Bound and free quantum resonances of molecular hydrogen exhibiting wave-function density at large internuclear separation, (Formula presented.) 4–5 a.u., are excited via multi-step laser spectroscopy. Highly excited vibrational levels of H (Formula presented.) are prepared via two-photon UV-photolysis of H (Formula presented.) S. Subsequent two-photon Doppler-free precision measurements are performed connecting (Formula presented.) levels with (Formula presented.) outer-well levels. Detection and spectroscopic labelling of the quantum states is assisted by further laser excitation into the auto-ionisation continuum employing a third UV-laser. Level energies of high rotational states ((Formula presented.)) in the outer-well state (Formula pr...
The absorption and ionization cross sections of molecular hydrogen for the wavelength region from 85...
$^{\ast}$ Research supported by AFOSR and NSFAuthor Institution: Molecular Physics Laboratory, SRI I...
Author Institution: Dept. of Chemistry, University of Rochester, Rochester,; NY 14627\indent The str...
Bound and free quantum resonances of molecular hydrogen exhibiting wave-function density at large in...
Rovibrational quantum states in the X1Σg+ electronic ground state of H2 are prepared in the v = 13 v...
Author Institution: Vrije Universiteit; Laser Centre, Department of Physics and Astronomy, Vrije Uni...
Frequency-resolved observations of heavy Rydberg states in molecular hydrogen are reported in the un...
The molecular hydrogen ion has been an enormously well studied molecule. Yet, despite its simplicity...
Recent ab initio calculations by Detmer et al. [J. Chem. Phys. 109 (1998) 9694] and by Staszewska an...
A series of discrete resonances was observed in the spectrum of H2, which can be unambiguously assig...
A (2+1) resonance ionization scheme was used to ionize H-2. A fixed VUV photon (118 nm) and tunable ...
Hydrogen molecules plays an important role in research of fundamental physics as the subject of this...
Accurate EF1Σg+-X1Σg+ transition energies in molecular hydrogen were determined for transitions orig...
A tunable, high-intensity picosecond dye laser system has been employed with electron energy analysi...
Highly excited rovibrational states of H$_2$ in the X $^{1}\Sigma_{g}^{+}$ electronic ground state a...
The absorption and ionization cross sections of molecular hydrogen for the wavelength region from 85...
$^{\ast}$ Research supported by AFOSR and NSFAuthor Institution: Molecular Physics Laboratory, SRI I...
Author Institution: Dept. of Chemistry, University of Rochester, Rochester,; NY 14627\indent The str...
Bound and free quantum resonances of molecular hydrogen exhibiting wave-function density at large in...
Rovibrational quantum states in the X1Σg+ electronic ground state of H2 are prepared in the v = 13 v...
Author Institution: Vrije Universiteit; Laser Centre, Department of Physics and Astronomy, Vrije Uni...
Frequency-resolved observations of heavy Rydberg states in molecular hydrogen are reported in the un...
The molecular hydrogen ion has been an enormously well studied molecule. Yet, despite its simplicity...
Recent ab initio calculations by Detmer et al. [J. Chem. Phys. 109 (1998) 9694] and by Staszewska an...
A series of discrete resonances was observed in the spectrum of H2, which can be unambiguously assig...
A (2+1) resonance ionization scheme was used to ionize H-2. A fixed VUV photon (118 nm) and tunable ...
Hydrogen molecules plays an important role in research of fundamental physics as the subject of this...
Accurate EF1Σg+-X1Σg+ transition energies in molecular hydrogen were determined for transitions orig...
A tunable, high-intensity picosecond dye laser system has been employed with electron energy analysi...
Highly excited rovibrational states of H$_2$ in the X $^{1}\Sigma_{g}^{+}$ electronic ground state a...
The absorption and ionization cross sections of molecular hydrogen for the wavelength region from 85...
$^{\ast}$ Research supported by AFOSR and NSFAuthor Institution: Molecular Physics Laboratory, SRI I...
Author Institution: Dept. of Chemistry, University of Rochester, Rochester,; NY 14627\indent The str...