pump-probe experiments aimed to study ultrafast nuclear motion in H2 (D2) fra...
In course of this work pump-probe experiments aimed to study ultrafast nuclear motion in H2 (D2) fra...
We studied the recollision dynamics between the electrons and D$_2^+$ ions following the tunneling i...
Covariance mapping is used to study the dissociation dynamics of highly-charged triatomic molecules ...
The spectroscopy of the simplest hydrogen molecular ions, HSD+, H3+, H2D+ and D2H+, near their disso...